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果蝇中突变压力、自然选择与碱基组成的进化

Mutation pressure, natural selection, and the evolution of base composition in Drosophila.

作者信息

Akashi H, Kliman R M, Eyre-Walker A

机构信息

Section of Evolution and Ecology, University of California at Davis 95616, USA.

出版信息

Genetica. 1998;102-103(1-6):49-60.

PMID:9720271
Abstract

Genome sequencing in a number of taxa has revealed variation in nucleotide composition both among regions of the genome and among functional classes of sites in DNA. Mutational biases, biased gene conversion, and natural selection have been proposed as causes of this variation. Here, we review patterns of base composition in Drosophila DNA. Nucleotide composition in Drosophila melanogaster varys regionally, and base composition is correlated between introns and exons. Drosophila species also show striking patterns of non-random codon usage. Patterns of synonymous codon usage and the biochemistry of translation suggest that natural selection may act at 'silent' sites. A relationship between recombination rates and codon usage and comparisons of the evolutionary dynamics of silent mutations within and between species support natural selection discriminating among synonymous codons. The causes of regional base composition variation are less clear. Progress in functional studies of non-coding DNA, further investigations of genome patterns, and statistical tests based on evolutionary theory will lead to a greater understanding of the contributions of mutational processes and natural selection in patterning genome-wide nucleotide composition.

摘要

对许多分类群的基因组测序揭示了基因组区域之间以及DNA中位点功能类别之间核苷酸组成的差异。突变偏向、偏向性基因转换和自然选择被认为是造成这种差异的原因。在这里,我们回顾果蝇DNA中的碱基组成模式。黑腹果蝇的核苷酸组成存在区域差异,内含子和外显子之间的碱基组成具有相关性。果蝇物种还表现出非随机密码子使用的显著模式。同义密码子使用模式和翻译生物化学表明自然选择可能作用于“沉默”位点。重组率与密码子使用之间的关系以及物种内部和物种之间沉默突变进化动态的比较支持自然选择对同义密码子进行区分。区域碱基组成差异的原因尚不清楚。非编码DNA功能研究的进展、对基因组模式的进一步研究以及基于进化理论的统计测试将有助于更深入地理解突变过程和自然选择在全基因组核苷酸组成模式形成中的作用。

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