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Selected Results

The possible pathways of the early evolution of pulmonate mollusks, from their emergence onto land (Late Cambrian) onward, have been reconstructed for the first time. A hypothesis has been proposed according to which food-base characteristics in past geological periods were the determining factor in mollusk evolution. A number of functional relationships between conchological and anatomical characters in stylommatophoran mollusks have been established for the first time. A taxonomic revision of the subfamilies Ariantinae (Helicidae) and Metafruticicolinae (Hydromiidae) has been carried out based on newly discovered anatomical characters. A detailed analysis of the morphological, physiological and behavioral adaptations of mollusks to terrestrial life has been performed. A series of papers on the systematics of the terrestrial mollusks of Vietnam has been initiated (Dr. Sci. (Biol.) A.A. Shileyko).

For the first time for East Africa, the patterns of altitudinal-landscape distribution of mesofauna and oribatid mites in the mid- and high-altitude zones of the Abyssinian Highlands have been assessed. A fundamental shift in fauna composition was revealed, accompanied by the loss of several key groups, occurring from the mountain heather belt upward (2800-2900 m a.s.l.), where a community forms that is, in structure and life forms, largely similar to the southern taiga of Eurasia. For the first time, in the extreme climatic conditions of northern Yamal, foci of significant soil-fauna diversity (warranting protection) were identified, associated with meadow biocenoses on southern slopes. The poorest assemblages are confined to lichen-moss polygonal tundra under the most extreme conditions. The main anthropogenic impact on Yamal ecosystems is reindeer overgrazing, which reduces invertebrate abundance and diversity 2- to 5-fold. The impact of gas-field development (on Yamal) on the soil fauna is local, affecting only a fraction of a percent of the district's area. A two-stage biotechnological method (patented, jointly with CEPF) for processing solid pulp-and-paper industry waste into vermicompost, involving a fungal treatment stage followed by vermicomposting, has been developed and tested (Cand. Sci. (Biol.) L.B. Rybalov).

Taxonomic revisions and reviews have been carried out for the first time for many genera of leaf beetles, clearwing moths, plume moths, whites and blues of the Western Hemisphere, as well as two families and seven genera of millipedes of the world fauna. More than two hundred new taxa (species and genera) of leaf beetles, clearwing moths, plume moths and blues have been described from the Afrotropical and Indo-Malayan zoogeographic regions and the Southern Palearctic, along with millipede taxa from nearly all zoogeographic regions. Reviews of cave faunas and the main zoogeographic features of Russian invertebrates and of the millipedes of southern China have been presented for the first time. The phylogenetic relationships of blues of the genus Callophrys have been analyzed for the first time. The biology and morphology of the preimaginal stages of several leaf-beetle species from Vietnam have been studied. Work on synthetic sex attractants for burnet moths and clearwing moths has been carried out for the first time (Group of Dr. Sci. (Biol.) O.G. Gorbunov).

A quantitative assessment of the intensity of trophic links between soil invertebrates and mycorrhizal fungi in boreal forest soil has been carried out for the first time. The structure of trophic niches of soil animals (including microfaunal representatives — nematodes and protists) in forest ecosystems of different climatic zones has been established. The composition and functional structure of the fauna of deep soil horizons of different soil types of the Russian Plain have been studied in detail for the first time. Using soil-dwelling springtails (Collembola) as an example, a link between the taxonomic and functional structure of biotic communities has been demonstrated for the first time, confirming the concept of the ecological unity of supraspecific taxa. General patterns in the formation of the gut microflora of key functional groups of soil fauna (from phytophages to predators) have been established (Group of Dr. Sci. (Biol.) A.V. Tiunov).

The influence of the density and community structure of microfauna (microarthropods and enchytraeids) on earthworm populations from different ecological groups has been experimentally demonstrated and quantified for the first time. The effects of different mechanisms of non-trophic earthworm activity (mixing of litter and soil, production of excreta and mucus, decomposition of dead lumbricids) on their trophic competitors, the enchytraeids, have been demonstrated for the first time. Litter-dwelling and, especially, soil-dwelling species show different responses to increasing density (slower growth, delayed maturation, reduced reproduction rate, higher mortality), attributable mainly to trophic competition in the former and mainly to spatial competition in the latter. A preliminary framework has been proposed for developing models of soil organic matter (SOM) dynamics that account for soil fauna, for further development within KEYSOM, a European COST Action project aimed at fostering dialogue between empirical scientists and theoretical ecologists to build realistic models of SOM dynamics (Cand. Sci. (Biol.) A.V. Uvarov)

The relationship between a species' reproductive strategy, the morphology of its genitalia, its copulation mechanism, and the variability of the mitochondrial COI gene has been studied. In Lepidoptera, species polymorphic in genital structure, unlike monomorphic ones, show a more complex copulation mechanism, greater variability at the COI locus, and a broader range of feeding strategies at preimaginal stages. The study of a species' reproductive strategy revealed the level of complexity of synthetic pheromone analogs required for effective control of leafroller populations. Based on molecular-genetic and morphometric analyses of 27 species of cereal flies (Meromyza), evolutionary trends in the shape of postgonites — genital elements determining interspecific reproductive isolation at the copulatory level — were identified. The potential use of Meromyza species diversity as an indicator of the state of various biocenoses has been demonstrated. The strategy by which M. acuminata, a previously unknown pest of cereals in Mongolia, shifted to cultivated cereals was studied. The morphological and molecular-genetic diversity of Carpathian honeybee populations across regions was analyzed. A comprehensive approach to studying the diversity of Carpathian-race bees made it possible to assess both the duration of breeding (i.e., the relative time since the founding queens were obtained) and the degree of breed purity of apiaries under long-term breeding (Group of Dr. Sci. (Biol.) A.F. Safonkin).

Over the past 5 years, more than 100 new species and 16 new genera of millipedes have been described from nearly all zoogeographic regions of the world. Twenty-one poorly known species from four genera have been redescribed, and two families and seven genera have been revised. Reviews of cave faunas and the main zoogeographic features of invertebrates of Russia and of the millipedes of southern China have been presented for the first time (Dr. Sci. (Biol.) S.I. Golovatch).

Using larvae of the genus Solva (Diptera: Xylomyidae) as an example, the role of sapronecrophages in xylophilous communities has been studied. They have been shown to be constant associates of major wood pests such as bark beetles (Curculionidae), longhorn beetles (Cerambycidae), pinhole borers (Lymexylidae), and carpenter moths (Cossidae). The fly larvae were found to feed on dead, weakened and injured pest larvae, i.e., they are sapronecrophages by feeding type. Dipteran larvae of this trophic group have been established as an integral component of succession in xylophilous communities. For the first time in the Palearctic, the development of three abundant horsefly species (Diptera: Tabanidae) of the genera Tabanus and Hybomitra in rotting tree trunks and stumps, at the brown- and black-rot stage, has been established. Among them is Tabanus pleskei, one of the largest horsefly species, which replaces Tabanus bovinus in Eastern Siberia and the Russian Far East. Until now, the traditional habitat of horsefly larvae was considered to be aquatic and semi-aquatic. This discovery substantially changes our understanding of horsefly life cycles and of the conditions under which blood-sucking fly communities form in forest zones, and points to new approaches to controlling these pests (Group of Dr. Sci. (Biol.) N.P. Krivosheina).

As a result of studying the complex of insects that damage Sosnowsky's hogweed, a method of biological control of this weed has been developed for the first time. The proposed insect species, the parsnip moth Depressaria radiella, feeds on the ovaries and seeds of the hogweed. Since Sosnowsky's hogweed reproduces by seed, this method is highly effective. A patent has been obtained for the invention «A Method for Destroying Sosnowsky's Hogweed» (No. 2556068). An original method for rearing the caterpillars of hogweed-damaging moths in open ground has also been proposed (Dr. Sci. (Biol.) M.G. Krivosheina).

For the first time in myrmecology, a classification of anthill complexes has been developed, based on the properties of the elements making up the complex and the scenarios of colony genesis. Eight social types have been identified, named after the traits key to each type: 1. recurrent sociotomy based on a clan family; 2. diffuse polycalism; 3. recurrent sociotomy based on a single family; 4. closed (minor) polycalism; 5. open (obligate) polycalism; 6. linear settlements; 7. scattered pleiades; 8. unitary pleiades. This classification of anthill complexes provides the basis for their systematic study, use and conservation (Dr. Sci. (Biol.) A.A. Zakharov).

Key Results of the Laboratory 2023-2024

1. A new pest of the dangerous invasive plant Sosnowsky's hogweed has been discovered. Larvae of the sciarid fly Bradysia impatiens (Diptera, Sciaridae) damaged hogweed roots, causing root rot, delayed growth of young leaves, chlorosis and wilting of the plant. B. impatiens is known as a polyphagous pest that destroys plants in greenhouses. This species damages more than 25 plant species, as well as button mushrooms and other cultivated fungi.  Mass development of B. impatiens larvae in the roots of Sosnowsky's hogweed is a unique event, indicating that as the naturalization period of an invasive plant in a new territory lengthens, phytophagous insects gradually begin to exploit its resources. 

Published: Кривошеина М.Г., Кривошеина Н.П., Озерова Н.А., Озеров А.Л. Первый случай повреждения корней борщевика Сосновского Heracleum sosnowskyi Manden. (Apiaceae) личинками сциариды Bradysia impatiens (Johannsen, 1912) (Diptera: Sciaridae) // Российский Журнал Биологических Инвазий. 2024. Т. 17. № 4.  С. 85-91

 

Рисунок 1. Повреждение корней борщевика сосновского личинками комарика сциариды Bradysia impatiens

 

Рисунок 2. Цикл развития Bradysia impatiens

 

Рисунок 3. Распространение грибных комариков Bradysia impatiens

 

2. In an experiment using 15N-labeled nymphs of the tick Ixodes ricinus, it was shown that nymphs in the soil and litter are successfully attacked by a wide range of predators: at least one species of rove beetle (Geostiba circellaris), two species of gamasid mites (Pergamasus beklemischevi, Porrhostapsis lunnulata), and two species of spiders (Ozyptila sp., Pachygnatha listeri). These data can be used in developing methods to control dangerous tick species.  

