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Research article2013Peer reviewed

Shifts in phytoplankton species richness and biomass along a latitudinal gradient consequences for relationships between biodiversity and ecosystem functioning

Weyhenmeyer, Gesa; Peter, Hannes; Willen, Eva

Abstract

1. Analysing phytoplankton community data from 205 small, mainly oligotrophic Swedish lakes along a 13 degrees latitudinal gradient, we found that the duration of the open-water season (DT>0) was best related to phytoplankton species richness and biomass, probably because DT>0 can be used as a proxy for nutrient concentrations, as well as for light and temperature conditions in lakes. 2. The relationships between DT>0 and phytoplankton species richness and biomass were not linear but showed significant shifts, that is, richness suddenly doubled at DT>0=170days and phytoplankton biomass began to strongly increase at DT>0 around 220days. 3. The doubling in species richness corresponded to a change in the seasonal plankton succession from one to two peaks per year, and the shift in biomass corresponded to a shift in nutrient concentrations. 4. The geographical differences in richness and biomass shifts resulted in an exponential biodiversityecosystem functioning relationship along a DT>0 gradient. 5. We conclude that phytoplankton species richness and biomass are driven by different environmental factors, resulting in a nonlinear biodiversityecosystem functioning relationship. The shape of the diversityfunctioning relationship varies along with variations in environmental drivers, which is of highest importance for ongoing discussions about impacts of global change on biodiversity and ecosystem functioning.

Keywords

biodiversity; climate change; ecosystem functioning; freshwater; phytoplankton

Published in

Freshwater Biology
2013, Volume: 58, number: 3, pages: 612-623
Publisher: WILEY-BLACKWELL

      SLU Authors

    • Sustainable Development Goals

      Protect, restore and promote sustainable use of terrestrial ecosystems, sustainably manage forests, combat desertification, and halt and reverse land degradation and halt biodiversity loss

      UKÄ Subject classification

      Ecology

      Publication identifier

      DOI: https://doi.org/10.1111/j.1365-2427.2012.02779.x

      Permanent link to this page (URI)

      https://res.slu.se/id/publ/53834