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author Hochart, Corentin
Paoli, Lucas
Ruscheweyh, Hans-Joachim
Salazar, Guillem
Boissin, Emilie
Romac, Sarah
Poulain, Julie
Bourdin, Guillaume
Iwankow, Guillaume
Moulin, Clémentine
Ziegler, Maren
Porro, Barbara
Armstrong, Eric J.
Hume, Benjamin C. C.
Aury, Jean-Marc
Pogoreutz, Claudia
Paz-García, David A.
Nugues, Maggy M.
Agostini, Sylvain
Banaigs, Bernard
Boss, Emmanuel
Bowler, Chris
de Vargas, Colomban
Douville, Eric
Flores, Michel
Forcioli, Didier
Furla, Paola
Gilson, Eric
Lombard, Fabien
Pesant, Stéphane
Reynaud, Stéphanie
Thomas, Olivier P.
Troublé, Romain
Wincker, Patrick
Zoccola, Didier
Allemand, Denis
Planes, Serge
Thurber, Rebecca Vega
Voolstra, Christian R.
Sunagawa, Shinichi
Galand, Pierre E.
author_facet Hochart, Corentin
Paoli, Lucas
Ruscheweyh, Hans-Joachim
Salazar, Guillem
Boissin, Emilie
Romac, Sarah
Poulain, Julie
Bourdin, Guillaume
Iwankow, Guillaume
Moulin, Clémentine
Ziegler, Maren
Porro, Barbara
Armstrong, Eric J.
Hume, Benjamin C. C.
Aury, Jean-Marc
Pogoreutz, Claudia
Paz-García, David A.
Nugues, Maggy M.
Agostini, Sylvain
Banaigs, Bernard
Boss, Emmanuel
Bowler, Chris
de Vargas, Colomban
Douville, Eric
Flores, Michel
Forcioli, Didier
Furla, Paola
Gilson, Eric
Lombard, Fabien
Pesant, Stéphane
Reynaud, Stéphanie
Thomas, Olivier P.
Troublé, Romain
Wincker, Patrick
Zoccola, Didier
Allemand, Denis
Planes, Serge
Thurber, Rebecca Vega
Voolstra, Christian R.
Sunagawa, Shinichi
Galand, Pierre E.
author_sort Hochart, Corentin
collection PubMed
description Health and resilience of the coral holobiont depend on diverse bacterial communities often dominated by key marine symbionts of the Endozoicomonadaceae family. The factors controlling their distribution and their functional diversity remain, however, poorly known. Here, we study the ecology of Endozoicomonadaceae at an ocean basin-scale by sampling specimens from three coral genera (Pocillopora, Porites, Millepora) on 99 reefs from 32 islands across the Pacific Ocean. The analysis of 2447 metabarcoding and 270 metagenomic samples reveals that each coral genus harbored a distinct new species of Endozoicomonadaceae. These species are composed of nine lineages that have distinct biogeographic patterns. The most common one, found in Pocillopora, appears to be a globally distributed symbiont with distinct metabolic capabilities, including the synthesis of amino acids and vitamins not produced by the host. The other lineages are structured partly by the host genetic lineage in Pocillopora and mainly by the geographic location in Porites. Millepora is more rarely associated to Endozoicomonadaceae. Our results show that different coral genera exhibit distinct strategies of host-Endozoicomonadaceae associations that are defined at the bacteria lineage level.
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spelling pubmed-102354322023-06-03 Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean Hochart, Corentin Paoli, Lucas Ruscheweyh, Hans-Joachim Salazar, Guillem Boissin, Emilie Romac, Sarah Poulain, Julie Bourdin, Guillaume Iwankow, Guillaume Moulin, Clémentine Ziegler, Maren Porro, Barbara Armstrong, Eric J. Hume, Benjamin C. C. Aury, Jean-Marc Pogoreutz, Claudia Paz-García, David A. Nugues, Maggy M. Agostini, Sylvain Banaigs, Bernard Boss, Emmanuel Bowler, Chris de Vargas, Colomban Douville, Eric Flores, Michel Forcioli, Didier Furla, Paola Gilson, Eric Lombard, Fabien Pesant, Stéphane Reynaud, Stéphanie Thomas, Olivier P. Troublé, Romain Wincker, Patrick Zoccola, Didier Allemand, Denis Planes, Serge Thurber, Rebecca Vega Voolstra, Christian R. Sunagawa, Shinichi Galand, Pierre E. Nat Commun Article Health and resilience of the coral holobiont depend on diverse bacterial communities often dominated by key marine symbionts of the Endozoicomonadaceae family. The factors controlling their distribution and their functional diversity remain, however, poorly known. Here, we study the ecology of Endozoicomonadaceae at an ocean basin-scale by sampling specimens from three coral genera (Pocillopora, Porites, Millepora) on 99 reefs from 32 islands across the Pacific Ocean. The analysis of 2447 metabarcoding and 270 metagenomic samples reveals that each coral genus harbored a distinct new species of Endozoicomonadaceae. These species are composed of nine lineages that have distinct biogeographic patterns. The most common one, found in Pocillopora, appears to be a globally distributed symbiont with distinct metabolic capabilities, including the synthesis of amino acids and vitamins not produced by the host. The other lineages are structured partly by the host genetic lineage in Pocillopora and mainly by the geographic location in Porites. Millepora is more rarely associated to Endozoicomonadaceae. Our results show that different coral genera exhibit distinct strategies of host-Endozoicomonadaceae associations that are defined at the bacteria lineage level. Nature Publishing Group UK 2023-06-01 /pmc/articles/PMC10235432/ /pubmed/37264015 http://dx.doi.org/10.1038/s41467-023-38502-9 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
Hochart, Corentin
Paoli, Lucas
Ruscheweyh, Hans-Joachim
Salazar, Guillem
Boissin, Emilie
Romac, Sarah
Poulain, Julie
Bourdin, Guillaume
Iwankow, Guillaume
Moulin, Clémentine
Ziegler, Maren
Porro, Barbara
Armstrong, Eric J.
Hume, Benjamin C. C.
Aury, Jean-Marc
Pogoreutz, Claudia
Paz-García, David A.
Nugues, Maggy M.
Agostini, Sylvain
Banaigs, Bernard
Boss, Emmanuel
Bowler, Chris
de Vargas, Colomban
Douville, Eric
Flores, Michel
Forcioli, Didier
Furla, Paola
Gilson, Eric
Lombard, Fabien
Pesant, Stéphane
Reynaud, Stéphanie
Thomas, Olivier P.
Troublé, Romain
Wincker, Patrick
Zoccola, Didier
Allemand, Denis
Planes, Serge
Thurber, Rebecca Vega
Voolstra, Christian R.
Sunagawa, Shinichi
Galand, Pierre E.
Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title_full Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title_fullStr Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title_full_unstemmed Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title_short Ecology of Endozoicomonadaceae in three coral genera across the Pacific Ocean
title_sort ecology of endozoicomonadaceae in three coral genera across the pacific ocean
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235432/
https://www.ncbi.nlm.nih.gov/pubmed/37264015
http://dx.doi.org/10.1038/s41467-023-38502-9
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