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利用ddRAD SNPs评估物种系统发育:鲑科茴鱼属(Thymallus)的细胞核与细胞质不一致性及基因渗入

Evaluating a species phylogeny using ddRAD SNPs: Cyto-nuclear discordance and introgression in the salmonid genus Thymallus (Salmonidae).

作者信息

Secci-Petretto Giulia, Englmaier Gernot K, Weiss Steven J, Antonov Alexander, Persat Henri, Denys Gael P J, Schenekar Tamara, Romanov Vladimir I, Taylor Eric B, Froufe Elsa

机构信息

CIIMAR/CIMAR, Interdisciplinary Centre of Marine and Environmental Research, University of Porto, Terminal de Cruzeiros do Porto de Leixões, Avenida General Norton de Matos, S/N, 4450-208 Matosinhos, Portugal; Department of Biology, Faculty of Sciences, U. Porto - University of Porto, Portugal.

University of Graz, Institute of Biology, Universitätsplatz 2, 8010 Graz, Austria.

出版信息

Mol Phylogenet Evol. 2023 Jan;178:107654. doi: 10.1016/j.ympev.2022.107654. Epub 2022 Nov 3.

Abstract

Hybridization and introgression are very common among freshwater fishes due to the dynamic nature of hydrological landscapes. Cyclic patterns of allopatry and secondary contact provide numerous opportunities for interspecific gene flow, which can lead to discordant paths of evolution for mitochondrial and nuclear genomes. Here, we used double digest restriction-site associated DNA sequencing (ddRADseq) to obtain a genome-wide single nucleotide polymorphism (SNP) dataset comprehensive for allThymallus (Salmonidae)species to infer phylogenetic relationships and evaluate potential recent and historical gene flow among species. The newly obtained nuclear phylogeny was largely concordant with a previously published mitogenome-based topology but revealed a few cyto-nuclear discordances. These incongruencies primarily involved the placement of internal nodes rather than the resolution of species, except for one European species where anthropogenic stock transfers are thought to be responsible for the observed pattern. The analysis of four contact zones where multiple species are found revealed a few cases of mitochondrial capture and limited signals of nuclear introgression. Interestingly, the mechanisms restricting interspecific gene flow might be distinct; while in zones of secondary contact, small-scale physical habitat separation appeared as a limiting factor, biologically based reinforcement mechanisms are presumed to be operative in areas where species presumably evolved in sympatry. Signals of historical introgression were largely congruent with the routes of species dispersal previously inferred from mitogenome data. Overall, the ddRADseq dataset provided a robust phylogenetic reconstruction of the genus Thymallus including new insights into historical hybridization and introgression, opening up new questions concerning their evolutionary history.

摘要

由于水文景观的动态特性,杂交和基因渗入在淡水鱼类中非常普遍。异域分布和二次接触的循环模式为种间基因流动提供了众多机会,这可能导致线粒体和核基因组的进化路径不一致。在此,我们使用双酶切限制性位点关联DNA测序(ddRADseq)来获得一个涵盖所有茴鱼属(鲑科)物种的全基因组单核苷酸多态性(SNP)数据集,以推断系统发育关系,并评估物种间近期和历史上潜在的基因流动。新获得的核系统发育在很大程度上与先前发表的基于线粒体基因组的拓扑结构一致,但揭示了一些细胞核与细胞质之间的不一致。这些不一致主要涉及内部节点的位置,而非物种的解析,除了一个欧洲物种,其观察到的模式被认为是人为种群转移所致。对发现多个物种的四个接触区的分析揭示了一些线粒体捕获的案例以及有限的核基因渗入信号。有趣的是,限制种间基因流动的机制可能不同;在二次接触区,小规模的物理栖息地隔离似乎是一个限制因素,而基于生物学的强化机制据推测在物种可能同域进化的区域起作用。历史基因渗入的信号在很大程度上与先前从线粒体基因组数据推断出的物种扩散路线一致。总体而言,ddRADseq数据集为茴鱼属提供了一个可靠的系统发育重建,包括对历史杂交和基因渗入的新见解,开启了有关其进化历史的新问题。

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