New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms
Resumen:
The ability to form biofilms is a functional trait shared by many bacterial species. Biofilms provide bacteria a sheltered environment where the nutrients and oxygen gradients create a heterogeneous matrix and promote cells to differentiate their metabolism and functions according to the position they occupy inside the matrix. Species of the Microcystis genus are among the most common bloom-forming cyanobacteria. They are unicellular microorganisms able to form colonies and to reach high biomass during blooms in lakes, reservoirs and estuaries worldwide. Colonial lifestyle provides several advantages under stressing conditions, including adaptation to different light intensities, protection from toxic substances and grazing, while allowing them to grow when the nutrient supply is low. Although the biology, ecology and colony formation have been extensively recognized in Microcystis spp., the analysis of the progression from unicellular to multicellular phases in this cyanobacterium have been always addressed as individual phenotypic plasticity and rarely as a multi-specific community of interrelated microorganisms. Here, we re-interpreted the evidence coming from different studies about the Microcystis lifestyle and propose a new way to analyze the available information about this cyanobacterial group. We specifically address the characteristics shared by bacterial biofilms and Microcystis colonies and suggest that the morphological changes from single cells to colonies are due to a cascade of events leading to the formation of a multi-specific biofilm. Studying the formation of colonies using this framework would help to better understand the life cycle of Microcystis, its functional relationship with the associated microbiome and the factors triggering microcystin production, helping to design strategies for prevention and control of the blooms caused by these organisms. Taking into account the biology and the ecological strategies of Microcystis, a conceptual model of emergence and decay of these floating multi-specific biofilms is proposed.
2022 | |
Agencia Nacional de Investigación e Innovación | |
Multi-specific Biofilm Microcystis Colonies Mucilage EPS Holobiont Ciencias Naturales y Exactas Ciencias Biológicas Ecología |
|
Inglés | |
Instituto de Investigaciones Biológicas Clemente Estable | |
IIBCE en REDI | |
https://hdl.handle.net/20.500.12381/3393 | |
Acceso abierto | |
Reconocimiento 4.0 Internacional. (CC BY) |
_version_ | 1811155750860357632 |
---|---|
author | Piccini, Claudia |
author2 | Segura, Angel Martínez de la Escalera, Gabriela Croci, Carolina Kruk, Carla |
author2_role | author author author author |
author_facet | Piccini, Claudia Segura, Angel Martínez de la Escalera, Gabriela Croci, Carolina Kruk, Carla |
author_role | author |
bitstream.checksum.fl_str_mv | fcc8b2ddb26c820405a37f9e0cae7f18 1d4ec2b56c5b0fae1177a5ad8a0658ac |
bitstream.checksumAlgorithm.fl_str_mv | MD5 MD5 |
bitstream.url.fl_str_mv | https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3393/2/license.txt https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3393/1/review_microcystis-biofilm_ha_final.pdf |
collection | IIBCE en REDI |
dc.creator.none.fl_str_mv | Piccini, Claudia Segura, Angel Martínez de la Escalera, Gabriela Croci, Carolina Kruk, Carla |
dc.date.accessioned.none.fl_str_mv | 2024-01-24T11:54:03Z |
dc.date.available.none.fl_str_mv | 2024-01-24T11:54:03Z |
dc.date.issued.none.fl_str_mv | 2022-01-29 |
dc.description.abstract.none.fl_txt_mv | The ability to form biofilms is a functional trait shared by many bacterial species. Biofilms provide bacteria a sheltered environment where the nutrients and oxygen gradients create a heterogeneous matrix and promote cells to differentiate their metabolism and functions according to the position they occupy inside the matrix. Species of the Microcystis genus are among the most common bloom-forming cyanobacteria. They are unicellular microorganisms able to form colonies and to reach high biomass during blooms in lakes, reservoirs and estuaries worldwide. Colonial lifestyle provides several advantages under stressing conditions, including adaptation to different light intensities, protection from toxic substances and grazing, while allowing them to grow when the nutrient supply is low. Although the biology, ecology and colony formation have been extensively recognized in Microcystis spp., the analysis of the progression from unicellular to multicellular phases in this cyanobacterium have been always addressed as individual