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美洲龙虾(Homarus americanus)的景观基因组学。

Landscape genomics of the American lobster (Homarus americanus).

机构信息

Institut de Biologie Intégrative et des Systèmes (IBIS), Université Laval, Québec, Québec, Canada.

IHPE, CNRS, Ifremer, Université de Montpellier, Université de Perpignan Via Domitia, Montpellier, France.

出版信息

Mol Ecol. 2022 Oct;31(20):5182-5200. doi: 10.1111/mec.16653. Epub 2022 Aug 27.

DOI:10.1111/mec.16653
PMID:35960266
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9805075/
Abstract

In marine species experiencing intense fishing pressures, knowledge of genetic structure and local adaptation represent a critical information to assist sustainable management. In this study, we performed a landscape genomics analysis in the American lobster to investigate the issues pertaining to the consequences of making use of putative adaptive loci to reliably infer population structure and thus more rigorously delineating biological management units in marine exploited species. Toward this end, we genotyped 14,893 single nucleotide polymorphism (SNPs) in 4190 lobsters sampled across 96 sampling sites distributed along 1000 km in the northwest Atlantic in both Canada and the USA. As typical for most marine species, we observed a weak, albeit highly significant genetic structure. We also found that adaptive genetic variation allows detecting fine-scale population structure not resolved by neutral genetic variation alone. Using the recent genome assembly of the American lobster, we were able to map and annotate several SNPs located in functional genes potentially implicated in adaptive processes such as thermal stress response, salinity tolerance and growth metabolism pathways. Taken together, our study indicates that weak population structure in high gene flow systems can be resolved at various spatial scales, and that putatively adaptive genetic variation can substantially enhance the delineation of biological management units of marine exploited species.

摘要

在面临高强度捕捞压力的海洋物种中,对遗传结构和局部适应的了解是协助可持续管理的关键信息。在这项研究中,我们对美洲龙虾进行了景观基因组学分析,以研究利用假定适应性基因座来可靠推断种群结构的后果,并因此更严格地划定海洋捕捞物种的生物管理单元的问题。为此,我们对分布在加拿大和美国西北部大西洋 1000 公里范围内的 96 个采样点的 4190 只龙虾进行了 14893 个单核苷酸多态性(SNP)的基因分型。与大多数海洋物种一样,我们观察到了微弱但高度显著的遗传结构。我们还发现,适应性遗传变异可以检测到仅通过中性遗传变异无法解决的细微种群结构。利用美洲龙虾最近的基因组组装,我们能够对位于功能基因中的几个 SNP 进行定位和注释,这些 SNP 可能参与了热应激反应、盐度耐受和生长代谢途径等适应性过程。总之,我们的研究表明,在高基因流动系统中,微弱的种群结构可以在各种空间尺度上得到解决,而假定的适应性遗传变异可以大大增强对海洋捕捞物种的生物管理单元的划定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/a2d182bc55fb/MEC-31-5182-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/db039c9faa58/MEC-31-5182-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/040c5c601f60/MEC-31-5182-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/a2d182bc55fb/MEC-31-5182-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/db039c9faa58/MEC-31-5182-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/040c5c601f60/MEC-31-5182-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0c2/9805075/a2d182bc55fb/MEC-31-5182-g002.jpg

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