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Review. Hybrid trait speciation and Heliconius butterflies

机译:评论。杂交性状物种和Heliconius蝴蝶

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摘要

Homoploid hybrid speciation (HHS) is the establishment of a novel species through introgressive hybridization without a change in chromosome number. We discuss different routes by which this might occur and propose a novel term, ‘hybrid trait speciation’, which combines the idea that hybridization can generate adaptive novelty with the ‘magic trait’ model of ecological speciation. Heliconius butterflies contain many putative examples of hybrid colour patterns, but only recently has the HHS hypothesis been tested explicitly in this group. Molecular data has shown evidence for gene flow between many distinct species. Furthermore, the colour pattern of Heliconius heurippa can be recreated in laboratory crosses between Heliconius melpomene and Heliconius cydno and, crucially, plays a role in assortative mating between the three species. Nonetheless, although the genome of H. heurippa shows evidence for hybridization, it is not a mosaic of the two parental species. Instead, ongoing hybridization has likely blurred any signal of the original speciation event. We argue that where hybridization leads to novel adaptive traits that also cause reproductive isolation, it is likely to trigger speciation.
机译:同倍体杂种形成(HHS)是通过渐渗杂交建立的新物种,而不改变染色体数目。我们讨论了发生这种情况的不同途径,并提出了一个新的术语“杂交性状物种形成”,该术语结合了杂交可以产生适应性新颖性的思想与生态物种形成的“魔术性状”模型。 Heliconius蝴蝶包含许多假定的混合颜色模式示例,但直到最近才在该组中明确测试了HHS假设。分子数据显示出许多不同物种之间存在基因流动的证据。此外,可在Heliconius melpomene和Heliconius cydno之间的实验室杂交中重现Heliconius heurippa的颜色模式,并且至关重要的是,在这三个物种的交配中发挥了作用。尽管如此,尽管H. heurippa的基因组显示出杂交的证据,但它不是两个亲本物种的镶嵌体。相反,正在进行的杂交可能已经模糊了原始物种形成事件的任何信号。我们认为,在杂交导致新的适应性状并导致生殖隔离的情况下,它很可能引发物种形成。

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