phenotypic plasticity and rarely as a multi-specific community of interrelated microorganisms. Here, we re-interpreted the evidence coming from different studies about the Microcystis lifestyle and propose a new way to analyze the available information about this cyanobacterial group. We specifically address the characteristics shared by bacterial biofilms and Microcystis colonies and suggest that the morphological changes from single cells to colonies are due to a cascade of events leading to the formation of a multi-specific biofilm. Studying the formation of colonies using this framework would help to better understand the life cycle of Microcystis, its functional relationship with the associated microbiome and the factors triggering microcystin production, helping to design strategies for prevention and control of the blooms caused by these organisms. Taking into account the biology and the ecological strategies of Microcystis, a conceptual model of emergence and decay of these floating multi-specific biofilms is proposed. |
dc.description.sponsorship.none.fl_txt_mv | Agencia Nacional de Investigación e Innovación |
dc.identifier.anii.es.fl_str_mv | FCE_1_2019_1_156308 |
dc.identifier.uri.none.fl_str_mv | https://hdl.handle.net/20.500.12381/3393 |
dc.language.iso.none.fl_str_mv | eng |
dc.rights.*.fl_str_mv | Acceso abierto |
dc.rights.license.none.fl_str_mv | Reconocimiento 4.0 Internacional. (CC BY) |
dc.rights.none.fl_str_mv | info:eu-repo/semantics/openAccess |
dc.source.none.fl_str_mv | reponame:IIBCE en REDI instname:Instituto de Investigaciones Biológicas Clemente Estable instacron:Instituto de Investigaciones Biológicas Clemente Estable |
dc.subject.anii.none.fl_str_mv | Ciencias Naturales y Exactas Ciencias Biológicas Ecología |
dc.subject.es.fl_str_mv | Multi-specific Biofilm Microcystis Colonies Mucilage EPS Holobiont |
dc.title.none.fl_str_mv | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
dc.type.es.fl_str_mv | Preprint |
dc.type.none.fl_str_mv | info:eu-repo/semantics/preprint |
description | The ability to form biofilms is a functional trait shared by many bacterial species. Biofilms provide bacteria a sheltered environment where the nutrients and oxygen gradients create a heterogeneous matrix and promote cells to differentiate their metabolism and functions according to the position they occupy inside the matrix. Species of the Microcystis genus are among the most common bloom-forming cyanobacteria. They are unicellular microorganisms able to form colonies and to reach high biomass during blooms in lakes, reservoirs and estuaries worldwide. Colonial lifestyle provides several advantages under stressing conditions, including adaptation to different light intensities, protection from toxic substances and grazing, while allowing them to grow when the nutrient supply is low. Although the biology, ecology and colony formation have been extensively recognized in Microcystis spp., the analysis of the progression from unicellular to multicellular phases in this cyanobacterium have been always addressed as individual phenotypic plasticity and rarely as a multi-specific community of interrelated microorganisms. Here, we re-interpreted the evidence coming from different studies about the Microcystis lifestyle and propose a new way to analyze the available information about this cyanobacterial group. We specifically address the characteristics shared by bacterial biofilms and Microcystis colonies and suggest that the morphological changes from single cells to colonies are due to a cascade of events leading to the formation of a multi-specific biofilm. Studying the formation of colonies using this framework would help to better understand the life cycle of Microcystis, its functional relationship with the associated microbiome and the factors triggering microcystin production, helping to design strategies for prevention and control of the blooms caused by these organisms. Taking into account the biology and the ecological strategies of Microcystis, a conceptual model of emergence and decay of these floating multi-specific biofilms is proposed. |
eu_rights_str_mv | openAccess |
format | preprint |
id | IIBCE_01fb7f75e22d6eb25bfdfcada7ba2184 |
identifier_str_mv | FCE_1_2019_1_156308 |
instacron_str | Instituto de Investigaciones Biológicas Clemente Estable |
institution | Instituto de Investigaciones Biológicas Clemente Estable |
instname_str | Instituto de Investigaciones Biológicas Clemente Estable |
language | eng |
network_acronym_str | IIBCE |
network_name_str | IIBCE en REDI |
oai_identifier_str | oai:redi.anii.org.uy:20.500.12381/3393 |
