首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The demography and population genomics of evolutionary transitions to self-fertilization in plants
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The demography and population genomics of evolutionary transitions to self-fertilization in plants

机译:植物向自我受精的进化过渡的人口统计学和种群基因组学

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The evolution of self-fertilization from outcrossing has occurred on numerous occasions in flowering plants. This shift in mating system profoundly influences the morphology, ecology, genetics and evolution of selfing lineages. As a result, there has been sustained interest in understanding the mechanisms driving the evolution of selfing and its environmental context. Recently, patterns of molecular variation have been used to make inferences about the selective mechanisms associated with mating system transitions. However, these inferences can be complicated by the action of linked selection following the transition. Here, using multilocus simulations and comparative molecular data from related selfers and outcrossers, we demonstrate that there is little evi-dence for strong bottlenecks associated with initial transitions to selfing, and our simulation results cast doubt on whether it is possible to infer the role of bottlenecks associated with reproductive assurance in the evolution of selfing. They indicate that the effects of background selection on the loss of diversity and efficacy of selection occur rapidly following the shift to high selfing. Future comparative studies that integrate explicit ecological and genomic details are necessary for quantifying the independent and joint effects of selection and demography on transitions to selfing and the loss of genetic diversity.
机译:自交配的进化自始至终发生在开花植物中。交配系统的这种变化深刻影响着自交系的形态,生态,遗传和进化。结果,人们一直对理解驱动自交及其环境环境演变的机制有持续的兴趣。最近,分子变异的模式已被用来推断与交配系统过渡有关的选择性机制。但是,转换后链接选择的作用会使这些推论变得复杂。在这里,使用多基因座模拟和相关自交者和异交者的比较分子数据,我们证明与自交的初始过渡相关的强瓶颈几乎没有证据,而且我们的模拟结果令人怀疑是否有可能推断出自交系的作用。自交进化过程中与生殖保证有关的瓶颈。他们表明,背景选择对多样性丧失和选择功效的影响在转向高自交后迅速发生。整合明确的生态学和基因组学细节的未来比较研究对于量化选择和人口统计学对自交过渡和遗传多样性丧失的独立和联合影响是必要的。

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