Cargando…

Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source

Biological invasions rank amongst the most deleterious components of global change inducing alterations from genes to ecosystems. The genetic characteristics of introduced pools of individuals greatly influence the capacity of introduced species to establish and expand. The recently demonstrated her...

Descripción completa

Detalles Bibliográficos
Autores principales: Aires, Tania, Serrão, Ester A., Kendrick, Gary, Duarte, Carlos M., Arnaud-Haond, Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3713043/
https://www.ncbi.nlm.nih.gov/pubmed/23874625
http://dx.doi.org/10.1371/journal.pone.0068429
_version_ 1782277149487529984
author Aires, Tania
Serrão, Ester A.
Kendrick, Gary
Duarte, Carlos M.
Arnaud-Haond, Sophie
author_facet Aires, Tania
Serrão, Ester A.
Kendrick, Gary
Duarte, Carlos M.
Arnaud-Haond, Sophie
author_sort Aires, Tania
collection PubMed
description Biological invasions rank amongst the most deleterious components of global change inducing alterations from genes to ecosystems. The genetic characteristics of introduced pools of individuals greatly influence the capacity of introduced species to establish and expand. The recently demonstrated heritability of microbial communities associated to individual genotypes of primary producers makes them a potentially essential element of the evolution and adaptability of their hosts. Here, we characterized the bacterial communities associated to native and non-native populations of the marine green macroalga Caulerpa racemosa through pyrosequencing, and explored their potential role on the strikingly invasive trajectory of their host in the Mediterranean. The similarity of endophytic bacterial communities from the native Australian range and several Mediterranean locations confirmed the origin of invasion and revealed distinct communities associated to a second Mediterranean variety of C . racemosa long reported in the Mediterranean. Comparative analysis of these two groups demonstrated the stability of the composition of bacterial communities through the successive steps of introduction and invasion and suggested the vertical transmission of some major bacterial OTUs. Indirect inferences on the taxonomic identity and associated metabolism of bacterial lineages showed a striking consistency with sediment upheaval conditions associated to the expansion of their invasive host and to the decline of native species. These results demonstrate that bacterial communities can be an effective tracer of the origin of invasion and support their potential role in their eukaryotic host’s adaptation to new environments. They put forward the critical need to consider the 'meta-organism' encompassing both the host and associated micro-organisms, to unravel the origins, causes and mechanisms underlying biological invasions.
format Online
Article
Text
id pubmed-3713043
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37130432013-07-19 Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source Aires, Tania Serrão, Ester A. Kendrick, Gary Duarte, Carlos M. Arnaud-Haond, Sophie PLoS One Research Article Biological invasions rank amongst the most deleterious components of global change inducing alterations from genes to ecosystems. The genetic characteristics of introduced pools of individuals greatly influence the capacity of introduced species to establish and expand. The recently demonstrated heritability of microbial communities associated to individual genotypes of primary producers makes them a potentially essential element of the evolution and adaptability of their hosts. Here, we characterized the bacterial communities associated to native and non-native populations of the marine green macroalga Caulerpa racemosa through pyrosequencing, and explored their potential role on the strikingly invasive trajectory of their host in the Mediterranean. The similarity of endophytic bacterial communities from the native Australian range and several Mediterranean locations confirmed the origin of invasion and revealed distinct communities associated to a second Mediterranean variety of C . racemosa long reported in the Mediterranean. Comparative analysis of these two groups demonstrated the stability of the composition of bacterial communities through the successive steps of introduction and invasion and suggested the vertical transmission of some major bacterial OTUs. Indirect inferences on the taxonomic identity and associated metabolism of bacterial lineages showed a striking consistency with sediment upheaval conditions associated to the expansion of their invasive host and to the decline of native species. These results demonstrate that bacterial communities can be an effective tracer of the origin of invasion and support their potential role in their eukaryotic host’s adaptation to new environments. They put forward the critical need to consider the 'meta-organism' encompassing both the host and associated micro-organisms, to unravel the origins, causes and mechanisms underlying biological invasions. Public Library of Science 2013-07-16 /pmc/articles/PMC3713043/ /pubmed/23874625 http://dx.doi.org/10.1371/journal.pone.0068429 Text en © 2013 Aires 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
Aires, Tania
Serrão, Ester A.
Kendrick, Gary
Duarte, Carlos M.
Arnaud-Haond, Sophie
Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title_full Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title_fullStr Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title_full_unstemmed Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title_short Invasion Is a Community Affair: Clandestine Followers in the Bacterial Community Associated to Green Algae, Caulerpa racemosa, Track the Invasion Source
title_sort invasion is a community affair: clandestine followers in the bacterial community associated to green algae, caulerpa racemosa, track the invasion source
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3713043/
https://www.ncbi.nlm.nih.gov/pubmed/23874625
http://dx.doi.org/10.1371/journal.pone.0068429
work_keys_str_mv AT airestania invasionisacommunityaffairclandestinefollowersinthebacterialcommunityassociatedtogreenalgaecaulerparacemosatracktheinvasionsource
AT serraoestera invasionisacommunityaffairclandestinefollowersinthebacterialcommunityassociatedtogreenalgaecaulerparacemosatracktheinvasionsource
AT kendrickgary invasionisacommunityaffairclandestinefollowersinthebacterialcommunityassociatedtogreenalgaecaulerparacemosatracktheinvasionsource
AT duartecarlosm invasionisacommunityaffairclandestinefollowersinthebacterialcommunityassociatedtogreenalgaecaulerparacemosatracktheinvasionsource
AT arnaudhaondsophie invasionisacommunityaffairclandestinefollowersinthebacterialcommunityassociatedtogreenalgaecaulerparacemosatracktheinvasionsource