Published: Vinogradov D. D., Sotnikov I. V., Tiunov A. V. Plasticine models confirm high predator pressure on surfaced earthworms in different ecosystems //Applied Soil Ecology. – 2024a. – V. 202. – Art. 105594.

3. In the course of studying the biochemical properties of algal cultures, the best producer of omega-3 polyunsaturated eicosapentaenoic acid among freshwater algae (Vischeria magna, strain SBV-108) and the best producer of fucoxanthin (Mallomonas furtiva, strain SBV-13) were identified. These algae were used as feed supplements for fry of a popular aquaculture species, red tilapia (Oreochromis mossambicus × Oreochromis niloticus). Adding microalgae rich in omega-3 polyunsaturated eicosapentaenoic acid to the feed significantly improved the growth parameters of red tilapia fry — by more than 20% — as well as overall feed efficiency and digestibility. 

Published: Sorokin B., Gusev, E., Namsaraev, Z., Emelianova, A., Patova, E., Novakovskaya, I., Vinokurov V. & Kuzmin, D. Effect of microalgae feed supplementation on growth performance and feeding efficiency of tilapia fry // Journal of Applied Phycology. – 2024. – V. 36. – P. 1767 – 1780

 

Рисунок 1. Lumian AGS260 photobioreactor, использующийся для культивирования микроводорослей

 

Рисунок 2. Лучший продуцент омега-3 полиненасыщенной эйкозапентаеновой кислоты среди пресноводных водорослей (Vischeria magna, штамм SBV-108)

 

4. The third part of the monograph «Longhorn Beetles (Coleoptera, Cerambycoidea) of Russia and Neighboring Countries» has been published. Most longhorn beetle species are pests of trees or commercial timber, and many kill living trees. Their larvae often remain in building materials after timber harvesting and render them unusable. Some species can infest the wood of buildings and cause structural damage. Precise identification of the pest species is essential for developing specific control measures. On the other hand, many longhorn beetles are exceptionally attractive and rare; such species are listed in the Red Data Books of Russia and all neighboring countries. Until now, no complete atlas of longhorn beetles existed for Russia or for any neighboring country (except Japan). The book covers all longhorn beetle taxa found in the territories of 16 countries — Russia, Estonia, Latvia, Lithuania, Belarus, Ukraine, Moldova, Georgia, Armenia, Azerbaijan, Kazakhstan, Turkmenistan, Uzbekistan, Tajikistan, Kyrgyzstan and Mongolia — a total of 435 species (680 taxa including subspecies) from 75 genera. All species and subspecies are illustrated with color photographs, including the range of color forms for variable taxa. Taxa are provided with brief morphological characteristics, descriptions of distribution and biology, and, in many cases, taxonomic comments. Eighteen color range maps showing collection localities are included. The book is supplied with a taxonomic list of material, a bibliography of about 2,000 titles, and an index of Latin beetle names. It is intended for forestry and forest-protection specialists, as well as ecologists, entomologists and nature enthusiasts.

Danilevsky M.L., 2023. Longhorn Beetles (Coleoptera, Cerambycoidea) of Russia and Neighboring Countries. Part 3. Moscow: MAO. 873 pp. 

Monographs: Danilevsky M.L. A Key to the Longhorn Beetles (Coleoptera, Cerambycidae) of Russia. Volume 1. The European Part and the Northern Caucasus.  Moscow: International Academy of Education, 2024. 246 pp., illustrated. ISBN 978-5-6048964-9-5. Print run: 500 copies, 28.6 printer's sheets.

 

 

 

5. Modeling results show that: (1) under the most likely climate-change scenario for Tyumen Oblast, a significant (up to 90%) decline in winter rye yield is projected in the medium term (by 2050); (2) for spring wheat, winter wheat and spring oats, breeding cold-tolerant, early-maturing varieties suited to cultivation in the taiga agroecological zone is recommended; (3) grain yields will decline in the central and western districts of the oblast, while weather conditions will allow the northern and southern districts to increase grain yields. 

Published: Goncharov A.A., Safonov T.A., Malko A.M., Bocharov G.A., Goncharov S. V., 2023. Climate change expected to increase yield of spring cereals and reduce yield of winter cereals in the Western Siberian grain belt // Field Crops Research. V. 302. P. 109038. DOI:10.1016/j.fcr.2023.109038

 

Схема обработки данных. (A) Растровая информация о климатических характеристиках, полученная из модели CMIP6, использовалась для расчета (Б) средней климатической характеристики для каждого административного района. (В) Данные о распределении средней температуры и (Г) осадков использовались для расчета (Д) значений переменных CLIM1-4.

 

A researcher of the Laboratory of Soil Zoology and General Entomology, IEE RAS, Cand. Sci. (Biol.) A.A. Goncharov, together with colleagues from Tyumen State University (X-BIO Institute), the Federal State Budgetary Institution «Rosselkhoztsentr,» the Marchuk Institute of Numerical Mathematics RAS, and the Voronezh State Agrarian University named after Emperor Peter I, developed a mathematical model to assess the impact of climate change on grain yields in Tyumen Oblast in the short term (2025-2030) and medium term (2045-2050).

The study was based on a database combining 1990-2020 yield data for five grain crops (barley, oats, spring and winter wheat, winter rye) in Tyumen Oblast (provided by Rosselkhoztsentr), together with key meteorological parameters obtained from the global CMIP6 model developed under the Intergovernmental Panel on Climate Change (Fig. 1).

It was shown that, overall, crop yields in Tyumen Oblast will increase in both the short and medium term. However, this increase will not be uniform across districts, leading to a redistribution of yield gains among them (Fig. 2). Under the most likely climate-change scenario, a significant decline in winter rye yield is projected in the medium term (by 2050). For spring wheat and spring oats, breeding cold-tolerant, early-maturing varieties suited to the taiga agroecological zone is justified.

 

Основные результаты исследования. Исследование проведено при финансовой поддержке РНФ, проект №22-76-10027.

 

6. A meta-analysis of experimental studies assessed the expected response of the main groups of soil animals (mites, springtails, insects, nematodes and enchytraeids) to global climate change. Warming and precipitation levels were shown to have the greatest influence on the population dynamics of soil invertebrates. Taking into account IPCC estimates (SSP3-7.0 scenario) of an average climate warming of 3.6°C and substantial changes in local precipitation levels (up to ±20%) by the end of the 21st century, meta-regression models predict strong local changes in the structure of detrital food webs. In regions with decreasing precipitation, soil food webs favoring carbon mineralization can be expected to form, whereas in regions with increasing precipitation, changes in detrital food web structure may favor soil carbon accumulation (Goncharov et al. 2023).

Published: Goncharov A.A., Leonov V.D., Rozanova O.L., Semenina E.E., Tsurikov S.M., Uvarov A.V., Zuev A.G., Tiunov A.V. 2023. A meta-analysis suggests climate change shifts structure of regional communities of soil invertebrates // Soil Biology and Biochemistry, V. 181: 109014.

 

Географическое положение участков исследования, включенных в метаанализ. С учетом оценок Межправительственной группы экспертов по изменению климата (МГЭИК), при повышении средней температуры воздуха на 3,6° к 2100 году показана возможность сильных локальных изменений в структуре детритных пищевых цепей. В засушливых регионах можно ожидать формирования почвенных сообществ, способствующих минерализации углерода, а в регионах с повышенным количеством осадков — накоплению углерода в почве.

 

 

 

 

Прогнозы (среднее значение и 95% доверительный интервал) изменений численности трех функциональных групп почвенных животных (нематоды, микроартроподы и олиформные черви) на основе долгосрочного (с 2081 по 2100 год) сценария SSP3-7.0, разработанного МГЭИК для регионов с пониженным (A) и повышенным (B) уровнем осадков. Микроартроподы представлены ногохвостками и клещами. Звездочки обозначают значительное изменение численности.

 

7. The millipede (Diplopoda) fauna of Thailand has been catalogued and analyzed, and a complete up-to-date catalogue has been published, now comprising 263 species, 64 genera, 17 families and 9 orders. 

Published: Likhitrakarn N., Srisonchai R., Golovatch S.I. 2023. An updated catalogue of the millipedes (Diplopoda) of Thailand // Tropical Natural History, Supplement 7. P. 51–92.

Публикации:

Избранные монографии

 

  1. Гиляров М.С. 1949. Особенности почвы как среды обитания и ее роль в эволюции насекомых. М.; Л.: Изд-во АН СССР, 280 с.

  2. Гиляров М. С., 1965. Зоологический метод диагностики почв. М.: Наука, 276 с.

  3. Гиляров М. С., 1970. Закономерности приспособлений членистоногих к жизни на суше. М.: Наука, 1970, 276 с.

  4. Стриганова Б. Р., 1966. Закономерности строения органов питания личинок жесткокрылых. АН СССР. Ин-т морфологии. М.: Наука, 128 с.

  5. Стриганова Б. Р., 1980. Питание почвенных сапрофагов. АН СССР, Ин-т эволюц. морфологии и экологии животных им. А. Н. Северцова. М.: Наука, 244 с.

  6. Арнольди, Л. В., Бызова, Ю. Б., Гиляров, М. С., Долин, В. Г., Жантиев, Р. Д., Зиновьева, Л. А., ... & Медведев, Л. М.,1964.Определитель обитающих в почве личинок насекомых. Наука.

  7. .Бызова Ю.Б., Уваров А.В., Губина В.Г., Залесская Н.Т., Захаров А.А., Петрова А.Д., Суворов А.А., Воробьева Е.Г., 1986. Почвенные беспозвоночные беломорских островов Кандалакшского заповедника. М., "Наука", 312 с.

  8. Гиляров, М. С., Бызова, Ю. Б., Стриганова, Б. Р., 1987. Количественные методы в почвенной зоологии. Наука.

  9. Захаров А.А., Бызова Ю.Б., Уваров А.В., Залесская Н.Т., Ланина В.В., Мазанцева Г.П., Орлова Т.А., Сергеева Т.К., Суворов А.А., Янушев В.В., 1989. Почвенные беспозвоночные рекреационных ельников. М., "Наука", 224 с.

