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对植物雄性功能基因的选择鉴定了黄花吊钟柳生殖隔离的候选基因。

Selection on plant male function genes identifies candidates for reproductive isolation of yellow monkeyflowers.

机构信息

Department of Genome Sciences, University of Washington, Seattle, Washington, United States of America.

出版信息

PLoS Genet. 2013;9(12):e1003965. doi: 10.1371/journal.pgen.1003965. Epub 2013 Dec 5.

Abstract

Understanding the genetic basis of reproductive isolation promises insight into speciation and the origins of biological diversity. While progress has been made in identifying genes underlying barriers to reproduction that function after fertilization (post-zygotic isolation), we know much less about earlier acting pre-zygotic barriers. Of particular interest are barriers involved in mating and fertilization that can evolve extremely rapidly under sexual selection, suggesting they may play a prominent role in the initial stages of reproductive isolation. A significant challenge to the field of speciation genetics is developing new approaches for identification of candidate genes underlying these barriers, particularly among non-traditional model systems. We employ powerful proteomic and genomic strategies to study the genetic basis of conspecific pollen precedence, an important component of pre-zygotic reproductive isolation among yellow monkeyflowers (Mimulus spp.) resulting from male pollen competition. We use isotopic labeling in combination with shotgun proteomics to identify more than 2,000 male function (pollen tube) proteins within maternal reproductive structures (styles) of M. guttatus flowers where pollen competition occurs. We then sequence array-captured pollen tube exomes from a large outcrossing population of M. guttatus, and identify those genes with evidence of selective sweeps or balancing selection consistent with their role in pollen competition. We also test for evidence of positive selection on these genes more broadly across yellow monkeyflowers, because a signal of adaptive divergence is a common feature of genes causing reproductive isolation. Together the molecular evolution studies identify 159 pollen tube proteins that are candidate genes for conspecific pollen precedence. Our work demonstrates how powerful proteomic and genomic tools can be readily adapted to non-traditional model systems, allowing for genome-wide screens towards the goal of identifying the molecular basis of genetically complex traits.

摘要

理解生殖隔离的遗传基础有望深入了解物种形成和生物多样性的起源。虽然在识别导致受精后(合子后隔离)繁殖障碍的基因方面已经取得了进展,但我们对更早起作用的合子前障碍知之甚少。特别有趣的是涉及交配和受精的障碍,这些障碍可以在性选择下极其迅速地进化,这表明它们可能在生殖隔离的初始阶段发挥重要作用。物种形成遗传学领域的一个重大挑战是开发用于鉴定这些障碍的候选基因的新方法,特别是在非传统模式系统中。我们采用强大的蛋白质组学和基因组学策略来研究同种花粉优先的遗传基础,这是黄猴子花(Mimulus spp.)合子前生殖隔离的重要组成部分,是由于雄性花粉竞争所致。我们使用同位素标记与 shotgun 蛋白质组学相结合,在发生花粉竞争的 M. guttatus 花朵的母体生殖结构(花柱)中鉴定出超过 2000 种雄性功能(花粉管)蛋白。然后,我们从 M. guttatus 的一个大型异交种群中测序了阵列捕获的花粉管外显子组,并鉴定出那些具有选择清扫或平衡选择证据的基因,这些证据与其在花粉竞争中的作用一致。我们还更广泛地测试了这些基因的正选择证据,因为适应分化的信号是导致生殖隔离的基因的共同特征。综合分子进化研究确定了 159 种花粉管蛋白,它们是同种花粉优先的候选基因。我们的工作表明,强大的蛋白质组学和基因组学工具可以很容易地适应非传统的模式系统,从而进行全基因组筛选,以确定遗传复杂性状的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c024/3854799/0df8288dcf46/pgen.1003965.g001.jpg

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