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Genomic islands of divergence in hybridizing Heliconius butterflies identified by large-scale targeted sequencing

机译:通过大规模靶向测序鉴定的杂交Heliconius蝴蝶的基因组差异岛

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摘要

Heliconius butterflies represent a recent radiation of species, in which wing pattern divergence has been implicated in speciation. Several loci that control wing pattern phenotypes have been mapped and two were identified through sequencing. These same gene regions play a role in adaptation across the whole Heliconius radiation. Previous studies of population genetic patterns at these regions have sequenced small amplicons. Here, we use targeted next-generation sequence capture to survey patterns of divergence across these entire regions in divergent geographical races and species of Heliconius. This technique was successful both within and between species for obtaining high coverage of almost all coding regions and sufficient coverage of non-coding regions to perform population genetic analyses. We find major peaks of elevated population differentiation between races across hybrid zones, which indicate regions under strong divergent selection. These ‘islands’ of divergence appear to be more extensive between closely related species, but there is less clear evidence for such islands between more distantly related species at two further points along the ‘speciation continuum’. We also sequence fosmid clones across these regions in different Heliconius melpomene races. We find no major structural rearrangements but many relatively large (greater than 1 kb) insertion/deletion events (including gain/loss of transposable elements) that are variable between races.
机译:Heliconius蝴蝶代表了最近的物种辐射,其中机翼模式的发散与物种形成有关。已经定位了几个控制机翼模式表型的基因座,并通过测序鉴定了两个。这些相同的基因区域在整个Heliconius辐射的适应过程中发挥着作用。对这些区域的种群遗传模式的先前研究已对小型扩增子进行了测序。在这里,我们使用有针对性的下一代序列捕获来调查整个地理区域中不同地理种族和Heliconius物种的差异模式。该技术在物种内部和物种之间都是成功的,从而获得了几乎所有编码区的高覆盖率和非编码区的足够覆盖率,以进行种群遗传分析。我们发现跨杂交区域的种族之间的人口分化升高的主要高峰,这表明处于强烈分歧选择的区域。这些“岛屿”的分化在密切相关的物种之间似乎更为广泛,但是在“物种连续体”的另外两个点上,更远距离相关的物种之间存在这样的岛屿的证据还很少。我们还在不同的Heliconius melpomene种族中跨这些区域测序了fosmid克隆。我们发现没有重大的结构重排,而是许多相对较大(大于1 kb)的插入/删除事件(包括转座因子的获得/丢失),在种族之间是可变的。

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