  10. Чеснова Л. В., Стриганова Б. Р., 1999. Почвенная зоология — наука XX века. М.:Янус-К, 156 с.

  11. Стриганова Б. Р., Захаров А.А., 2000. Пятиязычный словарь названий животных: Насекомые (латинский-русский-английский-немецкий-французский): 11046 названий. М.: РУССО, 552 с.

  12. Стриганова Б.Р., Порядина Н.М. Животное население почв бореальных лесов Западно-Сибирской равнины // М. КМК, 2005, 232 с.

  13. Шилейко A.A., Рымжанов Т.С.Наземные моллюски Казахстана и сопредельных стран. КМК 2013

  14. Захаров А.А., Длусский Г.М., Горюнов Д.Н., Гилёв А.В., Зрянин В.А., Федосеева Е.Б., Гороховская Е.А., Радченко А.Г. Мониторинг муравьев Формика. КМК 2013.

  15. Данилевский М.Л. Жуки-усачи (Coleoptera, Cerambycoidea) России и соседних стран. Высшая Школа Консалтинга (ВШК) 2014, 522.

  16. Беньковский А.О. Жизнь листоедов-радужниц (Coleoptera: Chrysomelidae: Donaciinae) Ливны: Издатель Мухаметов Г.В. 2015,380 с.

  17. Беньковский А.О. Жуки-листоеды (Chrysomelidae) Определитель насекомых юга России. Учебное пособие. К.С. Артохин Изд-во "Foundation" 2014 1 320-345.

  18. Сысоев А.В., Шилейко А.А. Pulmonata. В: Ю.И.Кантор, А.В.Сысоев, 2005. Каталог моллюсков России и сопредельных стран. Москва. С. 193-308.

  19. Захаров А.А., 2015. Муравьи лесных сообществ, их жизнь и роль в лесу. ТНИ КМК 404 с.

  20. Кривошеина, Н. П., Кривошеина, М. Г., 2011. Определитель наземных личинок комаров-болотниц (Diptera, Limoniidae и Pediciidae) России. ООО ТНИ КМК.

  21. Кривошеина, М. Г. Кривошеина, Н. П., 2012. Определитель семейств и родов палеарктических двукрылых насекомых подотряда Nematocera по личинкам. ООО ТНИ КМК.

  22. Кривошеина Н. П., Кривошеина М. Г., 2016. Определитель двукрылых насекомых подотряда Brachycera-Orthorrhapha по личинкам. KMK Scientific Press, 385 с.

  23. Edwards A., T.Abe, Striganova B. (Еds)., 1995. Structure and function of soil communities». Kyoto: Univ. Press.

  24. Golovatch S.I., Wesener T. A species checklist of the millipedes (Myriapoda, Diplopoda) of India A species checklist of the millipedes (Myriapoda, Diplopoda) of India (Zootaxa) Magnolia Press 2016, 75 p.

  25. Schileyko A.A., 2002 - 2006. Treatise on Recent Terrestrial Pulmonate Molluscs. Parts 8 – 14. // Ruthenica.

  26. Zaitzev A.I. Fungus gnats (Diptera, Sciaroidea) of the fauna of Russia and adjacent regions. Part II // Intern. J. Dipterol. Res. 2003. V.14 (2-4). P. 77-386.

 

Список научных статей за 2014 - 2016 гг.

  1. Беньковский А.О., Орлова-Беньковская М.Я. Трофическая специализация жуков-листоедов (Coleoptera, Chrysomelidae) Хвалынского Приволжья Поволжский экологический журнал, 2014, 2 175-183.

  2. Медведев Л.Н. К познанию европейских личинок листоедов рода Cryptocephalus (Coleoptera, Chrysomelidae) Euroasian Entomological Journal, 2014, 13 2 133-145

  3. Медведев Л.Н., Муравицкий О.С. Новые личинки листоедов (Coleoptera, Chrysomelidae) из Европейской части России и Украины Энтомологическое обозрение, 2014, 43 1 112-122.

  4. Медведев Л.Н. К фауне жуков-листоедов (Insecta: Coleoptera, Chrysomelidae) Сибири и Дальнего Востока России Региональные проблемы, 2014, 17 35-39.

  5. Кривошеина Н. П. Сравнительная морфология преимагинальных стадий Phaonia impura Zinovjev, 1987 и Ph. profugax (Pandelle, 1899) (Diptera, Muscidae) Евразиатский энтомологический журнал Чернышев С.Э. КМК, 2014, 13 41-46.

  6. Кривошеина Н. П. Морфо-экологическая характеристика преимагинальных стадий рода Mydaea (Diptera, Muscidae) Зоологический журнал. МАИК Интерпериодика, 2014, 93 6 1-12.

  7. Кривошеина Н. П. Положение сем. Pantophthalmidae в системе прямошовных двукрылых (Diptera Orthorrhapha) на основании анализа личиночных признаков Энтомологическое обозрение МАИК Интерпериодика, 2014, 93 617-627

  8. Кривошеина Н. П., Кривошеина М. Г. К биологии мусцид рода Limnophora Robineau-Desvoidy (Diptera: Muscidae) Кавказский энтомологический бюллетень. КМК, 2014, 10 2 1-7.

  9. Никулина О. Н., Гюльтекин Л. Новые данные о личинках жуков-долгоносиков рода Larinus Dejean, 1821 (Coleoptera, Curculionidae) из Северо-Восточной Турции. Зоологический журнал МАИК Интерпериодика, 2014, 93: 641-650.

  10. Кириллова И. В., Чернова О. Ф., Крылович О. В., Тиунов А. В., Шидловский Ф. К. Первая находка скелета пещерного льва (Panthera spelaea Goldfuss, 1810) в России. Доклады Академии Наук, 2014, 455: 359-362.

  11. Гончаров А.А., Храмова Е.Ю., Тиунов А.В. Микростациальные различия трофической структуры сообществ почвенных беспозвоночных в лесах Печоро-Илычского заповедника. Почвоведение, 2014, 5: 571-579

  12. Шиленкова О.Л., Тиунов А.В. Освоение подвижного углерода почвы тропическими дождевыми червями Pontoscolex corethrurus (Glossoscolecidae, Oligochaeta). Зоологический журнал, 2014,.

  13. Кривошеина М.Г. К фауне мух-береговушек Крыма Эверсманния Большаков Л.В.РЭО, 2014, 39 42-45.

  14. Федоренко Д.Н. Крылья Coptoclavidae (Coleoptera, Adephaga) из Кейпера (триас) Франконии, Германия Палеонтологический журнал 6 32-36

  15. Самойлова Е.С., Костина Н.В., Стриганова Б.Р. Несимбиотическая азотфиксация в кишечнике личинок жуков-щелкунов (Coleoptera, Elateridae) Доклады академии наук.

  16. Бастраков А.И., Рыбалов Л.Б., Воробьева И.Г Почвенная мезофауна долины реки Большая Кокшага (на примере среднего течения реки). Поволжский экологический журнал, 2014, 4 418-423

  17. Захаров А.А., Захаров Р.А. Муравьи в условиях экстремально жаркого лета. Зоологический журнал, 2014, 93 1 92-107

  18. Панов А.А. Не все Dytiscidae (Insecta, Coleoptera) имеют плохо развитые грибовидные тела: загадка Cybister lateralimarginalis. Зоологический журнал МАИК-Наука, 2014, 93 4 549-558

  19. Панов А.А. Новый, необычный (по крайней мере для жуков) способ продуцирования клеток Кеньона , найденный у жука-плавунца Cybister lateralimarginalis Deg. (Coleoptera: Dytiscidae). Известия РАН. Серия биологическая МАИК-Наука, 2014, 2 150-154

  20. Триселёва Т.А., Сафонкин А.Ф. Генетическое и морфологическое разнообразие у чешуекрылых на примере мономорфной сосновой совки Panolis flammea L. и полиморфной всеядной листовертки Archips podana Scop. Генетика МАИК-Наука, 2014, 50 6 700-708

  21. Триселёва Т.А., Акентьева Н.А., Сафонкин А.Ф. Филогенетические отношения между группами злаковых мух рода Meromyza на основе генетического и морфологического анализа. Известия РАН. Серия биологическая МАИК-Наука, 2014, 3 213-218

  22. Гурьянова Т.М. Памяти Алексея Ивановича Воронцова (к 100-летию со дня рождения) Издательство МГУЛ, 2014,.

  23. Orlova-Bienkowskaja M.Ja., Bieńkowski A.O. Paridea angulicollis (Motschulsky, 1854) (Coleoptera: Chrysomelidae: Galerucinae) is a new genus and species for Russia Кавказский энтомологический бюллетень, 2014, 10 1 85–87.

  24. Likhitrakarn N., Golovatch S.I., Panha S. Zootaxa Magnolia Press, Aukland, New Zealand, 2014, 3754 4 473-482.

  25. Mikhailov K.G., Golovatch S.I. Book-review. An adventurous life of Victor Ivanovich Motschulsky, described by himself. Moscow & St. Petersburg, KMK Scientific Press, 2013. ZooKeys Pensoft, Sofia, Bulgaria, 2014, 371 85-90.

  26. Likhitrakarn N., Golovatch S.I., Panha S. The millipede genus Orthomorpha Bollman, 1893 in Laos, with descriptions of new species (Diplopoda, Polydesmida, Paradoxosomatidae) ZooKeys Pensoft, Sofia, Bulgaria, 2014, 374 1-22.

