Publications
34. (2024) Measuring ecological quality status in low-diversity Arctic intertidal foraminiferal assemblages using a diversity-based index, Marine Pollution Bulletin, 203, pp. 116473.
33. (2024) Littorina snails and Microphallus trematodes: Diverse consequences of the trematode-induced metabolic shifts, Parasitology Research, 123(6), pp. 229.
32. (2023) Foraminifera in temperate fjords strongly affected by glacial meltwater, Tierra del Fuego, South America, Marine Micropaleontology, 181, pp. 102248.
31. (2022) First insights into the gut microbiomes and the diet of the Littorina snail ecotypes, a recently emerged marine evolutionary model, Evolutionary Applications, 16(2), pp. 365-378.
30. (2022) Phylogeography of the closely related Littorina (Neritrema) species in the North-East Atlantic, Invertebrate Zoology, 19(4), pp. 404-424.
29. (2022) Фауна высокоширотных фораминифер на литорали Шпицбергена, Д. А. Субетто (Ред.), Динамика экосистем в голоцене: Сборник статей по материалам VI всероссийской научной конференции, Санкт-Петербург, 17-21 октября 2022 года, pp. 35-39.
28. (2022) Effects of natural and anthropogenic stressors on fecundity, developmental abnormalities, and population recruitment in the intertidal gastropod Littorina saxatilis, Estuarine, Coastal and Shelf Science, 271, pp. 107853.
27. (2022) High-Arctic intertidal foraminifera, 78° N Spitsbergen, Polar Biology, 45(2), pp. 243-258.
26. (2021) Divergence together with microbes: A comparative study of the associated microbiomes in the closely related Littorina species, PLoS One, 16(12), pp. e0260792.
25. (2021) Linking ecology, morphology, and metabolism: Niche differentiation in sympatric populations of closely related species of the genus Littorina (Neritrema), Ecology and Evolution, 11(16), pp. 11134-11154.
24. (2021) Premating barriers in young sympatric snail species, Scientific Reports, 11(1), pp. 5720.
23. (2021) Microhabitat distribution, shell shape, and metabolomes in sympatric populations of closely related species of the genus Littorina (Neritrema) in two sites in the Norwegian and Barents Sea, DOI: 10.1594/PANGAEA.923735
22. (2020) Moonsnail hatching success, development timing and early feeding behaviour at the high-latitude White Sea, Journal of the Marine Biological Association of the United Kingdom, 100(7), pp. 1071-1078.
21. (2020) Saltmarsh foraminifera in the subarctic White Sea: Thrive in summer, endure in winter, Estuarine, Coastal and Shelf Science, 238, pp. 106685.
20. (2020) Genetic and morphological variation of metacercariae of Microphallus piriformes (Trematoda, Microphallidae): Effects of paraxenia and geographic location, International Journal for Parasitology: Parasites and Wildlife, 11, pp. 235-245.
19. (2020) Proteomic similarity of the Littorinid snails in the evolutionary context, PeerJ, 8, pp. e8546.
18. (2020) Electra vs Callopora: life histories of two bryozoans with contrasting reproductive strategies in the White Sea, Invertebrate Reproduction & Development, 64(2), pp. 137-157.
17. (2019) Moon snails Amauropsis islandica can shape the population of Baltic clams Limecola balthica by size-selective predation in the high-latitude White Sea, Polar Biology, 42(12), pp. 2227-2236.
16. (2019) Life history of the ctenostome bryozoan Flustrellidra hispida in the White Sea, Invertebrate Zoology, 16(4), pp. 343-360.
15. (2019) Colonies as dynamic systems: reconstructing the life history of Cribrilina annulata (Bryozoa) on two algal substrates, Journal of the Marine Biological Association of the United Kingdom, 99(6), pp. 1363-1377.
14. (2018) Effect of tidal level on abundance of symbionts in the White Sea blue mussel, Diseases of aquatic organisms, 130(2), pp. 131-144.
13. (2017) Mild osmotic stress in intertidal gastropods Littorina saxatilis and Littorina obtusata (Mollusca: Caenogastropoda): a proteomic analysis, St Petersburg State University.
12. (2016) Морфологические изменения формы раковины зараженных партенитами трематод моллюсков Littorina saxatilis и Littorina obtusata, выявленные методами геометрической морфометрии, in Современные проблемы теоретической и морской паразитологии сборник научных статей., pp. 199-201.
11. (2016) Measuring physiological similarity of closely related littorinid species: a proteomic insight, Marine Ecology Progress Series, 552, pp. 177-193.
10. (2015) All’s good in a famine? Hydrobia ulvae as a secondary prey for juveniles of Iceland moonsnails Amauropsis islandica at the White Sea sandflats, Journal of the Marine Biological Association of the United Kingdom, 95(8), pp. 1601-1606.
9. (2013) Long-term temporal and spatial variation of macrobenthos in the intertidal soft-bottom flats of two small bights (Chupa Inlet, Kandalaksha Bay, White Sea), Hydrobiologia, 706(1), pp. 175-189.
8. (2013) Biotic Interactions, Structure, and Long-term Changes in Marine Benthic Assemblages, PhD Thesis. Saint Petersburg State University (Russia).
7. (2013) Synchronous annual recruitment variation in barnacles and ascidians in the White Sea shallow subtidal 1999-2010, Hydrobiologia, 706(1), pp. 69-79.
6. (2012) Intraspecific variation in stable isotope signatures indicates no small-scale feeding interference between a horse mussel and an ascidian, Marine Ecology Progress Series, 467, pp. 113-120.
5. (2008) Growth and survival of barnacles in presence of co-dominating solitary ascidians: growth ring analysis, Journal of Experimental Marine Biology and Ecology, 363(1-2), pp. 42-47.
4. (2008) Multiple foundation species shape benthic habitat islands, Oecologia, 155(4), pp. 785-795. PDF
3. (2007) Effect of habitat architecture on mobile benthic macrofauna associated with patches of barnacles and ascidians, Marine Ecology Progress Series, 348, pp. 117-124.
2. (2004) Роль хищных сверлящих улиток в бентосном сообществе: раковины жертв как источник информации, Biological Communications(4), pp. 5-9.
1. (2004) Исследование полиморфизма окраски тела Fabricia sabella Mull. (Polychaeta: Sabellidae: Fabriciinae), Вестник Санкт-Петербургского Университета, 2(11), pp. 3-7.