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Introgressive hybridization facilitates adaptive divergence in a recent radiation of monkeyflowers

机译:渐渗杂交促进了猴花最近辐射的适应性发散

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摘要

A primary goal in evolutionary biology is to identify the historical events that have facilitated the origin and spread of adaptations. When these adaptations also lead to reproductive isolation, we can learn about the evolutionary mechanisms contributing to speciation. We reveal the complex history of the gene MaMyb2 in shaping flower colour divergence within a recent radiation of monkeyflowers. In the Mimulus aurantiacus species complex, red-flowered M. a. ssp. puniceus and yellow-flowered M. a. ssp. australis are partially isolated because of differences in pollinator preferences. Phylogenetic analyses based on genome-wide variation across the complex suggest two origins of red flowers from a yellow-flowered ancestor: one in M. a. ssp. puniceus and one in M. a. ssp. flemingii. However, in both cases, red flowers are caused by cis-regulatory mutations in the gene MaMyb2. Although this could be due to distinct mutations in each lineage, we show that the red allele in M. a. ssp. puniceus did not evolve de novo or exist as standing variation in its yellow-flowered ancestor. Rather, our results suggest that a single red MaMyb2 allele evolved during the radiation of M. aurantiacus that was subsequently transferred to the yellow-flowered ancestor of M. a. ssp. puniceus via introgressive hybridization. Because gene flow is still possible among taxa, we conclude that introgressive hybridization can be a potent driver of adaptation at the early stages of divergence that can contribute to the origins of biodiversity.
机译:进化生物学的主要目标是确定促进适应性起源和传播的历史事件。当这些适应还导致生殖隔离时,我们可以了解导致物种形成的进化机制。我们揭示了MaMyb2基因在最近的辐射辐射中塑造花朵颜色发散的复杂历史。在Miurus aurantiacus物种复合物中,红色花朵的M. a.。 ssp。 puniceus和黄色的花朵ssp。由于授粉媒介偏好的差异,澳洲部分地被隔离了。基于整个复合体全基因组变异的系统进化分析表明,黄色花朵祖先的红色花朵有两个起源:一个来自麻省理工学院。 ssp。 puniceus和一个。 ssp。 flemingii。但是,在两种情况下,红色花朵都是由基因MaMyb2中的顺式调控突变引起的。虽然这可能是由于每个谱系中不同的突变所致,但我们证明了M. a。中的红色等位基因。 ssp。 puniceus并没有从头进化,也没有作为黄色花朵祖先的站立变异而存在。相反,我们的结果表明在 M的辐射过程中演化出一个红色的MaMyb2等位基因。后来被转移到 M的黄色祖先。 ssp。 puniceus 通过渐渗杂交。由于在类群之间仍然可能存在基因流动,因此我们得出结论,在杂种的早期阶段,渐渗杂交可能是适应的强大驱动力,这可能有助于生物多样性的起源。

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