首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Conflict between nuclear and mitochondrial DNA phylogenies of a recent species radiation: What mtDNA reveals and conceals about modes of speciation in Hawaiian crickets
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Conflict between nuclear and mitochondrial DNA phylogenies of a recent species radiation: What mtDNA reveals and conceals about modes of speciation in Hawaiian crickets

机译:最近物种辐射的核和线粒体DNA系统发育之间的冲突:mtDNA揭示和隐藏了夏威夷的物种形成方式

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摘要

It has been asserted that recent mtDNA phylogenies support the plausibility of sympatric speciation, long considered a controversial mechanism of the origin of species. If such inferences are reliable, mtDNA phylogenies should be congruent with phylogenies based on other data. In previous work, a mtDNA phylogeny suggested that diversification of the Hawaiian cricket genus Laupala was initiated by single invasions into each of several Hawaiian islands, followed by multiple sympatric divergences within each island. In contrast, a systematic hypothesis based on morphology argues that speciation in Laupala has occurred primarily in allopatry, with two independent species radiations diversifying across the archipelago. In this study, I analyze nuclear DNA (nDNA) sequences from Laupala to compare with sequences from the mtDNA. The nDNA phylogeny corroborates the hypothesis of allopatric divergence and multiple invasions, and when compared with mtDNA patterns, suggests that interspecific hybridization is a persistent feature of the history of Laupala. The discrepancy between mtDNA and nDNA phylogenies reveals that speciation histories based on mtDNA alone can be extensively misleading.
机译:有人断言,最近的mtDNA系统发育支持同伴物种形成的合理性,长期以来一直被认为是物种起源的有争议机制。如果这样的推论是可靠的,则基于其他数据,mtDNA系统发育应该与系统发育一致。在先前的工作中,mtDNA的系统发育学表明,夏威夷La属Laupala的多样化是通过一次入侵到几个夏威夷岛屿中的每个岛屿而引发的,随后在每个岛屿中出现多个同胞差异。相反,基于形态学的系统假说认为,劳帕拉的物种形成主要发生在异色学中,两个独立的物种辐射在整个群岛范围内多样化。在这项研究中,我分析了Laupala的核DNA(nDNA)序列,以与mtDNA的序列进行比较。 nDNA系统发育证实了异源异质性和多重入侵的假说,并且与mtDNA模式相比,表明种间杂交是Laupala历史的持久特征。 mtDNA和nDNA系统发育之间的差异表明,仅基于mtDNA的物种形成历史可能会产生广泛的误导。

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