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首页> 外文期刊>Journal of Molecular Evolution >Accelerated evolutionary rate may be responsible for the emergence of lineage-specific genes in Ascomycota
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Accelerated evolutionary rate may be responsible for the emergence of lineage-specific genes in Ascomycota

机译:加快的进化速度可能是导致子囊菌谱系特异性基因出现的原因

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摘要

The evolutionary origin of "orphan" genes, genes that lack sequence similarity to any known gene, remains a mystery. One suggestion has been that most orphan genes evolve rapidly so that similarity to other genes cannot be traced after a certain evolutionary distance. This can be tested by examining the divergence rates of genes with different degrees of lineage specificity. Here the lineage specificity (LS) of a gene describes the phylogenetic distribution of that gene's orthologues in related species. Highly lineage-specific genes will be distributed in fewer species in a phylogeny. In this study, we have used the complete genomes of seven ascomycotan fungi and two animals to define several levels of LS, such as Eukaryotes-core, Ascomycota-core, Euascomycetes-specific, Hemiascomycetes-specific, Aspergillus-specific, and Saccharomyces-specific. We compare the rates of gene evolution in groups of higher LS to those in groups with lower LS. Molecular evolutionary analyses indicate an increase in nonsynonymous nucleotide substitution rates in genes with higher LS. Several analyses suggest that LS is correlated with the evolutionary rate of the gene. This correlation is stronger than those of a number of other factors that have been proposed as predictors of a gene's evolutionary rate, including the expression level of genes, gene essentiality or dispensability, and the number of protein-protein interactions. The accelerated evolutionary rates of genes with higher LS may reflect the influence of selection and adaptive divergence during the emergence of orphan genes. These analyses suggest that accelerated rates of gene evolution may be responsible for the emergence of apparently orphan genes.
机译:与任何已知基因缺乏序列相似性的基因“孤儿”基因的进化起源仍然是一个谜。一种建议是大多数孤儿基因迅速进化,因此在一定的进化距离后就无法追踪与其他基因的相似性。这可以通过检查具有不同谱系特异性的基因的发散率来测试。在此,基因的谱系特异性(LS)描述了该基因的直系同源物在相关物种中的系统发育分布。高度谱系特异性基因将在系统发育中分布在较少的物种中。在这项研究中,我们已经使用了七个子囊霉菌真菌和两只动物的完整基因组来定义几种水平的LS,例如真核生物核心,子囊菌核心,Euascomycetes特异性,Hemiascomycetes特异性,Aspergillus特异性和Saccharomyces特异性。我们比较了较高LS组与较低LS组中基因进化的速率。分子进化分析表明,具有较高LS的基因的非同义核苷酸取代率增加。多项分析表明,LS与基因的进化速率相关。这种相关性比已经提出作为基因进化速率的预测因子的许多其他因素的相关性更强,这些因素包括基因的表达水平,基因必需性或可分配性以及蛋白质-蛋白质相互作用的数量。具有较高LS的基因的进化速度加快可能反映了孤儿基因出现期间选择和适应性差异的影响。这些分析表明,基因进化的加快可能是表面上孤儿基因出现的原因。

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