  27. Golovatch S.I. Review of the millipede genus Epanerchodus Attems, 1901 in continental China, with descriptions of new species (Diplopoda: Polydesmidae) Zootaxa Magnolia Press, Aukland, New Zealand, 2014, 3760 2 275-288

  28. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XV Arthropoda Selecta Moscow, KMK, 2014, 23 1 1-19

  29. Golovatch S.I., Stoev P. On five new species of the millipede family Paradoxosomatidae from Papua New Guinea (Diplopoda: Polydesmida) Arthropoda Selecta Moscow, KMK, 2014, 23 1 21-32

  30. Golovatch S.I. Two new and one little-known species of the millipede genus Epanerchodus Attems, 1901, from southern China (Diplopoda, Polydesmida, Polydesmidae) Fragmenta Faunistica Bohdanowixz W. Instytut i Muzeum Zoologii PAN, 2014, 56 2 157-166

  31. Likhitrakarn N., Golovatch S.I., Panha S. Review of the Southeast Asian millipede genus Enghoffosoma Golovatch, 1993 (Diplopoda, Polydesmida, Paradoxosomatidae), with descriptions of new species Zootaxa Magnolia Press, Aukland, New Zealand, 2014, 3811 4 491-514.

  32. Vagalinski B., Golovatch S., Simaiakis S.M., Enghoff H. & Stoev P. Millipedes (Myriapoda: Diplopoda) of Cyprus Zootaxa Magnolia Press, Aukland, New Zealand, 2014, 3835: 528-548.

  33. Golovatch S.I. Review of the millipede genus Riukiaria Attems, 1938 in continental China, with descriptions of new species (Diplopoda: Polydesmida: Xystodesmidae) Zootaxa Magnolia Press, Aukland, New Zealand, 2014, 3893 1 188-200

  34. Golovatch S.I., Geoffroy J.-J., VandenSpiegel D. Review of the millipede family Trichopolydesmidae in the Oriental realm (Diplopoda, Polydesmida), with descriptions of new genera and species ZooKeys Pensoft, Sofia, Bulgaria, 2014, 414 19-65

  35. Golovatch S.I., Geoffroy J.-J. On some new or poorly-known species of the millipede family Polydesmidae from southern China (Diplopoda: Polydesmida) Russian Entomological Journal Moscow, KMK, 2014, 23 91-105

  36. Golovatch S.I. The myriapodological legacy of Victor Ivanovich Motschoulsky (1810–1871) ZooKeys Pensoft, Sofia, Bulgaria, 2014, 426 11-16

  37. Likhitrakarn N., Golovatch S.I., Panha S. Three new species of the millipede genus Tylopus Jeekel, 1968 from Thailand, with additional notes on the species described by Attems (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys, 2014, 435 63-91

  38. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XVI Arthropoda Selecta Moscow, KMK, 2014, 23 3 227-251

  39. Mauriès J.-P., Golovatch S.I., Pérez T. Nuevas localidades de Archipolydesmus giennensis Mauriès,, 2014, en la provincia de Jaén (Andalucía, España) (Diplopoda: Polydesmidae) Monografías Bioespeleológicas G.E.V., Villacarillo, Spain, 2014, 8 15-16

  40. Liu Weixin, Golovatch S.I.б Tian Mingyi A review of the dragon millipede genus Desmoxytes Chamberlin, 1923 in China, with descriptions of four new species (Diplopoda, Polydesmida, Paradoxosomatidae). ZooKeys Pensoft, Sofia, Bulgaria, 2014, 448 9-26

  41. Golovatch S.I., VandenSpiegel D. Koponenius gen. nov., a new genus of the millipede family Haplodesmidae from the Himalayas of India and Nepal (Diplopoda: Polydesmida). – Zootax Zootaxa Magnolia Press, Aukland, New Zealand 20

  42. VandenSpiegel D., Golovatch S.I. The millipede genus Eviulisoma Silvestri, 1910 in Kenya, with descriptions of new species (Diplopoda, Polydesmida, Paradoxosomatidae) ZooKeys Pensoft, Sofia, Bulgaria, 2014,

  43. Golovatch S.I., Sabroux R., Geoffroy J.-J., Mauriès J.-P. A new species of the millipede genus Nannorrhacus Cook, 1896 from the island of Martinique, Lesser Antilles (Diplopoda: Polydesmida: Platyrhacidae) Fragmenta Faunistica Bohdanowixz W. Instytut i Muzeum Zoologii PAN, 2014, 57 2

  44. Golovatch S.I. On some new or poorly-known millipedes from Chile and Argentina (Diplopoda) Russian Entomological Journal Moscow, KMK, 2014, 23 Golovatch S.I., VandenSpiegel D. Notes on Afrotropical Pyrgodesmidae, 1 (Diplopoda: Polydesmida) Arthropoda Selecta Moscow, KMK, 2014, 23 4

  45. Medvedev L.N. New and poorly known leaf beetles (Coleoptera, Chrysomelidae) from China and Indochina Vernate, 2014, 33 401-412

  46. Medvedev L.N. Revision of the genus Paleosepharia Laboissiere, 1936 (Coleoptera, Chrysomelidae) from Indochina. Russian Entomological Journal, 2014, 23 1 45-51

  47. Medvedev L.N. Leaf beetles of the subfamily Lamprosominae (Coleoptera: Chrysomelidae) from Indonesia Serangga, 2014, 19 1

  48. Medvedev L.N. New and poorly known Chrysomelidae (Coleoptera) from Borneo Stuttgarter Beiträge zur Naturkunde A, 2014, 7 235-251

  49. Medvedev L.N. New and poorly known Chrysomelidae (Coleoptera) from Borneo Stuttgarter Beiträge zur Naturkunde A, 2014, 7

  50. Medvedev L.N. New genus of Clytrinae (Chrysomelidae) from Saudi Arabia Entomologische Zeitung, 2014, 124 1 17-20

  51. Медведев Л.Н. New species of Alticinae (Coleoptera, Chrysomelidae) from New Guinea and insular systems of South East Asia Biodiversity, Biogeography and Nature Conservation in Wallacea and New Guinea Riga, Latvia, 2014, 2 217-226

  52. Medvedev L.N. New taxa of Chrysomelidae (Coleoptera) from Vietnam Russian Entomological Journal, 2014, 23 4

  53. Medvedev L.N. Revision of the genus Xenoda (Coleoptera, Chrysomelidae) from SE Asia Serangga, 2014, 19 2 217-231

  54. Danilevsky M.L Additions and corrections to the new Catalogue of Palaearctic Cerambycidae (Coleoptera) edited by I. Löbl and A. Smetana, 2010. Part. IX Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 2 193-250

  55. Danilevsky M.L Two new subspecies of Dorcadion aethiops (Scopoli, 1763) from Bulgaria (Coleoptera, Cerambycidae). Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 2 251-254

  56. Danilevsky M.L Two new species of genus Cortodera Mulsant, 1863 from Asia (Coleoptera, Cerambycidae). Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 2 255-258

  57. Danilevsky M.L Vadonia vartanisi sp. n. from Turkey and Vadonia hirsuta (K. Daniel & J. Daniel, 1891) (Coleoptera, Cerambycidae) Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 2 259-266

  58. Danilevsky M.L, Komiya Z. Pogonarthron (Multicladum subgen. n.) and a female of Pogonarthron (Pseudomonocladum Villiers, 1961, stat. nov.) minutum (Pic, 1905) (Coleoptera, Cerambycidae). Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 2 267-271

  59. Danilevsky M.L Two new Cerambycidae (Coleoptera) taxa from Russian Far East. Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 4 224-229

  60. Danilevsky M.L Five new subspecies of Dorcadion sulcipenne Küster, 1847 (Coleoptera, Cerambycidae) from Georgia Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 4 230-243

  61. Danilevsky M.L. Phytoecia (Musaria) krupitskyi sp. n. (Coleoptera, Cerambycidae) from Turkey. Humanity space. International almanac. Higher School Consulting (HSC), 2014, 4 244-245

  62. Danilevsky M.L, Skrylnik Yu.E. Two new Longicorn species from Iran (Coleoptera, Cerambycidae) Humanity space. International almanac. Higher School Consulting (HSC), 2014, 3 4 246-248

  63. Krivosheina N. P., Krivosheina M. G. Far Eastern Entomologist БПИ ДВНЦ РАН, 2014, 282 1-7

  64. Fedosov A.E., Tiunov A.V., Kiyashko S.I., Kantor Yu.I. Trophic diversification in the evolution of predatory marine gastropods of the family Terebridae as inferred from stable isotope data. Marine Ecology Progress Series,, 2014, 497 143-156

  65. Korobushkin D.I., Gongalsky K.B., Tiunov A.V. Isotopic niche (δ13C and δ15N values) of soil macrofauna in temperate forests. Rapid Communications in Mass Spectrometry, 2014, 28 1303-1311.

  66. Zalewski M., Dudek D., Tiunov A.V., Godeau J.-F., Okuzaki Y., Ikeda H., Sienkiewicz P., Ulrich W. High niche overlap in the stable isotope space of ground beetles. Annales Zoologici Fennici, 2014, 51 301-312

  67. Krivosheina M.G. New data on distribution of the shore-fly Dryxo woodi (Diptera, Ephydridae) Far Eastern Entomologist БПИ ДВНЦ РАН, 2014, 273 15-17

  68. Ozerov A.L., Krivosheina M.G. A review of species of the genera Bostrichopyga Becker, 1894 and Paracosmetopus Hackman, 1956 (Diptera, Scathophagidae). Russian Entomological Journal. КМК, 2014, 23 1 85-90.

  69. Ozerov A.L., Krivosheina M.G. New and little known sepsid flies (Diptera: Sepsidae) from Vietnam Russian Entomological Journal. КМК, 2014, 23 2 147-149.

  70. Ozerov A.L., Krivosheina M.G. To the fauna of dung flies (Diptera: Scathophagidae ) of Russian Far East Russian Entomological Journal. КМК, 2014, 23 3 203-222

  71. Ozerov A.L., Krivosheina M.G. The First Record of the family Carnidae (Diptera) in Thailand, with the description of a new species. Far Eastern Entomologist БПИ ДВНЦ РАН, 2014, 279 1-12.

  72. Schileyko A.A. On the early evolution of pulmonate mollusks. Arianta, 2014, 4 13-16

  73. Schileyko A.A On the morphology of copulative apparatus of some Ariantinae (Pulmonata Helicidae) Ruthenica, 2014, 23 2 1-24.

