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酿酒酵母杂合位点有害突变之间的微小适应性效应和微弱遗传相互作用。

Small fitness effects and weak genetic interactions between deleterious mutations in heterozygous loci of the yeast Saccharomyces cerevisiae.

作者信息

Szafraniec Krzysztof, Wloch Dominika M, Sliwa Piotr, Borts Rhona H, Korona Ryszard

机构信息

Institute of Environmental Sciences, Jagiellonian University, Gronostajowa 3, 30-387 Kraków, Poland.

出版信息

Genet Res. 2003 Aug;82(1):19-31. doi: 10.1017/s001667230300630x.

Abstract

Rare, random mutations were induced in budding yeast by ethyl methanesulfonate (EMS). Clones known to bear a single non-neutral mutation were used to obtain mutant heterozygotes and mutant homozygotes that were later compared with wild-type homozygotes. The average homozygous effect of mutation was an approximately 2% decrease in the growth rate. In heterozygotes, the harmful effect of these relatively mild mutations was reduced approximately fivefold. In a test of epistasis, two heterozygous mutant loci were paired at random. Fitness of the double mutants was best explained by multiplicative action of effects at single loci, with little evidence for epistasis and essentially excluding synergism. In other experiments, the same mutations in haploid and heterozygous diploid clones were compared. Regardless of the haploid phenotypes, mildly deleterious or lethal, fitness of the heterozygotes was decreased by less than half a per cent on average. In general, the results presented here suggest that most mutations tend to exhibit small and weakly interacting effects in heterozygous loci regardless of how harmful they are in haploids or homozygotes.

摘要

通过甲磺酸乙酯(EMS)在芽殖酵母中诱导产生罕见的随机突变。已知携带单个非中性突变的克隆用于获得突变杂合子和突变纯合子,随后将它们与野生型纯合子进行比较。突变的平均纯合效应是生长速率下降约2%。在杂合子中,这些相对温和突变的有害效应降低了约五倍。在一个上位性测试中,两个杂合突变位点随机配对。双突变体的适合度最好用单个位点效应的乘法作用来解释,几乎没有上位性的证据,基本排除了协同作用。在其他实验中,比较了单倍体和杂合二倍体克隆中的相同突变。无论单倍体表型是轻度有害还是致死,杂合子的适合度平均降低不到0.5%。总体而言,这里呈现的结果表明,大多数突变在杂合位点往往表现出小的且相互作用较弱的效应,无论它们在单倍体或纯合子中多么有害。

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