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Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein

Cyanobacterial biofilms are ubiquitous and play important roles in diverse environments, yet, understanding of the processes underlying the development of these aggregates is just emerging. Here we report cell specialization in formation of Synechococcus elongatus PCC 7942 biofilms—a hitherto unknow...

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Autores principales: Frenkel, Alona, Zecharia, Eli, Gómez-Pérez, Daniel, Sendersky, Eleonora, Yegorov, Yevgeni, Jacob, Avi, Benichou, Jennifer I. C., Stierhof, York-Dieter, Parnasa, Rami, Golden, Susan S., Kemen, Eric, Schwarz, Rakefet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9981879/
https://www.ncbi.nlm.nih.gov/pubmed/36864092
http://dx.doi.org/10.1038/s41522-023-00376-6
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author Frenkel, Alona
Zecharia, Eli
Gómez-Pérez, Daniel
Sendersky, Eleonora
Yegorov, Yevgeni
Jacob, Avi
Benichou, Jennifer I. C.
Stierhof, York-Dieter
Parnasa, Rami
Golden, Susan S.
Kemen, Eric
Schwarz, Rakefet
author_facet Frenkel, Alona
Zecharia, Eli
Gómez-Pérez, Daniel
Sendersky, Eleonora
Yegorov, Yevgeni
Jacob, Avi
Benichou, Jennifer I. C.
Stierhof, York-Dieter
Parnasa, Rami
Golden, Susan S.
Kemen, Eric
Schwarz, Rakefet
author_sort Frenkel, Alona
collection PubMed
description Cyanobacterial biofilms are ubiquitous and play important roles in diverse environments, yet, understanding of the processes underlying the development of these aggregates is just emerging. Here we report cell specialization in formation of Synechococcus elongatus PCC 7942 biofilms—a hitherto unknown characteristic of cyanobacterial social behavior. We show that only a quarter of the cell population expresses at high levels the four-gene ebfG-operon that is required for biofilm formation. Almost all cells, however, are assembled in the biofilm. Detailed characterization of EbfG4 encoded by this operon revealed cell-surface localization as well as its presence in the biofilm matrix. Moreover, EbfG1-3 were shown to form amyloid structures such as fibrils and are thus likely to contribute to the matrix structure. These data suggest a beneficial ‘division of labor’ during biofilm formation where only some of the cells allocate resources to produce matrix proteins—‘public goods’ that support robust biofilm development by the majority of the cells. In addition, previous studies revealed the operation of a self-suppression mechanism that depends on an extracellular inhibitor, which supresses transcription of the ebfG-operon. Here we revealed inhibitor activity at an early growth stage and its gradual accumulation along the exponential growth phase in correlation with cell density. Data, however, do not support a threshold-like phenomenon known for quorum-sensing in heterotrophs. Together, data presented here demonstrate cell specialization and imply density-dependent regulation thereby providing deep insights into cyanobacterial communal behavior.
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spelling pubmed-99818792023-03-04 Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein Frenkel, Alona Zecharia, Eli Gómez-Pérez, Daniel Sendersky, Eleonora Yegorov, Yevgeni Jacob, Avi Benichou, Jennifer I. C. Stierhof, York-Dieter Parnasa, Rami Golden, Susan S. Kemen, Eric Schwarz, Rakefet NPJ Biofilms Microbiomes Article Cyanobacterial biofilms are ubiquitous and play important roles in diverse environments, yet, understanding of the processes underlying the development of these aggregates is just emerging. Here we report cell specialization in formation of Synechococcus elongatus PCC 7942 biofilms—a hitherto unknown characteristic of cyanobacterial social behavior. We show that only a quarter of the cell population expresses at high levels the four-gene ebfG-operon that is required for biofilm formation. Almost all cells, however, are assembled in the biofilm. Detailed characterization of EbfG4 encoded by this operon revealed cell-surface localization as well as its presence in the biofilm matrix. Moreover, EbfG1-3 were shown to form amyloid structures such as fibrils and are thus likely to contribute to the matrix structure. These data suggest a beneficial ‘division of labor’ during biofilm formation where only some of the cells allocate resources to produce matrix proteins—‘public goods’ that support robust biofilm development by the majority of the cells. In addition, previous studies revealed the operation of a self-suppression mechanism that depends on an extracellular inhibitor, which supresses transcription of the ebfG-operon. Here we revealed inhibitor activity at an early growth stage and its gradual accumulation along the exponential growth phase in correlation with cell density. Data, however, do not support a threshold-like phenomenon known for quorum-sensing in heterotrophs. Together, data presented here demonstrate cell specialization and imply density-dependent regulation thereby providing deep insights into cyanobacterial communal behavior. Nature Publishing Group UK 2023-03-02 /pmc/articles/PMC9981879/ /pubmed/36864092 http://dx.doi.org/10.1038/s41522-023-00376-6 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Frenkel, Alona
Zecharia, Eli
Gómez-Pérez, Daniel
Sendersky, Eleonora
Yegorov, Yevgeni
Jacob, Avi
Benichou, Jennifer I. C.
Stierhof, York-Dieter
Parnasa, Rami
Golden, Susan S.
Kemen, Eric
Schwarz, Rakefet
Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title_full Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title_fullStr Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title_full_unstemmed Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title_short Cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
title_sort cell specialization in cyanobacterial biofilm development revealed by expression of a cell-surface and extracellular matrix protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9981879/
https://www.ncbi.nlm.nih.gov/pubmed/36864092
http://dx.doi.org/10.1038/s41522-023-00376-6
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