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Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula

Genetic structure within marine species may be driven by local adaptation to their environment, or alternatively by historical processes, such as geographic isolation. The gulfs and seas bordering the Arabian Peninsula offer an ideal setting to examine connectivity patterns in coral reef fishes with...

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Autores principales: DiBattista, Joseph D., Saenz‐Agudelo, Pablo, Piatek, Marek J., Cagua, Edgar Fernando, Bowen, Brian W., Choat, John Howard, Rocha, Luiz A., Gaither, Michelle R., Hobbs, Jean‐Paul A., Sinclair‐Taylor, Tane H., McIlwain, Jennifer H., Priest, Mark A., Braun, Camrin D., Hussey, Nigel E., Kessel, Steven T., Berumen, Michael L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7246217/
https://www.ncbi.nlm.nih.gov/pubmed/32489599
http://dx.doi.org/10.1002/ece3.6199
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author DiBattista, Joseph D.
Saenz‐Agudelo, Pablo
Piatek, Marek J.
Cagua, Edgar Fernando
Bowen, Brian W.
Choat, John Howard
Rocha, Luiz A.
Gaither, Michelle R.
Hobbs, Jean‐Paul A.
Sinclair‐Taylor, Tane H.
McIlwain, Jennifer H.
Priest, Mark A.
Braun, Camrin D.
Hussey, Nigel E.
Kessel, Steven T.
Berumen, Michael L.
author_facet DiBattista, Joseph D.
Saenz‐Agudelo, Pablo
Piatek, Marek J.
Cagua, Edgar Fernando
Bowen, Brian W.
Choat, John Howard
Rocha, Luiz A.
Gaither, Michelle R.
Hobbs, Jean‐Paul A.
Sinclair‐Taylor, Tane H.
McIlwain, Jennifer H.
Priest, Mark A.
Braun, Camrin D.
Hussey, Nigel E.
Kessel, Steven T.
Berumen, Michael L.
author_sort DiBattista, Joseph D.
collection PubMed
description Genetic structure within marine species may be driven by local adaptation to their environment, or alternatively by historical processes, such as geographic isolation. The gulfs and seas bordering the Arabian Peninsula offer an ideal setting to examine connectivity patterns in coral reef fishes with respect to environmental gradients and vicariance. The Red Sea is characterized by a unique marine fauna, historical periods of desiccation and isolation, as well as environmental gradients in salinity, temperature, and primary productivity that vary both by latitude and by season. The adjacent Arabian Sea is characterized by a sharper environmental gradient, ranging from extensive coral cover and warm temperatures in the southwest, to sparse coral cover, cooler temperatures, and seasonal upwelling in the northeast. Reef fish, however, are not confined to these seas, with some Red Sea fishes extending varying distances into the northern Arabian Sea, while their pelagic larvae are presumably capable of much greater dispersal. These species must therefore cope with a diversity of conditions that invoke the possibility of steep clines in natural selection. Here, we test for genetic structure in two widespread reef fish species (a butterflyfish and surgeonfish) and eight range‐restricted butterflyfishes across the Red Sea and Arabian Sea using genome‐wide single nucleotide polymorphisms. We performed multiple matrix regression with randomization analyses on genetic distances for all species, as well as reconstructed scenarios for population subdivision in the species with signatures of isolation. We found that (a) widespread species displayed more genetic subdivision than regional endemics and (b) this genetic structure was not correlated with contemporary environmental parameters but instead may reflect historical events. We propose that the endemic species may be adapted to a diversity of local conditions, but the widespread species are instead subject to ecological filtering where different combinations of genotypes persist under divergent ecological regimes.
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spelling pubmed-72462172020-06-01 Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula DiBattista, Joseph D. Saenz‐Agudelo, Pablo Piatek, Marek J. Cagua, Edgar Fernando Bowen, Brian W. Choat, John Howard Rocha, Luiz A. Gaither, Michelle R. Hobbs, Jean‐Paul A. Sinclair‐Taylor, Tane H. McIlwain, Jennifer H. Priest, Mark A. Braun, Camrin D. Hussey, Nigel E. Kessel, Steven T. Berumen, Michael L. Ecol Evol Original Research Genetic structure within marine species may be driven by local adaptation to their environment, or alternatively by historical processes, such as geographic isolation. The gulfs and seas bordering the Arabian Peninsula offer an ideal setting to examine connectivity patterns in coral reef fishes with respect to environmental gradients and vicariance. The Red Sea is characterized by a unique marine fauna, historical periods of desiccation and isolation, as well as environmental gradients in salinity, temperature, and primary productivity that vary both by latitude and by season. The adjacent Arabian Sea is characterized by a sharper environmental gradient, ranging from extensive coral cover and warm temperatures in the southwest, to sparse coral cover, cooler temperatures, and seasonal upwelling in the northeast. Reef fish, however, are not confined to these seas, with some Red Sea fishes extending varying distances into the northern Arabian Sea, while their pelagic larvae are presumably capable of much greater dispersal. These species must therefore cope with a diversity of conditions that invoke the possibility of steep clines in natural selection. Here, we test for genetic structure in two widespread reef fish species (a butterflyfish and surgeonfish) and eight range‐restricted butterflyfishes across the Red Sea and Arabian Sea using genome‐wide single nucleotide polymorphisms. We performed multiple matrix regression with randomization analyses on genetic distances for all species, as well as reconstructed scenarios for population subdivision in the species with signatures of isolation. We found that (a) widespread species displayed more genetic subdivision than regional endemics and (b) this genetic structure was not correlated with contemporary environmental parameters but instead may reflect historical events. We propose that the endemic species may be adapted to a diversity of local conditions, but the widespread species are instead subject to ecological filtering where different combinations of genotypes persist under divergent ecological regimes. John Wiley and Sons Inc. 2020-04-12 /pmc/articles/PMC7246217/ /pubmed/32489599 http://dx.doi.org/10.1002/ece3.6199 Text en © 2020 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
DiBattista, Joseph D.
Saenz‐Agudelo, Pablo
Piatek, Marek J.
Cagua, Edgar Fernando
Bowen, Brian W.
Choat, John Howard
Rocha, Luiz A.
Gaither, Michelle R.
Hobbs, Jean‐Paul A.
Sinclair‐Taylor, Tane H.
McIlwain, Jennifer H.
Priest, Mark A.
Braun, Camrin D.
Hussey, Nigel E.
Kessel, Steven T.
Berumen, Michael L.
Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title_full Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title_fullStr Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title_full_unstemmed Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title_short Population genomic response to geographic gradients by widespread and endemic fishes of the Arabian Peninsula
title_sort population genomic response to geographic gradients by widespread and endemic fishes of the arabian peninsula
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7246217/
https://www.ncbi.nlm.nih.gov/pubmed/32489599
http://dx.doi.org/10.1002/ece3.6199
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