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Intron Length Evolution in Drosophila

机译:果蝇中内含子长度的演变

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I present data on the evolution of intron lengths among 3 closely related Drosophila species, D. melanogaster, Drosophila simulans, and Drosophila yakuba. Using D. yakuba as an outgroup, I mapped insertion and deletion mutations in 148 introns (spanning ∼30 kb) to the D. melanogaster and D. simulans lineages. Intron length evolution in the 2 sister species has been different: in D. melanogaster, X-linked introns have increased slightly in size, whereas autosomal ones have decreased slightly in size; in D. simulans, both X-linked and autosomal introns have decreased in size. To understand the possible evolutionary causes of these lineage- and chromosome-specific patterns of intron evolution, I studied insertion–deletion (indel) polymorphism and divergence in D. melanogaster. Small insertion mutations segregate at elevated frequencies and enjoy elevated probabilities of fixation, particularly on the X chromosome. In contrast, there is no detectable X chromosome effect on fixations in D. simulans. These findings suggest X chromosome—specific selection or biased gene conversion—gap repair favoring insertions in D. melanogaster but not in D. simulans. These chromosome- and lineage-specific patterns of indel substitution are not easily explained by existing general population genetic models of intron length evolution. Genomic data from D. melanogaster further suggest that the forces described here affect introns and intergenic regions similarly.
机译:我介绍了3个紧密相关的果蝇物种,黑腹果蝇,果蝇模拟和果蝇yakuba中内含子长度演变的数据。我使用雅库巴D. yakuba作为外群,将148个内含子(跨度约30 kb)中的插入和缺失突变映射到了D. melanogaster和D. simulans世系。这两个姐妹物种的内含子长度进化是不同的:在黑腹果蝇中,X连锁内含子的大小略有增加,而常染色体的内含子的大小略有减少。在D. simulans中,X连锁内含子和常染色体内含子的大小均减小。为了了解这些内含子进化的谱系和染色体特定模式的可能的进化原因,我研究了D. melanogaster的插入-缺失(indel)多态性和差异。小插入突变以升高的频率分离,并享有更高的固定概率,尤其是在X染色体上。相比之下,在D. simulans中没有可检测到的X染色体作用。这些发现表明,X染色体的特异性选择或有偏向的基因转换的缺口修复有利于黑腹果蝇中的插入,但不适用于模拟豆中的插入。现有染色体的内含子长度进化的一般群体遗传模型不容易解释这些染色体和谱系特异性的插入/缺失替换模式。来自D. melanogaster的基因组数据进一步表明,此处描述的作用力同样影响内含子和基因间区域。

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