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适应度分布的波动与 Muller 的棘轮效应的速度。

Fluctuations of fitness distributions and the rate of Muller's ratchet.

机构信息

Max-Planck Institute for Developmental Biology, 72070 Tübingen, Germany.

出版信息

Genetics. 2012 Aug;191(4):1283-93. doi: 10.1534/genetics.112.141325. Epub 2012 May 29.

Abstract

The accumulation of deleterious mutations is driven by rare fluctuations that lead to the loss of all mutation free individuals, a process known as Muller's ratchet. Even though Muller's ratchet is a paradigmatic process in population genetics, a quantitative understanding of its rate is still lacking. The difficulty lies in the nontrivial nature of fluctuations in the fitness distribution, which control the rate of extinction of the fittest genotype. We address this problem using the simple but classic model of mutation selection balance with deleterious mutations all having the same effect on fitness. We show analytically how fluctuations among the fittest individuals propagate to individuals of lower fitness and have dramatically amplified effects on the bulk of the population at a later time. If a reduction in the size of the fittest class reduces the mean fitness only after a delay, selection opposing this reduction is also delayed. This delayed restoring force speeds up Muller's ratchet. We show how the delayed response can be accounted for using a path-integral formulation of the stochastic dynamics and provide an expression for the rate of the ratchet that is accurate across a broad range of parameters.

摘要

有害突变的积累是由罕见的波动驱动的,这些波动会导致所有无突变个体的丧失,这一过程被称为 Muller 的棘轮。尽管 Muller 的棘轮是群体遗传学中的一个典型过程,但对其速率的定量理解仍然缺乏。困难在于适应度分布的波动具有非平凡的性质,它控制着最适基因型的灭绝速度。我们使用带有有害突变的突变选择平衡的简单但经典模型来解决这个问题,这些突变对适应度的影响相同。我们分析性地展示了最适个体之间的波动如何传播到适应度较低的个体,并在稍后对大部分种群产生显著放大的影响。如果最适类别的大小减少仅在延迟后降低平均适应度,那么反对这种减少的选择也会延迟。这种延迟的恢复力会加速 Muller 的棘轮。我们展示了如何使用随机动力学的路径积分公式来解释这种延迟响应,并提供了一个在广泛参数范围内准确的棘轮速率表达式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0886/3416007/fe5de049ae4f/1283fig1.jpg

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