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对所有剑尾鱼和孔雀鱼(鱼类:属 Xiphophorus)物种进行综合系统发育分析揭示了剑尾鱼 Xiphophorus monticolus 的杂交起源,并表明性选择的剑尾起源于该属的祖先谱系,但后来又再次丢失。

Comprehensive phylogenetic analysis of all species of swordtails and platies (Pisces: Genus Xiphophorus) uncovers a hybrid origin of a swordtail fish, Xiphophorus monticolus, and demonstrates that the sexually selected sword originated in the ancestral lineage of the genus, but was lost again secondarily.

机构信息

Lehrstuhl für Zoologie und Evolutionsbiologie, Department of Biology, University of Konstanz, Universitätsstraße 10, Konstanz 78457, Germany.

出版信息

BMC Evol Biol. 2013 Jan 29;13:25. doi: 10.1186/1471-2148-13-25.

Abstract

BACKGROUND

Males in some species of the genus Xiphophorus, small freshwater fishes from Meso-America, have an extended caudal fin, or sword - hence their common name "swordtails". Longer swords are preferred by females from both sworded and - surprisingly also, non-sworded (platyfish) species that belong to the same genus. Swordtails have been studied widely as models in research on sexual selection. Specifically, the pre-existing bias hypothesis was interpreted to best explain the observed bias of females in presumed ancestral lineages of swordless species that show a preference for assumed derived males with swords over their conspecific swordless males. However, many of the phylogenetic relationships within this genus still remained unresolved. Here we construct a comprehensive molecular phylogeny of all 26 known Xiphophorus species, including the four recently described species (X. kallmani, X. mayae, X. mixei and X. monticolus). We use two mitochondrial and six new nuclear markers in an effort to increase the understanding of the evolutionary relationships among the species in this genus. Based on the phylogeny, the evolutionary history and character state evolution of the sword was reconstructed and found to have originated in the common ancestral lineage of the genus Xiphophorus and that it was lost again secondarily.

RESULTS

We estimated the evolutionary relationships among all known species of the genus Xiphophorus based on the largest set of DNA markers so far. The phylogeny indicates that one of the newly described swordtail species, Xiphophorus monticolus, is likely to have arisen through hybridization since it is placed with the southern platyfish in the mitochondrial phylogeny, but with the southern swordtails in the nuclear phylogeny. Such discordance between these two types of markers is a strong indication for a hybrid origin. Additionally, by using a maximum likelihood approach the possession of the sexually selected sword trait is shown to be the most likely ancestral state for the genus Xiphophorus. Further, we provide a well supported estimation of the phylogenetic relationships between the previously unresolved northern swordtail groups.

CONCLUSIONS

This comprehensive molecular phylogeny of the entire genus Xiphophorus provides evidence that a second swordtail species, X. monticolus, arose through hybridization. Previously, we demonstrated that X. clemenciae, another southern swordtail species, arose via hybridization. These findings highlight the potential key role of hybridization in the evolution of this genus and suggest the need for further investigations into how hybridization contributes to speciation more generally.

摘要

背景

中美洲小型淡水鱼类剑尾鱼属的一些物种的雄性具有延长的尾鳍,也就是剑尾——这也是它们的俗名“剑尾鱼”的由来。来自有剑尾和——令人惊讶的还有,没有剑尾(盘丽鱼)的物种的雌性都更喜欢更长的剑尾,而这些物种都属于同一个属。剑尾鱼作为性选择研究的模型被广泛研究。具体来说,现有的偏见假说被解释为最好的解释,即假定无剑物种的祖先谱系中的雌性存在偏见,它们更喜欢具有剑的假定衍生雄性,而不是它们的同种无剑雄性。然而,这个属内的许多系统发育关系仍然没有得到解决。在这里,我们构建了所有 26 种已知的剑尾鱼物种的综合分子系统发育,包括最近描述的四个物种(X. kallmani、X. mayae、X. mixei 和 X. monticolus)。我们使用两种线粒体和六种新的核标记,以努力增加对该属中物种之间进化关系的理解。基于系统发育,重建了剑的进化历史和特征状态进化,发现它起源于剑尾鱼属的共同祖先谱系,并再次在第二阶段丢失。

结果

我们根据迄今为止最大的一组 DNA 标记估计了所有已知剑尾鱼物种的进化关系。系统发育表明,最近描述的剑尾鱼物种之一 Xiphophorus monticolus 可能是通过杂交产生的,因为它在线粒体系统发育中与南部盘丽鱼一起,但在核系统发育中与南部剑尾鱼一起。这两种类型的标记之间的这种不一致是杂交起源的强烈迹象。此外,通过使用最大似然法,表明性选择的剑状特征的存在最有可能是剑尾鱼属的祖先状态。此外,我们还提供了对以前未解决的北部剑尾鱼群体之间的系统发育关系的支持良好的估计。

结论

整个剑尾鱼属的综合分子系统发育为第二个剑尾鱼物种 X. monticolus 通过杂交产生提供了证据。此前,我们证明了另一种南部剑尾鱼物种 X. clemenciae 也是通过杂交产生的。这些发现强调了杂交在该属进化中的潜在关键作用,并表明需要进一步研究杂交如何更普遍地促进物种形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a60f/3585855/c82b95870ad7/1471-2148-13-25-1.jpg

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