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深海热液腹足动物艾氏拟沼螺两个不同集合种群中的异常位点揭示的连通性细微限制。

Subtle limits to connectivity revealed by outlier loci within two divergent metapopulations of the deep-sea hydrothermal gastropod Ifremeria nautilei.

作者信息

Tran Lu Y Adrien, Ruault Stéphanie, Daguin-Thiébaut Claire, Castel Jade, Bierne Nicolas, Broquet Thomas, Wincker Patrick, Perdereau Aude, Arnaud-Haond Sophie, Gagnaire Pierre-Alexandre, Jollivet Didier, Hourdez Stéphane, Bonhomme François

机构信息

ISEM, Institut des Sciences de l'Evolution, Univ Montpellier, CNRS, EPHE, IRD, Montpellier, France.

Sorbonne Université, CNRS, UMR 7144, Dynamique de la Diversité Marine (DyDiv) Laboratory, Station Biologique de Roscoff, Roscoff, France.

出版信息

Mol Ecol. 2022 May;31(10):2796-2813. doi: 10.1111/mec.16430. Epub 2022 Apr 2.

Abstract

Hydrothermal vents form archipelagos of ephemeral deep-sea habitats that raise interesting questions about the evolution and dynamics of the associated endemic fauna, constantly subject to extinction-recolonization processes. These metal-rich environments are coveted for the mineral resources they harbour, thus raising recent conservation concerns. The evolutionary fate and demographic resilience of hydrothermal species strongly depend on the degree of connectivity among and within their fragmented metapopulations. In the deep sea, however, assessing connectivity is difficult and usually requires indirect genetic approaches. Improved detection of fine-scale genetic connectivity is now possible based on genome-wide screening for genetic differentiation. Here, we explored population connectivity in the hydrothermal vent snail Ifremeria nautilei across its species range encompassing five distinct back-arc basins in the Southwest Pacific. The global analysis, based on 10,570 single nucleotide polymorphism (SNP) markers derived from double digest restriction-site associated DNA sequencing (ddRAD-seq), depicted two semi-isolated and homogeneous genetic clusters. Demogenetic modeling suggests that these two groups began to diverge about 70,000 generations ago, but continue to exhibit weak and slightly asymmetrical gene flow. Furthermore, a careful analysis of outlier loci showed subtle limitations to connectivity between neighbouring basins within both groups. This finding indicates that migration is not strong enough to totally counterbalance drift or local selection, hence questioning the potential for demographic resilience at this latter geographical scale. These results illustrate the potential of large genomic data sets to understand fine-scale connectivity patterns in hydrothermal vents and the deep sea.

摘要

热液喷口形成了短暂的深海栖息地群岛,这引发了有关相关特有动物群的进化和动态的有趣问题,这些动物群不断经历灭绝 - 再定殖过程。这些富含金属的环境因其蕴藏的矿产资源而备受觊觎,因此引发了近期的保护关注。热液物种的进化命运和种群恢复力在很大程度上取决于其破碎化集合种群之间以及内部的连通程度。然而,在深海中,评估连通性很困难,通常需要采用间接的遗传学方法。基于全基因组筛选遗传分化,现在有可能更好地检测精细尺度的遗传连通性。在这里,我们探索了热液喷口蜗牛“艾氏深海蜗牛(Ifremeria nautilei)”在其物种分布范围内的种群连通性,该范围涵盖了西南太平洋五个不同的弧后盆地。基于从双酶切限制性位点关联DNA测序(ddRAD-seq)获得的10570个单核苷酸多态性(SNP)标记进行的全局分析,描绘出两个半隔离且同质的遗传簇。种群遗传建模表明,这两个群体大约在70000代之前开始分化,但仍表现出微弱且略有不对称的基因流。此外,对异常位点的仔细分析显示,两组内相邻盆地之间连通性存在细微限制。这一发现表明,迁移强度不足以完全抵消漂变或局部选择,因此对后一地理尺度上的种群恢复力潜力提出了质疑。这些结果说明了大型基因组数据集在理解热液喷口和深海精细尺度连通模式方面的潜力。

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