Environmental Factors Controlling Zooplankton Communities in Thermokarst Lakes of the Bolshezemelskaya Tundra Permafrost Peatlands (NE Europe)

Author:

Sobko Elena I.1,Shirokova Liudmila S.12,Klimov Sergey I.1,Chupakov Artem V.1,Zabelina Svetlana A.1,Shorina Natalia V.3,Moreva Olga Yu.1,Chupakova Anna A.1,Vorobieva Taissia Ya.1ORCID

Affiliation:

1. N. Laverov Federal Center for Integrated Arctic Research of the Ural Branch of the Russian Academy of Sciences, Nab. Northern Dvina 23, Arkhangelsk 163000, Russia

2. BIO-GEO-CLIM Laboratory, Tomsk State University, 36 Lenina Str, Tomsk 634050, Russia

3. Northern (Arctic) Federal University, Department of Drilling, Development of Oil and Gas Wells, Nab. Northern Dvina 17, Arkhangelsk 163000, Russia

Abstract

Environmental physical and chemical factors controlling the abundance and biodiversity of zooplankton in permafrost-affected lakes are poorly known yet they determine the response of aquatic ecosystems to on-going climate change and water warming. Here, we assess the current status of zooplankton communities in lakes of the Bolshezemelskaya Tundra (permafrost peatlands of NE Europe), and provide new information about the composition and structure of zooplankton. The results demonstrate that the structure of zooplankton communities is influenced by the morphometric features of lakes and the degree of lake overgrowth by macrophytes. According to the level of quantitative development of zooplankton, most tundra lakes were of the oligotrophic type with an average wet biomass of up to 1 g/m3. The largest number of species was observed in zooplankton communities of small thaw ponds with an area of up to 0.02 km2 and overgrown with macrophytes. The analysis of factors that influence the formation of the lake zoocenosis demonstrated that the species composition and quantitative characteristics of zooplankton are chiefly controlled by pH and water mineralization. A comparison of the results obtained with the literature data on the lakes of this region collected 60 years ago suggests that the ecosystems of these lakes are in a stable state. Overall, these new insights will improve our knowledge of factors controlling the zooplankton spatial dynamics in unique but quite abundant thermokarst lakes of NE European Tundra, subjected to on-going climate warming.

Funder

RSF

FNIR

TSU

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference87 articles.

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