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Dispersal similarly shapes both population genetics and community patterns in the marine realm

Dispersal plays a key role to connect populations and, if limited, is one of the main processes to maintain and generate regional biodiversity. According to neutral theories of molecular evolution and biodiversity, dispersal limitation of propagules and population stochasticity are integral to shapi...

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Autores principales: Chust, Guillem, Villarino, Ernesto, Chenuil, Anne, Irigoien, Xabier, Bizsel, Nihayet, Bode, Antonio, Broms, Cecilie, Claus, Simon, Fernández de Puelles, María L., Fonda-Umani, Serena, Hoarau, Galice, Mazzocchi, Maria G., Mozetič, Patricija, Vandepitte, Leen, Veríssimo, Helena, Zervoudaki, Soultana, Borja, Angel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921837/
https://www.ncbi.nlm.nih.gov/pubmed/27344967
http://dx.doi.org/10.1038/srep28730
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author Chust, Guillem
Villarino, Ernesto
Chenuil, Anne
Irigoien, Xabier
Bizsel, Nihayet
Bode, Antonio
Broms, Cecilie
Claus, Simon
Fernández de Puelles, María L.
Fonda-Umani, Serena
Hoarau, Galice
Mazzocchi, Maria G.
Mozetič, Patricija
Vandepitte, Leen
Veríssimo, Helena
Zervoudaki, Soultana
Borja, Angel
author_facet Chust, Guillem
Villarino, Ernesto
Chenuil, Anne
Irigoien, Xabier
Bizsel, Nihayet
Bode, Antonio
Broms, Cecilie
Claus, Simon
Fernández de Puelles, María L.
Fonda-Umani, Serena
Hoarau, Galice
Mazzocchi, Maria G.
Mozetič, Patricija
Vandepitte, Leen
Veríssimo, Helena
Zervoudaki, Soultana
Borja, Angel
author_sort Chust, Guillem
collection PubMed
description Dispersal plays a key role to connect populations and, if limited, is one of the main processes to maintain and generate regional biodiversity. According to neutral theories of molecular evolution and biodiversity, dispersal limitation of propagules and population stochasticity are integral to shaping both genetic and community structure. We conducted a parallel analysis of biological connectivity at genetic and community levels in marine groups with different dispersal traits. We compiled large data sets of population genetic structure (98 benthic macroinvertebrate and 35 planktonic species) and biogeographic data (2193 benthic macroinvertebrate and 734 planktonic species). We estimated dispersal distances from population genetic data (i.e., F(ST) vs. geographic distance) and from β-diversity at the community level. Dispersal distances ranked the biological groups in the same order at both genetic and community levels, as predicted by organism dispersal ability and seascape connectivity: macrozoobenthic species without dispersing larvae, followed by macrozoobenthic species with dispersing larvae and plankton (phyto- and zooplankton). This ranking order is associated with constraints to the movement of macrozoobenthos within the seabed compared with the pelagic habitat. We showed that dispersal limitation similarly determines the connectivity degree of communities and populations, supporting the predictions of neutral theories in marine biodiversity patterns.
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spelling pubmed-49218372016-06-28 Dispersal similarly shapes both population genetics and community patterns in the marine realm Chust, Guillem Villarino, Ernesto Chenuil, Anne Irigoien, Xabier Bizsel, Nihayet Bode, Antonio Broms, Cecilie Claus, Simon Fernández de Puelles, María L. Fonda-Umani, Serena Hoarau, Galice Mazzocchi, Maria G. Mozetič, Patricija Vandepitte, Leen Veríssimo, Helena Zervoudaki, Soultana Borja, Angel Sci Rep Article Dispersal plays a key role to connect populations and, if limited, is one of the main processes to maintain and generate regional biodiversity. According to neutral theories of molecular evolution and biodiversity, dispersal limitation of propagules and population stochasticity are integral to shaping both genetic and community structure. We conducted a parallel analysis of biological connectivity at genetic and community levels in marine groups with different dispersal traits. We compiled large data sets of population genetic structure (98 benthic macroinvertebrate and 35 planktonic species) and biogeographic data (2193 benthic macroinvertebrate and 734 planktonic species). We estimated dispersal distances from population genetic data (i.e., F(ST) vs. geographic distance) and from β-diversity at the community level. Dispersal distances ranked the biological groups in the same order at both genetic and community levels, as predicted by organism dispersal ability and seascape connectivity: macrozoobenthic species without dispersing larvae, followed by macrozoobenthic species with dispersing larvae and plankton (phyto- and zooplankton). This ranking order is associated with constraints to the movement of macrozoobenthos within the seabed compared with the pelagic habitat. We showed that dispersal limitation similarly determines the connectivity degree of communities and populations, supporting the predictions of neutral theories in marine biodiversity patterns. Nature Publishing Group 2016-06-27 /pmc/articles/PMC4921837/ /pubmed/27344967 http://dx.doi.org/10.1038/srep28730 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Chust, Guillem
Villarino, Ernesto
Chenuil, Anne
Irigoien, Xabier
Bizsel, Nihayet
Bode, Antonio
Broms, Cecilie
Claus, Simon
Fernández de Puelles, María L.
Fonda-Umani, Serena
Hoarau, Galice
Mazzocchi, Maria G.
Mozetič, Patricija
Vandepitte, Leen
Veríssimo, Helena
Zervoudaki, Soultana
Borja, Angel
Dispersal similarly shapes both population genetics and community patterns in the marine realm
title Dispersal similarly shapes both population genetics and community patterns in the marine realm
title_full Dispersal similarly shapes both population genetics and community patterns in the marine realm
title_fullStr Dispersal similarly shapes both population genetics and community patterns in the marine realm
title_full_unstemmed Dispersal similarly shapes both population genetics and community patterns in the marine realm
title_short Dispersal similarly shapes both population genetics and community patterns in the marine realm
title_sort dispersal similarly shapes both population genetics and community patterns in the marine realm
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4921837/
https://www.ncbi.nlm.nih.gov/pubmed/27344967
http://dx.doi.org/10.1038/srep28730
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