  74. Fedorenko D.N. Dyschiridium belovi sp.n. - the first pelecine from Indochina (Coleoptera, Carabidae) Russian Entomol. Journ., 2014, 23 2 107-111

  75. Ermilov S.,G. Rybalov L.B. Ethiopian oribatid mites (Acari: Oribatida) from the Joint Russian-Ethiopian Biological Expedition (2012), with description of a new specie African Invertebrates, 2014, Vol. 55 1 27-37.

  76. Ermilov S.G., Rybalov L.B., Tariku H Ethiopian oribatid mites (Acari, Oribatida): results of the Joint Russian-Ethiopian Biological Expedition (June 2013). Systematic & Applied Acarology, 2014, 19 2 197–204.

  77. Ermilov S.,G. Rybalov L.B. A New Oribatid Mite Species of the Genus Protoribates (Acari, Oribatida, Haplozetidae) from Ethiopia. Entomological Review, 2014, 94 136-139

  78. Karaban K., Uvarov A.V. Non-trophic effects of earthworms on enchytraeids: an experimental investigation. Soil Biology and Biochemistry, 2014, 73 84-92

  79. Danylow A., Ulrich W., Ilieva-Makulec K., Olejniczak I., Hajdamowicz I., Stańska M., Uvarov A. Testing Metabolic Theory of Ecology on the local scale: a preliminary study. Ecological Questions, 2014, 16 69-75

  80. Bieńkowski A. O., Orlova Bienkowskaja M. Ja. Trophic Specialization of Leaf Beetles (Coleoptera, Chrysomelidae) in the Volga Upland Biology Bulletin Pleiades Publishing, Ltd., 2015, 42

  81. Bieńkowski A. O. The First Record of Reed Beetles (Coleoptera, Chrysomelidae, Donaciinae) in the Early Paleocene of Amur Region Paleontological Journal Pleiades Publishing, Ltd., 2015, 49

  82. Беньковский А.О. Первая находка листоедов-радужниц (Coleoptera, Chrysomelidae, Donaciinae) в нижнем палеоцене Амурской области Палеонтологический журнал МАИК "Наука", 2015,

  83. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XVII Arthropoda Selecta KMK Scientific Press, 2015, 24

  84. Golovatch S.I., Nzoko Fiemapong A.R., VandenSpiegel D. Notes on Afrotropical Pyrgodesmidae, 2 (Diplopoda: Polydesmida) Arthropoda Selecta KMK Scientific Press, 2015, 24

  85. Golovatch S.I., VandenSpiegel D. A new species of the millipede genus Cryptocorypha Attems, 1907, from Myanmar (Diplopoda: Polydesmida: Pyrgodesmidae) Arthropoda Selecta KMK Scientific Press, 2015, 24

  86. Shelley, R.M., Golovatch S.I. Nomenclator generum et familiarum Diplopodorum III. A list of the genus and family-group names in the class Diplopoda Arthropoda Selecta KMK Scientific Press, 2015, 24

  87. VandenSpiegel D., Golovatch S.I., Nzoko Fiemapong A.R. Two new species, including one representing a new genus, of the West African millipede family Campodesmidae (Diplopoda: Polydesmida) European Journal of Taxonomy, 2015, 139.

  88. Likhitrakarn N., Golovatch S.I., Panha S. Review of the millipede genus Kronopolites Attems, 1914 (Diplopoda, Polydesmida, Paradoxosomatidae), with the description of a new species from Laos ZooKeys Pensoft, 2015, 472

  89. Golovatch S.I., VandenSpiegel D. A new millipede of the family Ammodesmidae found in central Africa (Diplopoda, Polydesmida) ZooKeys Pensoft, 2015, 483

  90. Golovatch S.I., Geoffroy J.-J., Mauriès J.-P., VandenSpiegel D. Review of the millipede genus Eutrichodesmus Silvestri, 1910, in China, with descriptions of new cavernicolous species (Diplopoda, Polydesmida, Haplodesmidae) ZooKeys Pensoft, 2015, 505

  91. Golovatch S.I. Cave Diplopoda of southern China with reference to millipede diversity in Southeast Asia ZooKeys Pensoft, 2015, 510

  92. Likhitrakarn N., Golovatch S.I., Panha S. Two new species of dragon millipedes, genus Desmoxytes Chamnerlin, 1923, from Laos (Diplopoda: Polydesmida: Paradoxosomatidae), with redescriptions of all four species of Attems from Vietnam Zootaxa Magnolia Press, 2015, 3931

  93. Golovatch S.I., Evsyukov A.P., Reip H.S. Colobognatha millipedes in the Caucasus (Diplopoda: Polyzoniida, Platydesmida, Siphonocryptida) Zootaxa Magnolia Press, 2015, 3972

  94. Likhitrakarn N., Golovatch S.I., Panha S. A checklist of the millipedes (Diplopoda) of Cambodia Zootaxa Magnolia Press, 2015, 3973

  95. Likhitrakarn N., Golovatch S.I., Panha S. A checklist of the millipedes (Diplopoda) of Cambodia. Zootaxa Magnolia Press, 2015, 3973

  96. Golovatch S.I. Two new species of the millipede order Polydesmida from southern China (Diplopoda). Зоологический журнал МАИК Наука, 2015, 94

  97. Goncharov A.A., Zalewski M., Dudek D., Godeau J.F., Sienkiewicz P., Ulrich W., Tiunov A.V. Sex-related variation in δ15N values of ground beetles (Coleoptera, Carabidae): a case study Pedobiologia Elsevier, 2015, 58

  98. Gorbunov O.G. Contributions to the study of the Ethiopian Lepidoptera. I. The genus Melittia Hübner, 1819 [“1816”] with description of a new species Zootaxa Dr. Z.-Q. Zhang Magnolia Press, 2015, 4033

  99. Danilevsky M.L. A new species of the genus Purpuricenus Dejean, 1821 (Coleoptera: Cerambycidae) from the Caucasus Caucasian Entomological Bulletin Институт аридных зон ЮНЦ РАН, 2015, 11

  100. Захаров А.А. Классификация комплексов муравейников Зоологический журнал МАИК Наука, 2015, 94

  101. Захаров А.А. Северцов А.С., Перфильева К.С., Федосева Е.Б. Геннадий Михайлович Длусский Зоологический журнал МАИК Наука, 2015, 94

  102. Захаров А.А. Муравьи в экологическом мониторинге. Лесной вестник МГУЛ, 2015, 18

  103. Кривошеина М.Г. Первая регистрация мух-береговушек рода Glenanthe Haliday, 1839 (Diptera, Ephydridae) в фауне России Энтомологическое обозрение МАИК Наука, 2015,

  104. Krivosheina M.G. The first record of the shore-fly genus Glenanthe Haliday, 1839 (Diptera, Ephydridae) in the fauna of Russia Entomological Review Springer, 2015, 94

  105. Krivosheina M.G., Ozerov A.L. A new species of the shore-fly genus Notiphila Fallen, 1810 (Diptera: Ephydridae) from Indonesia Zootaxa Magnolia Press, 2015,

  106. Ozerov A.L., Krivosheinа М.Г. A review of the genera Cleigastra Macquart, 1835, Gonarcticus Becker, 1894, Gonatherus Rondani, 1856, Hexamitocera Becker, 1894, Nanna Strobl, 1894, Orthacheta Becker, 1894 and Spathephilus Becker, 1894 (Diptera, Scathophagidae) of Russia Zootaxa Magnolia Press, 2015, 412

  107. Ozerov A.L., Krivosheina M.G. Two new species of the genus Cordilura Fallén, 1810 (Diptera, Scathophagidae) from the Russian Far East Zootaxa Magnolia Press, 2015, 4040

  108. Кривошеина М.Г., Рихтер В.А. Мухи-тахины (Diptera:Tachinidae) – опылители аборигенных и чужеродных видов зонтичных растений в Московской области (Россия) Кавказский энтомологический бюллетень КМК, 2015, 11.

  109. Кривошеина Н.П., Компанцев А.В. Первое описание личинки львинок ориентального рода Rosapha Walker, 1859 (Diptera, Stratiomyidae). Кавказский энтомологический бюллетень КМК, 2015, 11

  110. Кривошеина Н.П., Кривошеина М.Г., Компанцев А.В.Новый ориентальный вид рода Solva Walker, 1859 с данными по морфологии личинки (Diptera, Xylomyidae) Энтомологическое обозрение МАИК Наука, 2015,

  111. Кривошеина Н.П., Хрулева О.А. Новый вид рода Bibio (Diptera, Bibionidae) из тундр азиатской части России. Зоологический журнал МАИК Наука, 2015, 94

  112. Krivosheina N.P., Khruleva O.A. A new species of the genus Bibio (Diptera, Bibionidae) from the tundra of the Asian part of Russia. Entomological Review Springer, 2015, 94

  113. Krupitsky A.V., Pljushtch I.G., Pak O.V. A new species of the Callophrys paulae Pfeiffer, 1932 species group from Afghanistan (Lepidoptera, Lycaenidae) Zootaxa Magnolia Press, 2015, 4027

  114. Romantsov P.A., Medvedev L.N. New and little-known flea beetles (Chrysomelidae, Alticinae) from Southeastern Asia Кавказский энтомологический бюллетень Институт аридных зон ЮНЦ РАН, 2015, 11

  115. Панов А.А. Общее строение мозга и нейробласты грибовидных тел у новорожденной личинки Pterostichus niger Deg. (Coleoptera: Carabidae) Известия РАН. Серия биологическая МАИК Наука, 2015,

  116. Panov A.A. General brain structure of newly hatched larva and neuroblasts in larval mushroom bodies in Pterosichus niger Deg. (Coleptera:Carabidae) Biology Bulletin Pleiades Publishing, 2015, 42

  117. Tanasevitch A.V., Rybalov L.B Fauna and distribution of spiders (Aranei) of the arctic tundra in northern Yamal Peninsula, Russia. Fauna and distribution of spiders (Aranei) of the arctic tundra in northern Yamal Peninsula, Russia. Arthropoda Selecta. KMK Scientific Press, 2015, 24

  118. Самойлова Е.С., Костина Н.В., Стриганова Б.Р. Несимбиотическая азотфиксация в кишечнике личинок жуков-щелкунов (Coleoptera, Elateridae) Доклады Академии Наук МАИК Наука, 2015, 461

