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The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing

Ecological adaptation is of major relevance to speciation and sustainable population management, but the underlying genetic factors are typically hard to study in natural populations due to genetic differentiation caused by natural selection being confounded with genetic drift in subdivided populati...

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Autores principales: Martinez Barrio, Alvaro, Lamichhaney, Sangeet, Fan, Guangyi, Rafati, Nima, Pettersson, Mats, Zhang, He, Dainat, Jacques, Ekman, Diana, Höppner, Marc, Jern, Patric, Martin, Marcel, Nystedt, Björn, Liu, Xin, Chen, Wenbin, Liang, Xinming, Shi, Chengcheng, Fu, Yuanyuan, Ma, Kailong, Zhan, Xiao, Feng, Chungang, Gustafson, Ulla, Rubin, Carl-Johan, Sällman Almén, Markus, Blass, Martina, Casini, Michele, Folkvord, Arild, Laikre, Linda, Ryman, Nils, Ming-Yuen Lee, Simon, Xu, Xun, Andersson, Leif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854517/
https://www.ncbi.nlm.nih.gov/pubmed/27138043
http://dx.doi.org/10.7554/eLife.12081
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author Martinez Barrio, Alvaro
Lamichhaney, Sangeet
Fan, Guangyi
Rafati, Nima
Pettersson, Mats
Zhang, He
Dainat, Jacques
Ekman, Diana
Höppner, Marc
Jern, Patric
Martin, Marcel
Nystedt, Björn
Liu, Xin
Chen, Wenbin
Liang, Xinming
Shi, Chengcheng
Fu, Yuanyuan
Ma, Kailong
Zhan, Xiao
Feng, Chungang
Gustafson, Ulla
Rubin, Carl-Johan
Sällman Almén, Markus
Blass, Martina
Casini, Michele
Folkvord, Arild
Laikre, Linda
Ryman, Nils
Ming-Yuen Lee, Simon
Xu, Xun
Andersson, Leif
author_facet Martinez Barrio, Alvaro
Lamichhaney, Sangeet
Fan, Guangyi
Rafati, Nima
Pettersson, Mats
Zhang, He
Dainat, Jacques
Ekman, Diana
Höppner, Marc
Jern, Patric
Martin, Marcel
Nystedt, Björn
Liu, Xin
Chen, Wenbin
Liang, Xinming
Shi, Chengcheng
Fu, Yuanyuan
Ma, Kailong
Zhan, Xiao
Feng, Chungang
Gustafson, Ulla
Rubin, Carl-Johan
Sällman Almén, Markus
Blass, Martina
Casini, Michele
Folkvord, Arild
Laikre, Linda
Ryman, Nils
Ming-Yuen Lee, Simon
Xu, Xun
Andersson, Leif
author_sort Martinez Barrio, Alvaro
collection PubMed
description Ecological adaptation is of major relevance to speciation and sustainable population management, but the underlying genetic factors are typically hard to study in natural populations due to genetic differentiation caused by natural selection being confounded with genetic drift in subdivided populations. Here, we use whole genome population sequencing of Atlantic and Baltic herring to reveal the underlying genetic architecture at an unprecedented detailed resolution for both adaptation to a new niche environment and timing of reproduction. We identify almost 500 independent loci associated with a recent niche expansion from marine (Atlantic Ocean) to brackish waters (Baltic Sea), and more than 100 independent loci showing genetic differentiation between spring- and autumn-spawning populations irrespective of geographic origin. Our results show that both coding and non-coding changes contribute to adaptation. Haplotype blocks, often spanning multiple genes and maintained by selection, are associated with genetic differentiation. DOI: http://dx.doi.org/10.7554/eLife.12081.001
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spelling pubmed-48545172016-05-05 The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing Martinez Barrio, Alvaro Lamichhaney, Sangeet Fan, Guangyi Rafati, Nima Pettersson, Mats Zhang, He Dainat, Jacques Ekman, Diana Höppner, Marc Jern, Patric Martin, Marcel Nystedt, Björn Liu, Xin Chen, Wenbin Liang, Xinming Shi, Chengcheng Fu, Yuanyuan Ma, Kailong Zhan, Xiao Feng, Chungang Gustafson, Ulla Rubin, Carl-Johan Sällman Almén, Markus Blass, Martina Casini, Michele Folkvord, Arild Laikre, Linda Ryman, Nils Ming-Yuen Lee, Simon Xu, Xun Andersson, Leif eLife Genomics and Evolutionary Biology Ecological adaptation is of major relevance to speciation and sustainable population management, but the underlying genetic factors are typically hard to study in natural populations due to genetic differentiation caused by natural selection being confounded with genetic drift in subdivided populations. Here, we use whole genome population sequencing of Atlantic and Baltic herring to reveal the underlying genetic architecture at an unprecedented detailed resolution for both adaptation to a new niche environment and timing of reproduction. We identify almost 500 independent loci associated with a recent niche expansion from marine (Atlantic Ocean) to brackish waters (Baltic Sea), and more than 100 independent loci showing genetic differentiation between spring- and autumn-spawning populations irrespective of geographic origin. Our results show that both coding and non-coding changes contribute to adaptation. Haplotype blocks, often spanning multiple genes and maintained by selection, are associated with genetic differentiation. DOI: http://dx.doi.org/10.7554/eLife.12081.001 eLife Sciences Publications, Ltd 2016-05-03 /pmc/articles/PMC4854517/ /pubmed/27138043 http://dx.doi.org/10.7554/eLife.12081 Text en © 2016, Martinez Barrio et al http://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Genomics and Evolutionary Biology
Martinez Barrio, Alvaro
Lamichhaney, Sangeet
Fan, Guangyi
Rafati, Nima
Pettersson, Mats
Zhang, He
Dainat, Jacques
Ekman, Diana
Höppner, Marc
Jern, Patric
Martin, Marcel
Nystedt, Björn
Liu, Xin
Chen, Wenbin
Liang, Xinming
Shi, Chengcheng
Fu, Yuanyuan
Ma, Kailong
Zhan, Xiao
Feng, Chungang
Gustafson, Ulla
Rubin, Carl-Johan
Sällman Almén, Markus
Blass, Martina
Casini, Michele
Folkvord, Arild
Laikre, Linda
Ryman, Nils
Ming-Yuen Lee, Simon
Xu, Xun
Andersson, Leif
The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title_full The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title_fullStr The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title_full_unstemmed The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title_short The genetic basis for ecological adaptation of the Atlantic herring revealed by genome sequencing
title_sort genetic basis for ecological adaptation of the atlantic herring revealed by genome sequencing
topic Genomics and Evolutionary Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854517/
https://www.ncbi.nlm.nih.gov/pubmed/27138043
http://dx.doi.org/10.7554/eLife.12081
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