publishDate | 2022 |
reponame_str | IIBCE en REDI |
repository.mail.fl_str_mv | |
repository.name.fl_str_mv | IIBCE en REDI - Instituto de Investigaciones Biológicas Clemente Estable |
repository_id_str | 9421_3 |
rights_invalid_str_mv | Reconocimiento 4.0 Internacional. (CC BY) Acceso abierto |
spelling | Reconocimiento 4.0 Internacional. (CC BY)Acceso abiertoinfo:eu-repo/semantics/openAccess2024-01-24T11:54:03Z2024-01-24T11:54:03Z2022-01-29https://hdl.handle.net/20.500.12381/3393FCE_1_2019_1_156308The ability to form biofilms is a functional trait shared by many bacterial species. Biofilms provide bacteria a sheltered environment where the nutrients and oxygen gradients create a heterogeneous matrix and promote cells to differentiate their metabolism and functions according to the position they occupy inside the matrix. Species of the Microcystis genus are among the most common bloom-forming cyanobacteria. They are unicellular microorganisms able to form colonies and to reach high biomass during blooms in lakes, reservoirs and estuaries worldwide. Colonial lifestyle provides several advantages under stressing conditions, including adaptation to different light intensities, protection from toxic substances and grazing, while allowing them to grow when the nutrient supply is low. Although the biology, ecology and colony formation have been extensively recognized in Microcystis spp., the analysis of the progression from unicellular to multicellular phases in this cyanobacterium have been always addressed as individual phenotypic plasticity and rarely as a multi-specific community of interrelated microorganisms. Here, we re-interpreted the evidence coming from different studies about the Microcystis lifestyle and propose a new way to analyze the available information about this cyanobacterial group. We specifically address the characteristics shared by bacterial biofilms and Microcystis colonies and suggest that the morphological changes from single cells to colonies are due to a cascade of events leading to the formation of a multi-specific biofilm. Studying the formation of colonies using this framework would help to better understand the life cycle of Microcystis, its functional relationship with the associated microbiome and the factors triggering microcystin production, helping to design strategies for prevention and control of the blooms caused by these organisms. Taking into account the biology and the ecological strategies of Microcystis, a conceptual model of emergence and decay of these floating multi-specific biofilms is proposed.Agencia Nacional de Investigación e InnovaciónengMulti-specificBiofilmMicrocystisColoniesMucilageEPSHolobiontCiencias Naturales y ExactasCiencias BiológicasEcologíaNew insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilmsPreprintinfo:eu-repo/semantics/preprintInstituto de Investigaciones Biológicas Clemente Estable//Ciencias Naturales y Exactas/Ciencias Biológicas/Ecologíareponame:IIBCE en REDIinstname:Instituto de Investigaciones Biológicas Clemente Estableinstacron:Instituto de Investigaciones Biológicas Clemente EstablePiccini, ClaudiaSegura, AngelMartínez de la Escalera, GabrielaCroci, CarolinaKruk, CarlaLICENSElicense.txtlicense.txttext/plain; charset=utf-85151https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3393/2/license.txtfcc8b2ddb26c820405a37f9e0cae7f18MD52ORIGINALreview_microcystis-biofilm_ha_final.pdfreview_microcystis-biofilm_ha_final.pdfapplication/pdf587404https://redi.anii.org.uy/jspui/bitstream/20.500.12381/3393/1/review_microcystis-biofilm_ha_final.pdf1d4ec2b56c5b0fae1177a5ad8a0658acMD5120.500.12381/33932024-01-24 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en REDI - Instituto de Investigaciones Biológicas Clemente Establefalse |
spellingShingle | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms Piccini, Claudia Multi-specific Biofilm Microcystis Colonies Mucilage EPS Holobiont Ciencias Naturales y Exactas Ciencias Biológicas Ecología |
title | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
title_full | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
title_fullStr | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
title_full_unstemmed | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
title_short | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
title_sort | New insight into colonies of Microcystis (Cyanobacteria) as multi-specific floating biofilms |
topic | Multi-specific Biofilm Microcystis Colonies Mucilage EPS Holobiont Ciencias Naturales y Exactas Ciencias Biológicas Ecología |
url | https://hdl.handle.net/20.500.12381/3393 |