  119. Самойлова Е.С., Костина Н.В., Стриганова Б.Р. Влияние жизнедеятельности почвообитающих личинок насекомых на микробные процессы в почве Известия РАН. Серия биологическая МАИК Наука, 2015,

  120. Сафонкин А.Ф., Триселева Т.А., Яцук А.А., Акентьева Н.А. Факторы, влияющие на динамику суточной активности злаковых мух Meromyza saltatrix (L.) (Diptera:Chloropidae Известия РАН. Серия биологическая МАИК Наука, 2015,

  121. Safonkin A.F., Triselyova T.A., Yazchuk A.A., Akent'eva N.A. Factors affecting the dynamics of circadian activity of frit flies Meromyza saltatrix (L.) (Diptera:Chloropidae) Biology Bulletin Pleiades Publishing, 2015, 42

  122. Semenina E.E., Anichkin A.E., Shilenkova O.L., Ermilov S.G., Tiunov A.V. Rapid extraction of invertebrates from tropical forest litter using modified Winkler apparatus Journal of Tropical Ecology Cambridge University Press, 2015, 31

  123. Tiunov A.V., Semenina E.E., Aleksandrova A.V., Tsurikov S.M., Anichkin A.E., Novozhilov Yu.K. Stable isotope composition (δ13C and δ15N values) of slime molds: placing bacterivorous soil protozoans in the food web context Rapid Communications in Mass Spectrometry John Wiley & Sons, 2015, 29

  124. Gorlova, E. N., Krylovich, O. A., Tiunov, A. V., Khasanov, B. F., Vasyukov, D. D., Savinetsky, A.B. Stable-Isotope Analysis as a Method of Taxonomical Identification of Archaeozoological Material Archaeology, Ethnology and Anthropology of Eurasia Elsevier, 2015, 43

  125. Lyubechanskii I.I., Dudko R.Yu., Tiunov A.V., Mordkovich V.G. Trophic structure of ground-dwelling insects in the coastal zone of a salt lake in southern Siberia based on the data of isotopic analysis Arid Ecosystems Pleiades Publishing, 2015, 5

  126. Zalewski M., Dudek-Godeau D., Tiunov A.V., Godeau J.-F., Okuzaki Y., Ikeda H., Sienkiewicz P., Ulrich W. Wing morphology is linked to stable isotope composition of nitrogen and carbon in ground beetles (Coleoptera: Carabidae) European Journal of Entomology Czech Entomological Society, 2015, 112

  127. Kirillova I.V., Zanina O.G., Chernova O.F., Lapteva E.G., Trofimova S.S., Lebedev V.S., Tiunov A.V., Soares A.E.R., Shidlovskiy F.K., Shapiro B. An ancient bison from the mouth of the Rauchua River (Chukotka, Russia) Quaternary Research Elsevier, 2015, 84

  128. Kirillova I.V., Tiunov A.V., Levchenko V.A., Chernova O.F., Yudin V.G., Bertuch F., Shidlovskiy F.K. On the discovery of a cave lion from the Malyi Anyui River (Chukotka, Russia) Quaternary Science Reviews Elsevier, 2015, 117

  129. Любечанский И.И., Дудко Р.Ю., Тиунов А.В., Мордкович В.Г. Трофическая структура сообщества герпетобионтных насекомых прибрежной экосистемы соленого озера в Южной Сибири по данным изотопного анализа Аридные Экосистемы Pleiades Publishing, 2015, 21

  130. Горлова Е.Н., Крылович О.А., Тиунов А.В., Хасанов Б.Ф., Васюков Д.Д., Савинецкий А.Б. Изотопный анализ как метод таксономической идентификации археозоологического материала Археология, этнография и антропология Евразии Инст. Археологии и Этнографии СО РАН, 2015, 61

  131. Голубков С.М., Тиунов А.В. Происхождение углерода в органическом веществе эстуария реки Невы Доклады Академии Наук МАИК Наука, 2015, 465

  132. Uvarov A.V., Karaban K. Do alterations in mesofauna community affect earthworms? Oecologia Springer, 2015, 179

  133. Fedorenko D.N. A review of the oriental genus Praepristus (Coleoptera: Carabidae: Platynini) The Canadian Entomologist Cambridge University Press, 2015, 147

  134. Tsurikov S.M., Goncharov A.A., Tiunov A.V. Intra-body variation and ontogenetic changes in the isotopic composition (13C/12C and 15N/14N) of beetles (Coleoptera) Entomological Review Pleiades Publishing, 2015, 95

  135. Цуриков С.М., Гончаров А.А., Тиунов А.В. Изотопный состав (13C/12C и 15N/14N) разных тканей жесткокрылых насекомых (Insecta, Coleoptera) и его изменения в онтогенезе Зоологический журнал МАИК Наука, 2015, 94

  136. Kudrin A.A., Tsurikov S.M., Tiunov A.V. Trophic position of microbivorous and predatory soil nematodes in a boreal forest as indicated by stable isotope analysis Soil Biology and Biochemistry Elsevier, 2015, 86

  137. Schileyko A.A. Taxonomic position of Helix pernobilis Ferussac 1821 and notes on the genus Koratia (Gastropoda: Pulmonata: Ariophantidae) Ruthenica A.N.Severtsov Institute of Ecology and Evolution RAS, 2015, 25

  138. Schileyko A.A. News on Campylaea illyrica (Stabile, 1864) (Pulmonata, Helicidae, Ariantinae) Ruthenica A.N.Severtsov Institute of Ecology and Evolution RAS, 2015, 25

  139. Schileyko A.A. Дополнения к малакофауне Вьетнама: роды Parmarion и Maghimatium (Pulmonata, Stylommatophora) Ruthenica A.N.Severtsov Institute of Ecology and Evolution RAS, 2015, 25

  140. Golovatch S.I., Sabroux R., Geoffroy J.-J., Mauriès J.-P. A new species of the millipede genus Nannorrhacus Cook, 1896 from the island of Martinique, Lesser Antilles (Diplopoda: Polydesmida: Platyrhacidae) Fragmenta Faunistica Muzej i Instytut Zoologii PAN, 2015, 57

  141. Golovatch S.I. A new species of the millipede genus Hyleoglomeris Verhoeff, 1910, from Tajikistan, Central Asia (Diplopoda: Glomerida: Glomeridae) Russian Entomological Journal KMK Scientific Press, 2015, 24

  142. Golovatch S.I., VandenSpiegel D. Two new species of the millipede genus Caucasodesmus Golovatch, 1985 from the Crimea, Russia (Diplopoda, Polydesmida, Trichopolydesmidae) Russian Entomological Journal KMK Scientific Press, 2015, 24

  143. Golovatch S.I. A review of the millipede genus Ophrydesmus Cook, 1896, with the description of a new species from southern Vietnam (Diplopoda: Polydesmida: Cryptodesmidae) Tropical Natural History, 2015, 15

  144. Golovatch S.I., VandenSpiegel D. The millipede genus Koponenius Golovatch & VandenSpiegel,, 2014, found in Myanmar (Diplopoda: Polydesmida: Haplodesmidae) Tropical Natural History Prof. S. Panha Chulalongkorn University, 2015, 15

  145. Gorbunov O.G. A new species of the genus Anthedonella O. Gorbunov et Arita, 1999 from the island of Siberut, Mentawai, Indonesia Far Eastern Entomologist Биолого-почвенный институт ДВО РАН, 2015, 299

  146. Gorbunov O.G., Arita Yu. A new species of the genus Nokona Matsumura, 1931 (Lepidoptera, Sesiidae) from South Sulawesi Far Eastern Entomologist Биолого-почвенный институт ДВО РАН, 2015, 293

  147. Danilevsky M.L. Vartanis J. A new subspecies of Vadonia unipunctata (Fabricius, 1787) (Coleoptera, Cerambycidae) from Ikaria Island, Greece Humanity space Высшая Школа Консалтинга, 2015, 4

  148. Danilevsky M.L. A new species of the genus Morimus Brullé, 1832 (Coleoptera, Cerambycidae) from Central Europe Humanity space Высшая Школа Консалтинга, 2015, 4

  149. Danilevsky M.L. A new species of genus Dorcadion Dalman, 1817 (Coleoptera, Cerambycidae) from Turkey (Ispir, Erzurum) Humanity space Высшая Школа Консалтинга, 2015, 4

  150. Danilevsky M.L. Two new species of genus Pogonocherus Dejean, 1821 (Coleoptera, Cerambycidae) from Europe Humanity space Высшая Школа Консалтинга, 2015, 4

  151. Danilevsky M.L. New and poorly known taxa of the genus Cortodera Mulsant, 1863 (Coleoptera, Cerambycidae) from South Europe and Near East Humanity space Высшая Школа Консалтинга, 2015, 4

  152. Danilevsky M.L. Peks H. J. Brachyta interrogationis eitschbergeri ssp. n. (Coleoptera, Cerambycidae) - black subspecies from south-east Germany Humanity space Высшая Школа Консалтинга, 2015, 4

  153. Захаров А.А. Захаров Р.А Федосеева Е.Б. Использование параметров гнезда рыжих лесных муравьев в мониторинге муравейников Проблемы экологического мониторинга и моделирования экосистем ИГКЭ Госметеоцентра и РАН, 2015, 26

  154. Кривошеина Н.П., Кривошеина М.Г. К биологии Hesperinus ninae Papp et Krivosheina, 2010 (Diptera, Hesperinidae) с описанием преимагинальных стадий Русский энтомологический журнал КМК, 2015, 24

  155. Krivosheina M.G., Ozerov A.L. A new species of the genus Dryxo Robineau-Desvoidy 1830 (Diptera: Ephydridae) from Indonesia 21 Far Eastern Entomologist Биолого-почвенный институт ДВО РАН, 2015,

  156. Кривошеина М.Г., Озеров А.Л. Scatella (Neoscatella) alticola sp.n. – новый вид мух-береговушек (Diptera: Ephydridae) из Индонезии Russian Entomological Journal KMK Scientific Press, 2015, 24

