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果蝇拟暗果蝇乙醇脱氢酶(Adh)区域序列长度多样性的分子群体遗传学

Molecular population genetics of sequence length diversity in the Adh region of Drosophila pseudoobscura.

作者信息

Schaeffer Stephen W

机构信息

Department of Biology, and Institute of Molecular Evolutionary Genetics, The Pennsylvania State University, University Park, PA 16802-5301, USA.

出版信息

Genet Res. 2002 Dec;80(3):163-75. doi: 10.1017/s0016672302005955.

Abstract

Positive and negative selection on indel variation may explain the correlation between intron length and recombination levels in natural populations of Drosophila. A nucleotide sequence analysis of the 3.5 kilobase sequence of the alcohol dehydrogenase (Adh) region from 139 Drosophila pseudoobscura strains and one D. miranda strain was used to determine whether positive or negative selection acts on indel variation in a gene that experiences high levels of recombination. A total of 30 deletion and 36 insertion polymorphisms were segregating within D. pseudoobscura populations and no indels were fixed between D. pseudoobscura and its two sibling species D. miranda and D. persimilis. The ratio of Tajima's D to its theoretical minimum value (D(min)) was proposed as a metric to assess the heterogeneity in D among D. pseudoobscura loci when the number of segregating sites differs among loci. The magnitude of the D/D(min) ratio was found to increase as the rate of population expansion increases, allowing one to assess which loci have an excess of rare variants due to population expansion versus purifying selection. D. pseudoobscura populations appear to have had modest increases in size accounting for some of the observed excess of rare variants. The D/D(min) ratio rejected a neutral model for deletion polymorphisms. Linkage disequilibrium among pairs of indels was greater than between pairs of segregating nucleotides. These results suggest that purifying selection removes deletion variation from intron sequences, but not insertion polymorphisms. Genome rearrangement and size-dependent intron evolution are proposed as mechanisms that limit runaway intron expansion.

摘要

对插入缺失变异的正向和负向选择可能解释了果蝇自然种群中内含子长度与重组水平之间的相关性。对139个拟暗果蝇菌株和1个米兰达果蝇菌株的醇脱氢酶(Adh)区域的3.5千碱基序列进行核苷酸序列分析,以确定正向或负向选择是否作用于经历高水平重组的基因中的插入缺失变异。在拟暗果蝇种群中共有30个缺失和36个插入多态性在分离,并且在拟暗果蝇与其两个近缘物种米兰达果蝇和佩氏果蝇之间没有固定的插入缺失。当各基因座的分离位点数量不同时,提出将 Tajima's D与其理论最小值(D(min))的比值作为评估拟暗果蝇基因座间D值异质性的指标。发现D/D(min)比值的大小随着种群扩张速率的增加而增加,这使得人们能够评估哪些基因座由于种群扩张与纯化选择而存在过量的稀有变异。拟暗果蝇种群的大小似乎有适度增加,这解释了一些观察到的稀有变异过量的现象。D/D(min)比值拒绝了缺失多态性的中性模型。插入缺失对之间的连锁不平衡大于分离核苷酸对之间的连锁不平衡。这些结果表明,纯化选择从内含子序列中去除了缺失变异,但没有去除插入多态性。基因组重排和大小依赖性内含子进化被认为是限制内含子失控扩张的机制。

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