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从单一杂交起源祖先群体中快速平行的适应性辐射。

Rapid parallel adaptive radiations from a single hybridogenic ancestral population.

机构信息

Division of Aquatic Ecology & Macroevolution, Institute of Ecology and Evolution, University of Bern, Baltzerstrasse 6, CH-3012 Bern, Switzerland.

出版信息

Proc Biol Sci. 2011 Jan 7;278(1702):58-66. doi: 10.1098/rspb.2010.0925. Epub 2010 Aug 4.

Abstract

The Alpine lake whitefish (Coregonus lavaretus) species complex is a classic example of a recent radiation, associated with colonization of the Alpine lakes following the glacial retreat (less than 15 kyr BP). They have formed a unique array of endemic lake flocks, each with one to six described sympatric species differing in morphology, diet and reproductive ecology. Here, we present a genomic investigation of the relationships between and within the lake flocks. Comparing the signal between over 1000 AFLP loci and mitochondrial control region sequence data, we use phylogenetic tree-based and population genetic methods to reconstruct the phylogenetic history of the group and to delineate the principal centres of genetic diversity within the radiation. We find significant cytonuclear discordance showing that the genomically monophyletic Alpine whitefish clade arose from a hybrid swarm of at least two glacial refugial lineages. Within this radiation, we find seven extant genetic clusters centred on seven lake systems. Most interestingly, we find evidence of sympatric speciation within and parallel evolution of equivalent phenotypes among these lake systems. However, we also find the genetic signature of human-mediated gene flow and diversity loss within many lakes, highlighting the fragility of recent radiations.

摘要

阿尔卑斯湖白鲑(Coregonus lavaretus)物种复合体是近期辐射的经典范例,与冰川退缩后(不到 15 千年前)阿尔卑斯湖的殖民化有关。它们形成了一系列独特的特有湖泊群体,每个群体都有一到六种描述的同域物种,在形态、饮食和生殖生态方面存在差异。在这里,我们对湖泊群体之间和内部的关系进行了基因组研究。通过比较超过 1000 个 AFLP 基因座和线粒体控制区序列数据之间的信号,我们使用基于系统发育树和群体遗传学的方法来重建该群体的系统发育历史,并描绘辐射内主要遗传多样性中心。我们发现了明显的核质不符,表明基因组单系的阿尔卑斯湖白鲑类群是由至少两个冰川避难所谱系的杂交群产生的。在这个辐射中,我们发现了七个现存的遗传集群,以七个湖泊系统为中心。最有趣的是,我们在这些湖泊系统中发现了同域物种形成的证据,以及在这些湖中具有等效表型的平行进化。然而,我们也在许多湖泊中发现了人类介导的基因流动和多样性丧失的遗传特征,这突显了近期辐射的脆弱性。

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