4.3 Article Proceedings Paper

How long-term water level changes influence the spatial distribution of fish and other functional groups in a large shallow lake

Journal

JOURNAL OF GREAT LAKES RESEARCH
Volume 46, Issue 4, Pages 813-823

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.jglr.2020.02.010

Keywords

Ecospace; Ecosystem modelling; Fishery; Fish habitat; Ecopath with Ecosim; Macrophytes

Funding

  1. Estonian Research Council [PSG32]
  2. Environmental Investment Center [T180209PKKH]
  3. Estonian Ministry of Education [IUT 21-2]
  4. European Union Regional Development Fund program DoRa+
  5. European Union Regional Development Fund program ASTRA

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We numerically explored the effects of long-term water level changes on biotic biomass and spatial distribution of fish in a large shallow lake. We calibrated Ecospace model (Ecopath with Ecosim modelling suite) with data from various functional groups (ranging from phytoplankton to piscivorous fish), and considered 14 different habitats. Two scenarios representing, respectively, a long-term water-level increase and decrease by 1 m were constructed and run for a period of thirty eight years (1979-2016). The results showed a very uneven spatial distribution of fish biomass in the lake, with the highest concentration in the southern basin. The 1 m decrease scenario caused a diminution in the biomass of all groups but piscivorous fish. The 1 m increase scenario saw a weak decrease in most species biomass. Consequently, in both scenarios, long-term water level changes would be generally detrimental to the lake biota. In the context of more frequent climate-induced hydrological fluctuations, we encourage the use of these simulations as effective tools for future prediction and assessment of ecosystem-based fisheries management and ecological status maintenance of shallow lakes. (C) 2020 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.

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