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Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142

Unicellular nitrogen fixing cyanobacteria (UCYN) are abundant members of phytoplankton communities in a wide range of marine environments, including those with rapidly changing nitrogen (N) concentrations. We hypothesized that differences in N availability (N(2) vs. combined N) would cause UCYN to s...

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Autores principales: Polerecky, Lubos, Masuda, Takako, Eichner, Meri, Rabouille, Sophie, Vancová, Marie, Kienhuis, Michiel V. M., Bernát, Gabor, Bonomi-Barufi, Jose, Campbell, Douglas Andrew, Claquin, Pascal, Červený, Jan, Giordano, Mario, Kotabová, Eva, Kromkamp, Jacco, Lombardi, Ana Teresa, Lukeš, Martin, Prášil, Ondrej, Stephan, Susanne, Suggett, David, Zavřel, Tomas, Halsey, Kimberly H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890256/
https://www.ncbi.nlm.nih.gov/pubmed/33613489
http://dx.doi.org/10.3389/fmicb.2021.620915
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author Polerecky, Lubos
Masuda, Takako
Eichner, Meri
Rabouille, Sophie
Vancová, Marie
Kienhuis, Michiel V. M.
Bernát, Gabor
Bonomi-Barufi, Jose
Campbell, Douglas Andrew
Claquin, Pascal
Červený, Jan
Giordano, Mario
Kotabová, Eva
Kromkamp, Jacco
Lombardi, Ana Teresa
Lukeš, Martin
Prášil, Ondrej
Stephan, Susanne
Suggett, David
Zavřel, Tomas
Halsey, Kimberly H.
author_facet Polerecky, Lubos
Masuda, Takako
Eichner, Meri
Rabouille, Sophie
Vancová, Marie
Kienhuis, Michiel V. M.
Bernát, Gabor
Bonomi-Barufi, Jose
Campbell, Douglas Andrew
Claquin, Pascal
Červený, Jan
Giordano, Mario
Kotabová, Eva
Kromkamp, Jacco
Lombardi, Ana Teresa
Lukeš, Martin
Prášil, Ondrej
Stephan, Susanne
Suggett, David
Zavřel, Tomas
Halsey, Kimberly H.
author_sort Polerecky, Lubos
collection PubMed
description Unicellular nitrogen fixing cyanobacteria (UCYN) are abundant members of phytoplankton communities in a wide range of marine environments, including those with rapidly changing nitrogen (N) concentrations. We hypothesized that differences in N availability (N(2) vs. combined N) would cause UCYN to shift strategies of intracellular N and C allocation. We used transmission electron microscopy and nanoscale secondary ion mass spectrometry imaging to track assimilation and intracellular allocation of (13)C-labeled CO(2) and (15)N-labeled N(2) or NO(3) at different periods across a diel cycle in Cyanothece sp. ATCC 51142. We present new ideas on interpreting these imaging data, including the influences of pre-incubation cellular C and N contents and turnover rates of inclusion bodies. Within cultures growing diazotrophically, distinct subpopulations were detected that fixed N(2) at night or in the morning. Additional significant within-population heterogeneity was likely caused by differences in the relative amounts of N assimilated into cyanophycin from sources external and internal to the cells. Whether growing on N(2) or NO(3), cells prioritized cyanophycin synthesis when N assimilation rates were highest. N assimilation in cells growing on NO(3) switched from cyanophycin synthesis to protein synthesis, suggesting that once a cyanophycin quota is met, it is bypassed in favor of protein synthesis. Growth on NO(3) also revealed that at night, there is a very low level of CO(2) assimilation into polysaccharides simultaneous with their catabolism for protein synthesis. This study revealed multiple, detailed mechanisms underlying C and N management in Cyanothece that facilitate its success in dynamic aquatic environments.
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spelling pubmed-78902562021-02-19 Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142 Polerecky, Lubos Masuda, Takako Eichner, Meri Rabouille, Sophie Vancová, Marie Kienhuis, Michiel V. M. Bernát, Gabor Bonomi-Barufi, Jose Campbell, Douglas Andrew Claquin, Pascal Červený, Jan Giordano, Mario Kotabová, Eva Kromkamp, Jacco Lombardi, Ana Teresa Lukeš, Martin Prášil, Ondrej Stephan, Susanne Suggett, David Zavřel, Tomas Halsey, Kimberly H. Front Microbiol Microbiology Unicellular nitrogen fixing cyanobacteria (UCYN) are abundant members of phytoplankton communities in a wide range of marine environments, including those with rapidly changing nitrogen (N) concentrations. We hypothesized that differences in N availability (N(2) vs. combined N) would cause UCYN to shift strategies of intracellular N and C allocation. We used transmission electron microscopy and nanoscale secondary ion mass spectrometry imaging to track assimilation and intracellular allocation of (13)C-labeled CO(2) and (15)N-labeled N(2) or NO(3) at different periods across a diel cycle in Cyanothece sp. ATCC 51142. We present new ideas on interpreting these imaging data, including the influences of pre-incubation cellular C and N contents and turnover rates of inclusion bodies. Within cultures growing diazotrophically, distinct subpopulations were detected that fixed N(2) at night or in the morning. Additional significant within-population heterogeneity was likely caused by differences in the relative amounts of N assimilated into cyanophycin from sources external and internal to the cells. Whether growing on N(2) or NO(3), cells prioritized cyanophycin synthesis when N assimilation rates were highest. N assimilation in cells growing on NO(3) switched from cyanophycin synthesis to protein synthesis, suggesting that once a cyanophycin quota is met, it is bypassed in favor of protein synthesis. Growth on NO(3) also revealed that at night, there is a very low level of CO(2) assimilation into polysaccharides simultaneous with their catabolism for protein synthesis. This study revealed multiple, detailed mechanisms underlying C and N management in Cyanothece that facilitate its success in dynamic aquatic environments. Frontiers Media S.A. 2021-02-04 /pmc/articles/PMC7890256/ /pubmed/33613489 http://dx.doi.org/10.3389/fmicb.2021.620915 Text en Copyright © 2021 Polerecky, Masuda, Eichner, Rabouille, Vancová, Kienhuis, Bernát, Bonomi-Barufi, Campbell, Claquin, Červený, Giordano, Kotabová, Kromkamp, Lombardi, Lukeš, Prášil, Stephan, Suggett, Zavřel and Halsey. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Polerecky, Lubos
Masuda, Takako
Eichner, Meri
Rabouille, Sophie
Vancová, Marie
Kienhuis, Michiel V. M.
Bernát, Gabor
Bonomi-Barufi, Jose
Campbell, Douglas Andrew
Claquin, Pascal
Červený, Jan
Giordano, Mario
Kotabová, Eva
Kromkamp, Jacco
Lombardi, Ana Teresa
Lukeš, Martin
Prášil, Ondrej
Stephan, Susanne
Suggett, David
Zavřel, Tomas
Halsey, Kimberly H.
Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title_full Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title_fullStr Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title_full_unstemmed Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title_short Temporal Patterns and Intra- and Inter-Cellular Variability in Carbon and Nitrogen Assimilation by the Unicellular Cyanobacterium Cyanothece sp. ATCC 51142
title_sort temporal patterns and intra- and inter-cellular variability in carbon and nitrogen assimilation by the unicellular cyanobacterium cyanothece sp. atcc 51142
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7890256/
https://www.ncbi.nlm.nih.gov/pubmed/33613489
http://dx.doi.org/10.3389/fmicb.2021.620915
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