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Adaptive radiation of Darwin's finches revisited using whole genome sequencing

机译:使用全基因组测序重新探究达尔文雀的适应性辐射

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摘要

We recently used genome sequencing to study the evolutionary history of the Darwin's finches. A prominent feature of our data was that different polymorphic sites in the genome tended to indicate different genetic relationships among these closely related species. Such patterns are expected in recently diverged genomes as a result of incomplete lineage sorting. However, we uncovered conclusive evidence that these patterns have also been influenced by interspecies hybridisation, a process that has likely played an important role in the radiation of Darwin's finches. A major discovery was that segregation of two haplotypes at the ALX1 locus underlies variation in beak shape among the Darwin's finches, and that differences between the two haplotypes in a 240 kb region in blunt and pointed beaked birds involve both coding and regulatory changes. As we review herein, the evolution of such adaptive haplotypes comprising multiple causal changes appears to be an important mechanism contributing to the evolution of biodiversity.
机译:我们最近使用基因组测序来研究达尔文雀的进化史。我们数据的一个突出特征是基因组中不同的多态性位点倾向于表明这些密切相关物种之间的不同遗传关系。由于谱系分选不完整,预计在最近分化的基因组中会出现这种模式。但是,我们发现了确凿的证据,表明这些模式也受到种间杂交的影响,这一过程可能在辐射达尔文雀科的过程中发挥了重要作用。一个主要发现是,在ALX1基因座处的两种单倍型分离是达尔文雀科之间喙形状变化的基础,而在钝角和尖头喙鸟的240 kb区域中,两种单倍型之间的差异涉及编码和调控变化。正如我们在本文中所回顾的那样,这种包含多个因果变化的适应性单倍型的进化似乎是促进生物多样性进化的重要机制。

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