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Identification of major quantitative trait loci underlying floral pollination syndrome divergence in Penstemon

机译:Penstemon花粉授粉综合症散布的主要数量性状基因座的鉴定

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摘要

Distinct floral pollination syndromes have emerged multiple times during the diversification of flowering plants. For example, in western North America, a hummingbird pollination syndrome has evolved more than 100 times, generally from within insect-pollinated lineages. The hummingbird syndrome is characterized by a suite of floral traits that attracts and facilitates pollen movement by hummingbirds, while at the same time discourages bee visitation. These floral traits generally include large nectar volume, red flower colour, elongated and narrow corolla tubes and reproductive organs that are exerted from the corolla. A handful of studies have examined the genetic architecture of hummingbird pollination syndrome evolution. These studies find that mutations of relatively large effect often explain increased nectar volume and transition to red flower colour. In addition, they suggest that adaptive suites of floral traits may often exhibit a high degree of genetic linkage, which could facilitate their fixation during pollination syndrome evolution. Here, we explore these emerging generalities by investigating the genetic basis of floral pollination syndrome divergence between two related Penstemon species with different pollination syndromes—bee-pollinated P. neomexicanus and closely related hummingbird-pollinated P. barbatus. In an F2 mapping population derived from a cross between these two species, we characterized the effect size of genetic loci underlying floral trait divergence associated with the transition to bird pollination, as well as correlation structure of floral trait variation. We find the effect sizes of quantitative trait loci for adaptive floral traits are in line with patterns observed in previous studies, and find strong evidence that suites of floral traits are genetically linked. This linkage may be due to genetic proximity or pleiotropic effects of single causative loci. Interestingly, our data suggest that the evolution of floral traits critical for hummingbird pollination was not constrained by negative pleiotropy at loci that show co-localization for multiple traits.
机译:在开花植物的多样化过程中,不同的花粉授粉综合症已经多次出现。例如,在北美西部,蜂鸟授粉综合症已进化超过100倍,通常是在昆虫授粉的血统内演化而成。蜂鸟综合症的特征是具有一系列花性特征,它们吸引并促进蜂鸟的花粉运动,同时又阻止蜜蜂的探访。这些花的性状通常包括大的花蜜量,红色的花色,细长的花冠管和从花冠施加的生殖器官。少数研究检查了蜂鸟授粉综合征进化的遗传结构。这些研究发现,效果相对较大的突变通常可以解释花蜜量增加和向红色花朵过渡的原因。此外,他们建议花型性状的适应性套件可能经常表现出高度的遗传连锁性,这可能有助于它们在授粉综合征进化过程中的固定。在这里,我们通过调查两种具有不同授粉综合症的蜜蜂相关物种-蜜蜂授粉的新疟原虫和密切相关的蜂鸟授粉的体育原虫之间的花授粉综合征发散的遗传基础,来探索这些新兴的共性。在源自这两个物种之间的杂交的F2作图种群中,我们表征了与向花粉授粉的过渡相关的花卉性状差异背后的遗传基因座的影响大小,以及花卉性状变异的相关结构。我们发现定量性状基因座对适应性花卉性状的影响大小与先前研究中观察到的模式一致,并且找到有力证据表明一系列花卉性状是遗传相关的。这种联系可能是由于单个致病基因座的遗传邻近性或多效性作用。有趣的是,我们的数据表明,对蜂鸟授粉至关重要的花卉性状的进化不受位点显示多性状共定位的负多效性的限制。

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