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Genetic Dissection of a Major Anthocyanin QTL Contributing to Pollinator-Mediated Reproductive Isolation Between Sister Species of Mimulus

机译:主要花色苷QTL的遗传解剖有助于Pol粉姐妹姐妹物种之间的授粉媒介介导的生殖分离。

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摘要

Prezygotic barriers play a major role in the evolution of reproductive isolation, which is a prerequisite for speciation. However, despite considerable progress in identifying genes and mutations responsible for postzygotic isolation, little is known about the genetic and molecular basis underlying prezygotic barriers. The bumblebee-pollinated Mimulus lewisii and the hummingbird-pollinated M. cardinalis represent a classic example of pollinator-mediated prezygotic isolation between two sister species in sympatry. Flower color differences resulting from both carotenoid and anthocyanin pigments contribute to pollinator discrimination between the two species in nature. Through fine-scale genetic mapping, site-directed mutagenesis, and transgenic experiments, we demonstrate that a single-repeat R3 MYB repressor, ROSE INTENSITY1 (ROI1), is the causal gene underlying a major quantitative trait locus (QTL) with the largest effect on anthocyanin concentration and that cis-regulatory change rather than coding DNA mutations cause the allelic difference between M. lewisii and M. cardinalis. Together with the genomic resources and stable transgenic tools developed here, these results suggest that Mimulus is an excellent platform for studying the genetics of pollinator-mediated reproductive isolation and the molecular basis of morphological evolution at the most fundamental level—gene by gene, mutation by mutation.
机译:合子前屏障在生殖隔离的进化中起主要作用,这是形成物种的前提。然而,尽管在鉴定引起合子后分离的基因和突变方面取得了很大进展,但对合子前屏障的遗传和分子基础知之甚少。大黄蜂授粉的Mimulus lewisii和蜂鸟授粉的M. cardinalis代表了传粉媒介介导的两个姐妹物种之间的合子前分离的经典例子。类胡萝卜素和花青素色素引起的花色差异导致自然界中两个物种之间的授粉媒介区分。通过精细的基因作图,定点诱变和转基因实验,我们证明了单重复R3 MYB阻遏物ROSE INTENSITY1(ROI1)是潜在的主要定量性状基因座(QTL)的致病基因。花青素的浓度和顺式调节变化而不是编码DNA突变引起M. lewisii和M. cardinalis之间的等位基因差异。结合此处开发的基因组资源和稳定的转基因工具,这些结果表明,Mimulus是研究传粉媒介介导的生殖分离的遗传学和最基本水平(逐个基因,逐个突变)的形态演化的分子基础的绝佳平台。突变。

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