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Novel Population Genetics in Ciliates due to Life Cycle and Nuclear Dimorphism

机译:基于生命周期和核二态性的纤毛虫群体遗传学研究

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摘要

Our understanding of population genetics comes primarily from studies of organisms with canonical life cycles and nuclear organization, either haploid or diploid, sexual, or asexual. Although this template yields satisfactory results for the study of animals and plants, the wide variety of genomic organizations and life cycles of unicellular eukaryotes can make these organisms behave differently in response to mutation, selection, and drift than predicted by traditional population genetic models. In this study, we show how each of these unique features of ciliates affects their evolutionary parameters in mutation–selection, selection–drift, and mutation–selection–drift situations. In general, ciliates are less efficient in eliminating deleterious mutations—these mutations linger longer and at higher frequencies in ciliate populations than in sexual populations—and more efficient in selecting beneficial mutations. Approaching this problem via analytical techniques and simulation allows us to make specific predictions about the nature of ciliate evolution, and we discuss the implications of these results with respect to the high levels of polymorphism and high rate of protein evolution reported for ciliates.
机译:我们对群体遗传学的理解主要来自对具有典型生命周期和核组织的生物体的研究,无论是单倍体还是二倍体,有性或无性。尽管该模板为动植物的研究提供了令人满意的结果,但单细胞真核生物的基因组组织和生命周期的多样性可以使这些生物在响应突变、选择和漂移方面的行为与传统群体遗传模型预测的不同。在这项研究中,我们展示了纤毛虫的这些独特特征如何影响它们在突变-选择、选择-漂移和突变-选择-漂移情况下的进化参数。一般来说,纤毛虫在消除有害突变方面的效率较低——这些突变在纤毛虫种群中的持续时间更长,频率更高——并且在选择有益突变方面更有效。通过分析技术和模拟来解决这个问题,使我们能够对纤毛虫进化的本质做出具体的预测,并讨论了这些结果对纤毛虫报告的高水平多态性和高蛋白质进化率的影响。

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