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Sex, fitness decline and recombination - Muller's ratchet vs. Ohta's ratchet

 
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Manage episode 288621280 series 2902310
内容由MultiModal LLC and Multimodal LLC提供。所有播客内容(包括剧集、图形和播客描述)均由 MultiModal LLC and Multimodal LLC 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal
Link to bioRxiv paper: http://biorxiv.org/cgi/content/short/2020.08.06.240713v1?rss=1 Authors: Ruan, Y., Wang, H., Zhang, L., Wen, H., Wu, C.-I. Abstract: It is generally accepted that the absence of recombination reduces the efficacy of natural selection for, or against, mutations. A special case is Muller's Ratchet (MR) whereby non-recombining genomes experience irreversible fitness decline due to the accumulation of deleterious mutations. MR has been a main hypothesis for sexual reproduction as well as many other biological phenomena. We now ask whether the fitness decline can indeed be stopped if an asexual population turns sexual to become recombining. The possible fitness decline under recombination is referred to as Ohta's Ratchet (OR). In comparison, MR is more effective in driving fitness reduction than OR, but only in a restricted parameter space of mutation rate, population size and selection. Outside of this space, the two ratchets are equally effective or, alternatively, neither is sufficiently powerful. Furthermore, beneficial mutations can affect the population fitness, which may diverge between the two ratchets, but only in a small parameter space. Since recombination plays a limited role in driving fitness decline, the operation of MR could be far less common in nature than believed. A companion report (see Supplement) surveying the biological phenomena attributed to MR indeed suggests the alternative explanations to be generally more compelling. Copy rights belong to original authors. Visit the link for more info
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已归档的系列专辑 ("不活跃的收取点" status)

When? This feed was archived on December 15, 2021 15:07 (2+ y ago). Last successful fetch was on March 29, 2021 12:55 (3y ago)

Why? 不活跃的收取点 status. 我们的伺服器已尝试了一段时间,但仍然无法截取有效的播客收取点

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 288621280 series 2902310
内容由MultiModal LLC and Multimodal LLC提供。所有播客内容(包括剧集、图形和播客描述)均由 MultiModal LLC and Multimodal LLC 或其播客平台合作伙伴直接上传和提供。如果您认为有人在未经您许可的情况下使用您的受版权保护的作品,您可以按照此处概述的流程进行操作https://zh.player.fm/legal
Link to bioRxiv paper: http://biorxiv.org/cgi/content/short/2020.08.06.240713v1?rss=1 Authors: Ruan, Y., Wang, H., Zhang, L., Wen, H., Wu, C.-I. Abstract: It is generally accepted that the absence of recombination reduces the efficacy of natural selection for, or against, mutations. A special case is Muller's Ratchet (MR) whereby non-recombining genomes experience irreversible fitness decline due to the accumulation of deleterious mutations. MR has been a main hypothesis for sexual reproduction as well as many other biological phenomena. We now ask whether the fitness decline can indeed be stopped if an asexual population turns sexual to become recombining. The possible fitness decline under recombination is referred to as Ohta's Ratchet (OR). In comparison, MR is more effective in driving fitness reduction than OR, but only in a restricted parameter space of mutation rate, population size and selection. Outside of this space, the two ratchets are equally effective or, alternatively, neither is sufficiently powerful. Furthermore, beneficial mutations can affect the population fitness, which may diverge between the two ratchets, but only in a small parameter space. Since recombination plays a limited role in driving fitness decline, the operation of MR could be far less common in nature than believed. A companion report (see Supplement) surveying the biological phenomena attributed to MR indeed suggests the alternative explanations to be generally more compelling. Copy rights belong to original authors. Visit the link for more info
  continue reading

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