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从表层桡足类小拟哲水蚤的基因组中获得的关于全球生物地理学、种群结构和自然选择的新见解。

New insights into global biogeography, population structure and natural selection from the genome of the epipelagic copepod Oithona.

作者信息

Madoui Mohammed-Amin, Poulain Julie, Sugier Kevin, Wessner Marc, Noel Benjamin, Berline Leo, Labadie Karine, Cornils Astrid, Blanco-Bercial Leocadio, Stemmann Lars, Jamet Jean-Louis, Wincker Patrick

机构信息

Commissariat à l'Energie Atomique (CEA), Institut de Biologie François Jacob, Genoscope, Evry, France.

Centre National de la Recherche Scientifique, UMR 8030 Université d'Evry val d'Essonne, Evry, France.

出版信息

Mol Ecol. 2017 Sep;26(17):4467-4482. doi: 10.1111/mec.14214. Epub 2017 Jul 25.

Abstract

In the epipelagic ocean, the genus Oithona is considered as one of the most abundant and widespread copepods and plays an important role in the trophic food web. Despite its ecological importance, little is known about Oithona and cyclopoid copepods genomics. Therefore, we sequenced, assembled and annotated the genome of Oithona nana. The comparative genomic analysis integrating available copepod genomes highlighted the expansions of genes related to stress response, cell differentiation and development, including genes coding Lin12-Notch-repeat (LNR) domain proteins. The Oithona biogeography based on 28S sequences and metagenomic reads from the Tara Oceans expedition showed the presence of O. nana mostly in the Mediterranean Sea (MS) and confirmed the amphitropical distribution of Oithona similis. The population genomics analyses of O. nana in the Northern MS, integrating the Tara Oceans metagenomic data and the O. nana genome, led to the identification of genetic structure between populations from the MS basins. Furthermore, 20 loci were found to be under positive selection including four missense and eight synonymous variants, harbouring soft or hard selective sweep patterns. One of the missense variants was localized in the LNR domain of the coding region of a male-specific gene. The variation in the B-allele frequency with respect to the MS circulation pattern showed the presence of genomic clines between O. nana and another undefined Oithona species possibly imported through Atlantic waters. This study provides new approaches and results in zooplankton population genomics through the integration of metagenomic and oceanographic data.

摘要

在海洋上层,奥氏哲水蚤属被认为是最丰富和分布最广的桡足类之一,在营养食物网中发挥着重要作用。尽管其具有生态重要性,但对奥氏哲水蚤和剑水蚤类桡足类的基因组学了解甚少。因此,我们对矮小奥氏哲水蚤的基因组进行了测序、组装和注释。整合现有桡足类基因组的比较基因组分析突出了与应激反应、细胞分化和发育相关基因的扩增,包括编码Lin12-Notch重复(LNR)结构域蛋白的基因。基于28S序列和Tara Oceans考察的宏基因组读数的奥氏哲水蚤生物地理学研究表明,矮小奥氏哲水蚤主要存在于地中海,证实了相似奥氏哲水蚤的两热带分布。整合Tara Oceans宏基因组数据和矮小奥氏哲水蚤基因组对地中海北部矮小奥氏哲水蚤进行的群体基因组学分析,确定了地中海盆地不同群体之间的遗传结构。此外,发现20个位点受到正选择作用,包括四个错义变体和八个同义变体,呈现出软选择或硬选择扫荡模式。其中一个错义变体位于一个雄性特异性基因编码区的LNR结构域中。B等位基因频率相对于地中海环流模式的变化表明,矮小奥氏哲水蚤与另一个可能通过大西洋水域引入的未定义奥氏哲水蚤物种之间存在基因组渐变群。本研究通过整合宏基因组和海洋学数据,为浮游动物群体基因组学提供了新的方法和结果。

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