  157. Озеров А.Л., Кривошеина М.Г. Новый вид рода Neochirosia Malloch, 1917 (Diptera, Scathophagidae) из Сербии Russian Entomological Journal. KMK Scientific Press, 2015, 24

  158. Кривошеина М.Г., Озерова Н.А. Мухи-береговушки – обитатели пойм верхней Волги в условиях экстремально низкой летней межени Эверсманния РЭО, 2015,

  159. Medvedev L.N. New taxa of Chrysomelidae (Coleoptera) from Vietnam Russian Entomological Journal KMK Scientific Press, 2015, 24

  160. Medvedev L.N. Leaf beetles of the subfamily Alticinae (Coleoptera: Chrysomelidae) from Indonesia Serangga Centre for Insect Systematics, 2015, 20

  161. Medvedev, L., Romantsov, P. Leaf beetles of the tribe Clytrini (Coleoptera: Chrysomelidae: Cryptocephalinae) from Borneo Stuttgarter Beiträge zur Naturkunde A (Biologie) Staatliches Museum für Naturkunde Stuttgart, 2015, 8

  162. Fedorenko D.N. Notes on the genera Dischissus and Microcosmodes (Coleoptera, Carabidae, Panagaeini), with description of a new genus and a new species Russian Entomological Journal KMK Scientific Press, 2015, 24

  163. Bienkowski A.O., Orlova-Bienkowskaja M.Ja. Key to Holarctic species of Epitrix flea beetles (Coleoptera: Chrysomelidae: Galerucinae: Alticini) with review of their distribution, host plants and history of invasions Zootaxa, 2016, 4175 5 401–435

  164. Fedorenko D.N. Notes on Craspedophorus (Coleoptera, Carabidae, Panagaeini) from Vietnam, with description of new species and subspecies Russian Entomological Journal KMK Scientific Press, 2016, 25 1 1-34

  165. Fedorenko D.N. A new subgenus and new species of Parathlibops, with notes on morphology and taxonomy of Scapterina (Coleoptera, Carabidae, Scaritini) Russian Entomological Journal KMK Scientific Press, 2016, 25 4 323-354

  166. Geoffroy, J.-J. & Golovatch S.I. Polydesmus denticulatus C.L. Koch, 1847, vs Polydesmus denticulatus Leguillou, 1841 (Diplopoda, Polydesmida): conservation of usage and precedence of the combination Polydesmus denticulatus C.L. Koch, 1847, with a proposal to remove homonymy and suppress the combination Polydesmus denticulatus Leguillou, 1841 Invertebrate Zoology KMK Scientific Press, 2016, 13 1 51-60

  167. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XVIII Arthropoda Selecta KMK Scientific Press, 2016, 25 1 001-018

  168. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XIX Arthropoda Selecta KMK Scientific Press, 2016, 25 2 131-152

  169. Golovatch S.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XX Arthropoda Selecta KMK Scientific Press, 2016, 25 3 219-240

  170. Golovatch S.I. The millipede family Cryptodesmidae in Indochina (Diplopoda: Polydesmida) ZooKeys Pensoft, 2016, 578 33-43

  171. Golovatch S.I., Evsyukov A.R., Reip H. The millipede family Polydesmidae in the Caucasus (Diplopoda: Polydesmida) Zootaxa Magnolia Press, 2016, 4085 1 001-051

  172. Golovatch S.I., Geoffroy J.-J., Mauriès J.-P. & VandenSpiegel D. Four new species of the millipede genus Eutrichodesmus Silvestri, 1910, from caves in Indochina (Diplopoda: Polydesmida: Haplodesmidae). Arthropoda Selecta KMK Scientific Press, 2016, 25 3 247-256

  173. Golovatch S.I., Semenyuk I.I. Two new species of the millipede family Glomeridae from Vietnam (Diplopoda: Glomerida) Russian Entomological Journal KMK Scientific Press, 2016, 24 4 10

  174. Golovatch S.I., VandenSpiegel D. A new species of the millipede genus Koponenius Golovatch et VandenSpiegel,, 2014,, from Nepal (Diplopoda: Polydesmida: Haplodesmidae) Russian Entomological Journal KMK Scientific Press, 2016, 24 2 219-223

  175. Golovatch S.I., VandenSpiegel D. A new species of the millipede genus Helicodesmus Golovatch, Geoffroy et VandenSpiegel,, 2014,, from southern Vietnam (Diplopoda: Polydesmida: Trichopolydesmidae) Russian Entomological Journal KMK Scientific Press, 2016, 24 3 293-297

  176. Golovatch S.I., VandenSpiegel D., Semenyuk I.I. On several new or poorly-known Oriental Paradoxosomatidae (Diplopoda: Polydesmida), XXI Arthropoda Selecta KMK Scientific Press, 2016, 25 4 22

  177. Goncharov A.A., Tsurikov S.M., Potapov A.M., Tiunov A.V. Short-term incorporation of freshly fixed plant carbon into the soil animal food web: field study in a spruce forest Ecological Research, 2016, 31 923-933

  178. Gorbunov O.G. Nokona mahawu sp. n., a new clearwing moth species (Lepidoptera, Sesiidae) from North Sulawesi, Indonesia Russian entomological journal KMK Scientific Press, 2016, 25 2 161-165

  179. Gorbunov O.G., Arita Yu. A new species of the genus Cyanosesia O. Gorbunov et Arita from South-East Sulawesi, Indonesia (Lepidoptera: Sesiidae) Euroasian Entomological Journal KMK Scientific Press, 2016, 15 Suppl. 35-39

  180. Korb S.K., Gorbunov O.G. On two recently published books on the genus Colias Fabricius, 1807 (Lepidoptera: Pieridae) Russian entomological journal KMK Scientific Press, 2015, 24 4 307-311

  181. Krivosheina M.G., Ozerov A.L. A new species of the shore-fly genus Scatophila Becker, 1896 (Diptera, Ephydridae) with reduced wings from Wrangel island, Russia Far eastern Entomologist, 2016, 311 1-6

  182. Krivosheina M.G., Ozerova N.A. To the biology of celery fly Euleia heraclei (Linnaeus, 1758) (Diptera: Tephritidae) — pest of alien Apiaceae species in Moscow Region Russian Entomological Journal, 2016, 25 2 209-213

  183. Krivosheina NP, Krivosheina M,G. New data on the biology of horseflies from the genera Tabanus Linnaeus, 1758 and Hybomitra Enderlein, 1922 (Diptera, Tabanidae) reared from wood substrates Far eastern Entomologist, 2016, 322 11-16

  184. Likhitrakarn N., Golovatch S.I., Panha S. The millipede genus Tylopus Jeekel, 1968 (Diplopoda, Polydesmida, Paradoxosomatidae), with a key and descriptions of eight new species from Indochina European Journal of Taxonomy, 2016, 195 001-047

  185. Likhitrakarn N., Golovatch S.I., Panha S. Review of the Southeast Asian millipede genus Antheromorpha Jeekel, 1968 (Diplopoda, Polydesmida, Paradoxosomatidae) ZooKeys Pensoft, 2016, 571 21-57

  186. Liu Weixin, Golovatch S.I., Mingyi Tian. Six new species of dragon millipedes, genus Desmoxytes Chamberlin, 1923, mostly from caves in southern China (Diplopoda, Polydesmida, Paradoxosomatidae) ZooKeys Pensoft, 2016, 577 001-024

  187. Medvedev L.N. New and poorly known Clytrini (Coleoptera, Chrysomelidae, Cryptocephalinae) from Borneo island, South-East Asia Euroasian Entomological Journal KMK Scientific Press, 2016, 15 1 43–44

  188. Medvedev L.N. New and poorly known Oriental Alticinae (Coleoptera, Chrysomelidae) Russian Entomological Journal KMK Scientific Press, 2016, 25 3 259-264

  189. Medvedev L.N. Leaf beetles of the tribe Cryptocephalini (Coleoptera: Chrysomelidae: Cryptocephalinae) from Borneo 47-63 Stuttg.Beitr. Naturk, 2016, 9 47-63

  190. D.A., S.I. Golovatch The millipede genus Enghoffosoma Golovatch, 1993 recorded in Vietnam for the first time, with descriptions of three new species (Diplopoda, Polydesmida, Paradoxosomatidae) Zootaxa Magnolia Press, 2016, 4139 2 151-166

  191. Ozerov A.L., Krivosheina M.G. To taxonomy of the genus Cleigastra Macquart, 1835 (Diptera: Scatophagidae) with description of two new species Russian Entomological Journal, 2016, 25 97-102

  192. Potapov A.M., Goncharov A.A., Tsurikov S.M., Tully T., Tiunov A.V. Assimilation of plant-derived freshly fixed carbon by soil collembolans: Not only via roots? Pedobiologia, 2016, 59 189-193

  193. Potapov A.M., Semenina E.E., Korotkevich A.Yu., Kuznetsova N.A., Tiunov A.V. Connecting taxonomy and ecology: trophic niches of collembolans as related to taxonomic identity and life forms Soil Biology and Biochemistry, 2016, 101 20-31

  194. Potapov A.M., Tiunov A.V. Stable isotope composition of mycophagous collembolans versus mycotrophic plants: do soil invertebrates feed on mycorrhizal fungi? Soil Biology and Biochemistry, 2016, 93 115-118

  195. Uvarov A.V. Density-mediated earthworm effects on soil respiration Polish Journal of Ecology, 2016, 64 4 303-315

  196. Vagalinski B., Golovatch S.I. Two new species of Anamastigona from Cyprus and an updated key to species of the genus (Diplopoda: Chordeumatida: Anthroleucosomatidae) European Journal of Taxonomy, 2016, 227 001-019

  197. VandenSpiegel D., Golovatch S.I. & Mauriès J.-P. Review of the western African millipede genus Diaphorodesmus Silvestri, 1896 (Diplopoda, Polydesmida, Chelodesmidae), with the description of a similar, but new monotypic genus from Cameroon ZooKeys Pensoft, 2016, 600 007-024

  198. ZaitsevA.A., Kompantsev A.V., Zaitsev A.I.A Review of Larval Encaustini (Coleoptera: Erotylidae) from Russia Russian Entomological Journal, 2016, 25 4 1-20

  199. M., Dudek-Godeau D., Godeau J.-F., Kujawa K., Sienkiewicz P., Tiunov A.V., Ulrich W. Trophic generalism at population level in ground beetles (Coleoptera: Carabidae) The Canadian Entomologist, 2016, 148 284-293.

