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新的相同突变体簇以及隐性有害突变的命运。

Clusters of new identical mutants and the fate of underdominant mutations.

作者信息

Huai H, Woodruff R C

机构信息

Department of Biological Sciences, Bowling Green State University, OH 43403, USA.

出版信息

Genetica. 1998;102-103(1-6):489-505.

PMID:9766962
Abstract

Given favorable environmental and demographic conditions, premeiotic clusters of identical mutations can produce a broad distribution of the initial frequency of underdominant alleles. Because of these clusters, new underdominant mutations may not necessarily be as rare in a population as previously assumed. The fixation of underdominant mutations, especially those with low heterozygous fitness, is increased when mutations appear in a cluster due to a genetic change that occurred before germline differentiation. Most restrictions on the fixation of underdominant mutations in a single population, such as strong genetic drift, weak selection against mutant heterozygotes, isolated population structure, inbreeding, meiotic drive, and selection in favor of mutant homozygotes can be relaxed or even dropped. Instead, the fate of strong underdominant mutations is determined mainly by ecological and genetic factors that affect the cluster size distribution of new premeiotic mutations. Accumulation of reproductive isolation by the fixation of underdominant mutations becomes more feasible with clusters, and mutation is not always the weakest force during this evolutionary process. The large mean and variance of reproductive success in many multicellular species make it possible that even underdominant mutations with very low heterozygous fitness could contribute substantially to reproductive isolation.

摘要

在有利的环境和人口统计学条件下,相同突变的减数分裂前簇可产生显性不足等位基因初始频率的广泛分布。由于这些簇的存在,新的显性不足突变在种群中不一定像以前假设的那样罕见。当突变由于种系分化前发生的基因变化而以簇的形式出现时,显性不足突变尤其是那些杂合适应性低的突变的固定会增加。单一群体中对显性不足突变固定的大多数限制,如强烈的遗传漂变、对突变杂合子的弱选择、隔离的种群结构、近亲繁殖、减数分裂驱动以及对突变纯合子的选择等,都可以放宽甚至消除。相反,强烈的显性不足突变的命运主要由影响新的减数分裂前突变簇大小分布的生态和遗传因素决定。通过显性不足突变的固定来积累生殖隔离在有簇的情况下变得更可行,并且在这个进化过程中突变并不总是最薄弱的力量。许多多细胞物种中生殖成功的大均值和方差使得即使是杂合适应性非常低的显性不足突变也可能对生殖隔离有很大贡献。

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