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Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check

BACKGROUND: Mortality is a main driver in zooplankton population biology but it is poorly constrained in models that describe zooplankton population dynamics, food web interactions and nutrient dynamics. Mortality due to non-predation factors is often ignored even though anecdotal evidence of non-pr...

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Autores principales: Dubovskaya, Olga P., Tang, Kam W., Gladyshev, Michail I., Kirillin, Georgiy, Buseva, Zhanna, Kasprzak, Peter, Tolomeev, Aleksandr P., Grossart, Hans-Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4492990/
https://www.ncbi.nlm.nih.gov/pubmed/26146995
http://dx.doi.org/10.1371/journal.pone.0131431
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author Dubovskaya, Olga P.
Tang, Kam W.
Gladyshev, Michail I.
Kirillin, Georgiy
Buseva, Zhanna
Kasprzak, Peter
Tolomeev, Aleksandr P.
Grossart, Hans-Peter
author_facet Dubovskaya, Olga P.
Tang, Kam W.
Gladyshev, Michail I.
Kirillin, Georgiy
Buseva, Zhanna
Kasprzak, Peter
Tolomeev, Aleksandr P.
Grossart, Hans-Peter
author_sort Dubovskaya, Olga P.
collection PubMed
description BACKGROUND: Mortality is a main driver in zooplankton population biology but it is poorly constrained in models that describe zooplankton population dynamics, food web interactions and nutrient dynamics. Mortality due to non-predation factors is often ignored even though anecdotal evidence of non-predation mass mortality of zooplankton has been reported repeatedly. One way to estimate non-predation mortality rate is to measure the removal rate of carcasses, for which sinking is the primary removal mechanism especially in quiescent shallow water bodies. OBJECTIVES AND RESULTS: We used sediment traps to quantify in situ carcass sinking velocity and non-predation mortality rate on eight consecutive days in 2013 for the cladoceran Bosmina longirostris in the oligo-mesotrophic Lake Stechlin; the outcomes were compared against estimates derived from in vitro carcass sinking velocity measurements and an empirical model correcting in vitro sinking velocity for turbulence resuspension and microbial decomposition of carcasses. Our results show that the latter two approaches produced unrealistically high mortality rates of 0.58-1.04 d(-1), whereas the sediment trap approach, when used properly, yielded a mortality rate estimate of 0.015 d(-1), which is more consistent with concurrent population abundance data and comparable to physiological death rate from the literature. ECOLOGICAL IMPLICATIONS: Zooplankton carcasses may be exposed to water column microbes for days before entering the benthos; therefore, non-predation mortality affects not only zooplankton population dynamics but also microbial and benthic food webs. This would be particularly important for carbon and nitrogen cycles in systems where recurring mid-summer decline of zooplankton population due to non-predation mortality is observed.
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spelling pubmed-44929902015-07-15 Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check Dubovskaya, Olga P. Tang, Kam W. Gladyshev, Michail I. Kirillin, Georgiy Buseva, Zhanna Kasprzak, Peter Tolomeev, Aleksandr P. Grossart, Hans-Peter PLoS One Research Article BACKGROUND: Mortality is a main driver in zooplankton population biology but it is poorly constrained in models that describe zooplankton population dynamics, food web interactions and nutrient dynamics. Mortality due to non-predation factors is often ignored even though anecdotal evidence of non-predation mass mortality of zooplankton has been reported repeatedly. One way to estimate non-predation mortality rate is to measure the removal rate of carcasses, for which sinking is the primary removal mechanism especially in quiescent shallow water bodies. OBJECTIVES AND RESULTS: We used sediment traps to quantify in situ carcass sinking velocity and non-predation mortality rate on eight consecutive days in 2013 for the cladoceran Bosmina longirostris in the oligo-mesotrophic Lake Stechlin; the outcomes were compared against estimates derived from in vitro carcass sinking velocity measurements and an empirical model correcting in vitro sinking velocity for turbulence resuspension and microbial decomposition of carcasses. Our results show that the latter two approaches produced unrealistically high mortality rates of 0.58-1.04 d(-1), whereas the sediment trap approach, when used properly, yielded a mortality rate estimate of 0.015 d(-1), which is more consistent with concurrent population abundance data and comparable to physiological death rate from the literature. ECOLOGICAL IMPLICATIONS: Zooplankton carcasses may be exposed to water column microbes for days before entering the benthos; therefore, non-predation mortality affects not only zooplankton population dynamics but also microbial and benthic food webs. This would be particularly important for carbon and nitrogen cycles in systems where recurring mid-summer decline of zooplankton population due to non-predation mortality is observed. Public Library of Science 2015-07-06 /pmc/articles/PMC4492990/ /pubmed/26146995 http://dx.doi.org/10.1371/journal.pone.0131431 Text en © 2015 Dubovskaya et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dubovskaya, Olga P.
Tang, Kam W.
Gladyshev, Michail I.
Kirillin, Georgiy
Buseva, Zhanna
Kasprzak, Peter
Tolomeev, Aleksandr P.
Grossart, Hans-Peter
Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title_full Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title_fullStr Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title_full_unstemmed Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title_short Estimating In Situ Zooplankton Non-Predation Mortality in an Oligo-Mesotrophic Lake from Sediment Trap Data: Caveats and Reality Check
title_sort estimating in situ zooplankton non-predation mortality in an oligo-mesotrophic lake from sediment trap data: caveats and reality check
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4492990/
https://www.ncbi.nlm.nih.gov/pubmed/26146995
http://dx.doi.org/10.1371/journal.pone.0131431
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