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地中海特有鱼类的种群基因组学:通过精细的扩散和适应进行分化。

Population genomics of an endemic Mediterranean fish: differentiation by fine scale dispersal and adaptation.

机构信息

Departament de Genètica, Microbiologia i Estadística and IRBio, Universitat de Barcelona, Av.Diagonal 643, 08028 Barcelona, Spain.

Department of Biology, University of Padova, via G. Colombo 3, 35131 Padova, Italy.

出版信息

Sci Rep. 2017 Mar 6;7:43417. doi: 10.1038/srep43417.

Abstract

The assessment of the genetic structuring of biodiversity is crucial for management and conservation. For species with large effective population sizes a low number of markers may fail to identify population structure. A solution of this shortcoming can be high-throughput sequencing that allows genotyping thousands of markers on a genome-wide approach while facilitating the detection of genetic structuring shaped by selection. We used Genotyping-by-Sequencing (GBS) on 176 individuals of the endemic East Atlantic peacock wrasse (Symphodus tinca), from 6 locations in the Adriatic and Ionian seas. We obtained a total of 4,155 polymorphic SNPs and we observed two strong barriers to gene flow. The first one differentiated Tremiti Islands, in the northwest, from all the other locations while the second one separated east and south-west localities. Outlier SNPs potentially under positive selection and neutral SNPs both showed similar patterns of structuring, although finer scale differentiation was unveiled with outlier loci. Our results reflect the complexity of population genetic structure and demonstrate that both habitat fragmentation and positive selection are on play. This complexity should be considered in biodiversity assessments of different taxa, including non-model yet ecologically relevant organisms.

摘要

对生物多样性的遗传结构进行评估对于管理和保护至关重要。对于具有较大有效种群大小的物种,少量标记可能无法识别种群结构。一种解决此缺点的方法是高通量测序,它允许在全基因组方法上对数千个标记进行基因分型,同时促进了由选择形成的遗传结构的检测。我们使用了 176 个东大西洋孔雀鲈(Symphodus tinca)的个体进行测序(GBS),这些个体来自亚得里亚海和爱奥尼亚海的 6 个地点。我们总共获得了 4155 个多态性 SNP,并观察到了两个强烈的基因流屏障。第一个屏障将西北部的 Tremiti 群岛与其他所有地点区分开来,而第二个屏障则将东部和西南部的地点分开。可能受正选择影响的外显子 SNP 和中性 SNP 都显示出相似的结构模式,尽管在外显子位点上揭示了更精细的分化。我们的结果反映了种群遗传结构的复杂性,并表明生境破碎化和正选择都在发挥作用。在包括非模式但具有生态相关性的生物在内的不同分类群的生物多样性评估中,都应考虑这种复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66d5/5338269/ff4d1be05e6d/srep43417-f1.jpg

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