  200. Быкова Т.О., Триселева Т.А., Ивашов А.В., Сафонкин А.Ф. К оценке морфогенетического разнообразия медоносной пчелы Apis mellifera L. Из горно-лесной зоны Крыма Известия РАН. Серия биологическая, 2016, 6 625-630

  201. Горбунов О.Г., Ефетов К.А. Биология и распространение Bembecia puella Z. Laštůvka, 1989 (Lepidoptera, Sesiidae) в Крыму Таврический медико-биологический вестник, 2016, 19 21-24

  202. Ефетов К.А., Горбунов О.Г. Привлечение самцов Adscita statices (Linnaeus, 1758) (Lepidoptera: Zygaenidae) к синтетическому половому аттрактанту в Московской област Таврический медико-биологический вестник, 2016, 19 3 39-45

  203. Коробушкин Д.И., Короткевич А.Ю., Колесникова А.А., Гончаров А.А., Панченков А.А., Тиунов А.В. Освоение водной субсидии почвенными беспозвоночными прибрежных экосистем Сибирский экологический журнал, 2016, 4 485-497

  204. Короткевич А.Ю., Кузнецова Н.А., Тиунов А.В. Изменение изотопного состава (13С/12C и 15N/14N) коллембол при длительном хранении почвенных проб. Экология, 2016, 6 472-475

  205. Кривошеина Н.П. Насекомые – некросапрофаги в ксилофильных сообществах: личинки ксиломии рода Solva (Diptera, Xylomyidae) Зоологический журнал, 2016, 95 1 67-76

  206. Кривошеина Н.П. Ксилобионтные двукрылые рода Xylomya Rondani, 1861 (Diptera, Xylomyidae) фауны России Энтомологическое обозрение, 2016, 95 1 211-228

  207. Кривошеина Н.П. Описание нового вида львинок рода Adoxomyia Kertesz, 1907 (Diptera, Strayiomyidae) по имаго и личинкам из Азербайджана Энтомологическое обозрение, 2016, 95 2 394-404

  208. Кривошеина Н.П., Кривошеина М.Г. Первое описание личинки Beris heptapotamica Pleske, 1926 (Diptera: Stratiomyiidae) Кавказский энтомологический бюллетень, 2016, 12 1 167-170

  209. Крупицкий А.В. Новые данные по распространению голубянок из трибы Eumaeini (Lepidoptera: Lycaenidae: Theclinae) в Иране. Кавказский Энтомологический Бюллетень, 2016, 12 1 157-159.

  210. Никулина О.Н. Морфология личинок жуков-долгоносиков Apion frumentarius, Pseudaplemonus aeneicollis, Stenopterapion maegelanicum (Coleoptera, Curculionidae) Зоологический журнал, 2016, 95 1 33-43

  211. Панов А.А. Длительное сохранение очагов нейробластов в зрительных долях имаго Carabus nemoralis Müll. и C. hortensis L. (Coleoptera: Carabidae) Известия РАН. Серия биологическая, 2016, 1 50-54

  212. Самойлова Е.С., Костина Н.В., Стриганова Б.Р. Микробное население пищеварительного тракта личинок жуков - щелкунов (Elateridae, Coleoptera) Известия РАН. Серия биологическая Наука, 2016, 5 532-543

  213. Сафонкин А.Ф., Триселева Т.А., Яцук А.А., Акентьева Н.А. Эволюция постгонитов у злаковых мух рода Meromyza (Diptera, Chloropidae) Зоологический журнал, 2016, 95 11 1334-1342

  214. Триселева Т.А., Акентьева Н.А., Сафонкин А.Ф. Морфология антенно-максиллярного комплекса личинок и антенн имаго Meromyza saltatrix (L.) и Meromyza nigrisetaFed. (Diptera, Chloropidae) Бюллетень МОИП. Отдел биологический, 2016, 121 32-38

  215. Турбанов И.С., Палатов Д.М., Головач С.И. Современное состояние биоспелеологии в России и странах бывшего Советского Союза: обзор пещерной (эндогейной) фауны беспозвоночных. 1. Введение – Crustacea. Зоологический журнал МАИК Наука, 2016, 95 10 1136–1159

  216. Турбанов И.С., Палатов Д.М., Головач С.И. Современное состояние биоспелеологии в России и странах бывшего Советского Союза: обзор пещерной (эндогейной) фауны беспозвоночных. 2. Arachnida – Благодпрности. Зоологический журнал МАИК Наука, 2016, 95 11 1283-1304

  217. Турбанов И.С., Палатов Д.М., Головач С.И. Современное состояние биоспелеологии в России и странах бывшего Советского Союза: обзор пещерной (эндогейной) фауны беспозвоночных. 3. Библиография и Резюме. Зоологический журнал МАИК Наука, 2016, 95 12 1399-1426

  218. Кабак И.И., Федоренко Д.Н. Материалы к распространению жужелиц трибы Dyschiriini Kolbe, 1880 (Coleoptera, Carabidae) в Синцзян-Уйгурском автономном районе Китая Евразиатский энтомологический журнал, 2016, 15 5 439-442

  219. Шилейко А.А. Дополнения к малакофауне Вьетнама: роды Parmarion и Meghimatium (Pumonata, Stylommatophora) Ruthenica, 2016, 26 1 45-48

  220. Danilevsky M.L. New Cortodera (Coleoptera, Cerambycidae) taxa from Turkey Ecologica Montenegrina, 2016, 7 266-269

  221. Danilevsky M.L. New data on Longicorn-beetles (Coleoptera, Cerambycidae) from North-West Caucasus with description of a new taxon Humanity Space. International Almanac, 2016, 5 Supplement 2: 6-11

  222. Danilevsky M.L.Two new subspecies of Xylotrechus (s. str.) arvicola (Olivier, 1795) (Coleoptera, Cerambycidae ) from European Russia and Caucasus Humanity Space. International Almanac, 2016, 5 2 167-177

  223. Danilevsky M.L., Gradinarov D., Sivilov O. A new subspecies of Morimus verecundus (Faldermann, 1836) from Bulgaria and a new subspecies of Morimus asper (Sulzer, 1776) from Greece (Coleoptera, Cerambycidae). Humanity Space. International Almanac, 2016, 5 2 187-191

  224. Danilevsky M.L., Hodek K. New species of the genus Cortodera Mulsant, 1863 (Coleoptera, Cerambycidae) from Georgia. Ecologica Montenegrina, 2016, 8 55-57

  225. Danilevsky M.L., Müller J.New species of the genus Mesosa Latreille, 1829 (Coleoptera, Cerambycidae) from North Iran. Humanity Space. International Almanac, 2016, 5 2 183-186.

  226. Danilevsky M.L., Peks H.Subspecies structure of Brachyta interrogationis (Linnaeus, 1758) (Coleoptera, Cerambycidae) in West Europe with a description of a new subspecies. Humanity Space. International Almanac, 2016, 5 2 178-182

  227. Evsyukov A.P., Golovatch S.I. & Reip H. The millipede genus Strongylosoma Brandt, 1833 in the Caucasus (Diplopoda, Polydesmida, Paradoxosomatidae) Acta Societatis Zoologicae Bohemiae Soc. Zool. Bohemiae, 2016, 80 007-016

  228. Filser J., Faber J.H., Tiunov A.V., Brussaard L., Frouz J., De Deyn G., Uvarov A.V., Berg M.P., Lavelle P., Loreau M., Wall D.H., Querner P., Eijsackers H., Jiménez J.J. Soil fauna: key to new carbon models SOIL, 2016, 2 565-582

  229. Golovatch S.I., Akkari N. Identity of the millipede, Pseudoniponiella kometis (Attems, 1938) (Diplopoda: Polydesmida: Cryptodesmidae) Tropical Natural History Prof. S. Panha Chulalongkorn University, 2016, 16 1 001-006

  230. Golovatch S.I., Geoffroy J.-J., Mauries J.-P., VandenSpiegel D. Detailed iconography of the widespread Neotropical millipede, Myrmecodesmus hastatus (Schubart, 1945), and the first record of the species from the Caribbean area (Diplopoda, Polydesmida, Pyrgodesmidae) Fragmenta Faunistica Muzej i Instytut Zoologii PAN, 2016, 59 1 001-006

  231. Gorbunov O.G.Clearwing moths (Lepidoptera: Sesiidae) of Laos. I. Akaisphecia melanopuncta O. Gorbunov & Arita, 1995 (Sesiidae: Sesiinae: Osminiini) Tropical Lepidoptera research, 2015, 25 2 98-100

  232. Medvedev L.N.Leaf beetles (Coleoptera: Chrysomelidae) from Bali Island Serangga, 2016, 21 1 68-80

  233. Medvedev L.N. Leaf beetles (Coleoptera: Chrysomelidae) from Bali Island Serangga, 2016, 21 1 68-80

  234. Medvedev L.N.New and poorly known Malaysian Chrysomelidae (Insecta: Coleoptera) in the collection of the Naturkundemuseum Erfurt Vernate, 2016, 35 1 14-29

  235. Medvedev L.N.A revision of the genus Lipromorpha Chujo & Kimoto, 1960 ( Chrysomelidae, Alticinae) from Malaysia and Indonesia and a description of a new species from India Vernate, 2016, 35 3 56-64

  236. Schileyko A.A. Functional interrelations between conchological and anatomical characters in Stylommatophora (Mollusca, Gastropoda) Archives of Zoological Museum of Lomonosov State University, 2016, 38 269-297

  237. Schileyko A.A. Additional data on the spermatophore of Arianta arbustorum (Gastropoda: Pulmonata: Helicidae) Annalen des Naturhistorischen Museums in Wien, 2016, 118 13-18