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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Gene Conversion Facilitates Adaptive Evolution on Rugged Fitness Landscapes
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Gene Conversion Facilitates Adaptive Evolution on Rugged Fitness Landscapes

机译:基因转换有助于在崎Fitness不平的健身环境中进行自适应进化

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摘要

Gene conversion is a ubiquitous phenomenon that leads to the exchange of genetic information between homologous DNA regions and maintains coevolving multi-gene families in most prokaryotic and eukaryotic organisms. In this paper, we study its implications for the evolution of a single functional gene with a silenced duplicate, using two different models of evolution on rugged fitness landscapes. Our analytical and numerical results show that, by helping to circumvent valleys of low fitness, gene conversion with a passive duplicate gene can cause a significant speedup of adaptation, which depends nontrivially on the frequency of gene conversion and the structure of the landscape. We find that stochastic effects due to finite population sizes further increase the likelihood of exploiting this evolutionary pathway. A universal feature appearing in both deterministic and stochastic analysis of our models is the existence of an optimal gene conversion rate, which maximizes the speed of adaptation. Our results reveal the potential for duplicate genes to act as a “scratch paper” that frees evolution from being limited to strictly beneficial mutations in strongly selective environments.
机译:基因转换是一种普遍存在的现象,它导致同源DNA区域之间交换遗传信息,并在大多数原核和真核生物中维持共同进化的多基因家族。在本文中,我们使用两种适用于崎fitness不平的健身景观的进化模型,研究了其对具有沉默重复序列的单个功能基因进化的影响。我们的分析和数值结果表明,通过帮助避开低适应度的山谷,被动复制基因的基因转换可以显着加快适应速度,这非凡地取决于基因转换的频率和地貌的结构。我们发现,由于种群数量有限而产生的随机效应进一步增加了利用这种进化途径的可能性。在我们的模型的确定性和随机性分析中出现的一个普遍特征是,存在最佳的基因转化率,该速率可最大程度地提高适应速度。我们的研究结果表明,重复的基因有可能充当“草稿”,从而使进化从受限于严格选择的环境中的严格限制的突变中解放出来。

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