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刺盖鱼属多样性、杂交及进化亲缘关系的系统基因组学研究

A phylogenomic perspective on diversity, hybridization and evolutionary affinities in the stickleback genus Pungitius.

机构信息

The Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.

Center for Excellence in Animal Evolution and Genetics, Chinese Academy of Sciences, Kunming, China.

出版信息

Mol Ecol. 2019 Sep;28(17):4046-4064. doi: 10.1111/mec.15204. Epub 2019 Sep 2.

Abstract

Hybridization and convergent evolution are phenomena of broad interest in evolutionary biology, but their occurrence poses challenges for reconstructing evolutionary affinities among affected taxa. Sticklebacks in the genus Pungitius are a case in point: evolutionary relationships and taxonomic validity of different species and populations in this circumpolarly distributed species complex remain contentious due to convergent evolution of traits regarded as diagnostic in their taxonomy, and possibly also due to frequent hybridization among taxa. To clarify the evolutionary relationships among different Pungitius species and populations globally, as well as to study the prevalence and extent of introgression among recognized species, genomic data sets of both reference genome-anchored single nucleotide polymorphisms and de novo assembled RAD-tag loci were constructed with RAD-seq data. Both data sets yielded topologically identical and well-supported species trees. Incongruence between nuclear and mitochondrial DNA-based trees was found and suggested possibly frequent hybridization and mitogenome capture during the evolution of Pungitius sticklebacks. Further analyses revealed evidence for frequent nuclear genetic introgression among Pungitius species, although the estimated proportions of autosomal introgression were low. Apart from providing evidence for frequent hybridization, the results challenge earlier mitochondrial and morphology-based hypotheses regarding the number of species and their affinities in this genus: at least seven extant species can be recognized on the basis of genetic data. The results also shed new light on the biogeographical history of the Pungitius-complex, including suggestion of several trans-Arctic invasions of Europe from the Northern Pacific. The well-resolved phylogeny should facilitate the utility of this genus as a model system for future comparative evolutionary studies.

摘要

杂交和趋同进化是进化生物学中广泛关注的现象,但它们的发生给受影响类群的进化亲缘关系的重建带来了挑战。棘鱼属的棘鱼就是一个很好的例子:由于被认为是分类学上有诊断意义的特征的趋同进化,以及可能还有类群之间的频繁杂交,这个分布在极地周围的物种复合体中的不同物种和种群的进化关系和分类有效性仍然存在争议。为了阐明全球不同棘鱼物种和种群之间的进化关系,以及研究已识别物种之间的基因渗入的普遍性和程度,利用 RAD-seq 数据构建了参考基因组锚定的单核苷酸多态性和从头组装的 RAD 标记基因座的基因组数据集。这两个数据集都产生了拓扑上相同且得到很好支持的物种树。发现核 DNA 和线粒体 DNA 构建的树之间存在不一致性,这表明棘鱼的进化过程中可能存在频繁的杂交和线粒体捕获。进一步的分析显示,棘鱼物种之间存在频繁的核遗传基因渗入的证据,尽管估计的常染色体基因渗入比例较低。除了提供频繁杂交的证据外,这些结果还挑战了以前基于线粒体和形态的关于该属物种数量及其亲缘关系的假说:至少可以基于遗传数据识别出七个现存物种。研究结果还为棘鱼复合体的生物地理学历史提供了新的线索,包括从北太平洋向欧洲的几次跨北极入侵的建议。分辨率良好的系统发育树应该有助于该属作为未来比较进化研究的模型系统的应用。

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