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宽吻海豚属及其近缘海豚亚科的系统基因组学研究揭示了谱系间广泛的网状进化关系,并为生态进化驱动因素提供了推断。

Phylogenomics of the genus Tursiops and closely related Delphininae reveals extensive reticulation among lineages and provides inference about eco-evolutionary drivers.

机构信息

Museum and Institute of Zoology, Polish Academy of Sciences, Poland; School of Life Sciences, University of Lincoln, UK.

School of Life Sciences, University of Lincoln, UK; Institute of Medical Sciences, School of Medical Sciences, University of Aberdeen, UK.

出版信息

Mol Phylogenet Evol. 2020 May;146:106756. doi: 10.1016/j.ympev.2020.106756. Epub 2020 Feb 3.

Abstract

Phylogeographic inference has provided extensive insight into the relative roles of geographical isolation and ecological processes during evolutionary radiations. However, the importance of cross-lineage admixture in facilitating adaptive radiations is increasingly being recognised, and suggested as a main cause of phylogenetic uncertainty. In this study, we used a double digest RADseq protocol to provide a high resolution (~4 Million bp) nuclear phylogeny of the Delphininae. Phylogenetic resolution of this group has been especially intractable, likely because it has experienced a recent species radiation. We carried out cross-lineage reticulation analyses, and tested for several sources of potential bias in determining phylogenies from genome sampling data. We assessed the divergence time and historical demography of T. truncatus and T. aduncus by sequencing the T. aduncus genome and comparing it with the T. truncatus reference genome. Our results suggest monophyly for the genus Tursiops, with the recently proposed T. australis species falling within the T. aduncus lineage. We also show the presence of extensive cross-lineage gene flow between pelagic and European coastal ecotypes of T. truncatus, as well as in the early stages of diversification between spotted (Stenella frontalis; Stenella attenuata), spinner (Stenella longirostris), striped (Stenella coeruleoalba), common (Delphinus delphis), and Fraser's (Lagenodelphis hosei) dolphins. Our study suggests that cross-lineage gene flow in this group has been more extensive and complex than previously thought. In the context of biogeography and local habitat dependence, these results improve our understanding of the evolutionary processes determining the history of this lineage.

摘要

系统发生地理学推断为进化辐射过程中地理隔离和生态过程的相对作用提供了广泛的见解。然而,跨谱系混合在促进适应性辐射中的重要性正日益得到认可,并被认为是系统发育不确定性的主要原因。在这项研究中,我们使用双酶切 RADseq 方案提供了 Delphininae 的高分辨率(~400 万 bp)核系统发育。该组的系统发育分辨率特别难以解决,可能是因为它经历了最近的物种辐射。我们进行了跨谱系网状分析,并测试了从基因组采样数据确定系统发育时的几种潜在偏差来源。我们通过测序 T. aduncus 基因组并将其与 T. truncatus 参考基因组进行比较,评估了 T. truncatus 和 T. aduncus 的分歧时间和历史人口动态。我们的结果表明,Tursiops 属是单系的,最近提出的 T. australis 物种属于 T. aduncus 谱系。我们还显示了 T. truncatus 远洋和欧洲沿海生态型之间以及斑点海豚(Stenella frontalis; Stenella attenuata)、飞旋海豚(Stenella longirostris)、条纹海豚(Stenella coeruleoalba)、普通海豚(Delphinus delphis)和弗氏海豚(Lagenodelphis hosei)之间早期分化过程中广泛的跨谱系基因流。我们的研究表明,该组的跨谱系基因流比以前想象的更为广泛和复杂。在生物地理学和局部栖息地依赖的背景下,这些结果提高了我们对决定该谱系历史的进化过程的理解。

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