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Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs

The fate of diazotrophic nitrogen (N(D)) fixed by planktonic cyanobacteria in pelagic food webs remains unresolved, particularly for toxic cyanophytes that are selectively avoided by most herbivorous zooplankton. Current theory suggests that N(D) fixed during cyanobacterial blooms can enter plankton...

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Autores principales: Woodland, Ryan J., Holland, Daryl P., Beardall, John, Smith, Jonathan, Scicluna, Todd, Cook, Perran L. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695911/
https://www.ncbi.nlm.nih.gov/pubmed/23840744
http://dx.doi.org/10.1371/journal.pone.0067588
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author Woodland, Ryan J.
Holland, Daryl P.
Beardall, John
Smith, Jonathan
Scicluna, Todd
Cook, Perran L. M.
author_facet Woodland, Ryan J.
Holland, Daryl P.
Beardall, John
Smith, Jonathan
Scicluna, Todd
Cook, Perran L. M.
author_sort Woodland, Ryan J.
collection PubMed
description The fate of diazotrophic nitrogen (N(D)) fixed by planktonic cyanobacteria in pelagic food webs remains unresolved, particularly for toxic cyanophytes that are selectively avoided by most herbivorous zooplankton. Current theory suggests that N(D) fixed during cyanobacterial blooms can enter planktonic food webs contemporaneously with peak bloom biomass via direct grazing of zooplankton on cyanobacteria or via the uptake of bioavailable N(D) (exuded from viable cyanobacterial cells) by palatable phytoplankton or microbial consortia. Alternatively, N(D) can enter planktonic food webs post-bloom following the remineralization of bloom detritus. Although the relative contribution of these processes to planktonic nutrient cycles is unknown, we hypothesized that assimilation of bioavailable N(D) (e.g., nitrate, ammonium) by palatable phytoplankton and subsequent grazing by zooplankton (either during or after the cyanobacterial bloom) would be the primary pathway by which N(D) was incorporated into the planktonic food web. Instead, in situ stable isotope measurements and grazing experiments clearly documented that the assimilation of N(D) by zooplankton outpaced assimilation by palatable phytoplankton during a bloom of toxic Nodularia spumigena Mertens. We identified two distinct temporal phases in the trophic transfer of N(D) from N. spumigena to the plankton community. The first phase was a highly dynamic transfer of N(D) to zooplankton with rates that covaried with bloom biomass while bypassing other phytoplankton taxa; a trophic transfer that we infer was routed through bloom-associated bacteria. The second phase was a slowly accelerating assimilation of the dissolved-N(D) pool by phytoplankton that was decoupled from contemporaneous variability in N. spumigena concentrations. These findings provide empirical evidence that N(D) can be assimilated and transferred rapidly throughout natural plankton communities and yield insights into the specific processes underlying the propagation of N(D) through pelagic food webs.
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spelling pubmed-36959112013-07-09 Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs Woodland, Ryan J. Holland, Daryl P. Beardall, John Smith, Jonathan Scicluna, Todd Cook, Perran L. M. PLoS One Research Article The fate of diazotrophic nitrogen (N(D)) fixed by planktonic cyanobacteria in pelagic food webs remains unresolved, particularly for toxic cyanophytes that are selectively avoided by most herbivorous zooplankton. Current theory suggests that N(D) fixed during cyanobacterial blooms can enter planktonic food webs contemporaneously with peak bloom biomass via direct grazing of zooplankton on cyanobacteria or via the uptake of bioavailable N(D) (exuded from viable cyanobacterial cells) by palatable phytoplankton or microbial consortia. Alternatively, N(D) can enter planktonic food webs post-bloom following the remineralization of bloom detritus. Although the relative contribution of these processes to planktonic nutrient cycles is unknown, we hypothesized that assimilation of bioavailable N(D) (e.g., nitrate, ammonium) by palatable phytoplankton and subsequent grazing by zooplankton (either during or after the cyanobacterial bloom) would be the primary pathway by which N(D) was incorporated into the planktonic food web. Instead, in situ stable isotope measurements and grazing experiments clearly documented that the assimilation of N(D) by zooplankton outpaced assimilation by palatable phytoplankton during a bloom of toxic Nodularia spumigena Mertens. We identified two distinct temporal phases in the trophic transfer of N(D) from N. spumigena to the plankton community. The first phase was a highly dynamic transfer of N(D) to zooplankton with rates that covaried with bloom biomass while bypassing other phytoplankton taxa; a trophic transfer that we infer was routed through bloom-associated bacteria. The second phase was a slowly accelerating assimilation of the dissolved-N(D) pool by phytoplankton that was decoupled from contemporaneous variability in N. spumigena concentrations. These findings provide empirical evidence that N(D) can be assimilated and transferred rapidly throughout natural plankton communities and yield insights into the specific processes underlying the propagation of N(D) through pelagic food webs. Public Library of Science 2013-06-28 /pmc/articles/PMC3695911/ /pubmed/23840744 http://dx.doi.org/10.1371/journal.pone.0067588 Text en © 2013 Woodland 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
Woodland, Ryan J.
Holland, Daryl P.
Beardall, John
Smith, Jonathan
Scicluna, Todd
Cook, Perran L. M.
Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title_full Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title_fullStr Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title_full_unstemmed Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title_short Assimilation of Diazotrophic Nitrogen into Pelagic Food Webs
title_sort assimilation of diazotrophic nitrogen into pelagic food webs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3695911/
https://www.ncbi.nlm.nih.gov/pubmed/23840744
http://dx.doi.org/10.1371/journal.pone.0067588
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