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Intron phase correlations and the evolution of the intron/exon structure of genes.

机译:内含子相位相关性和基因内含子/外显子结构的进化。

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摘要

Two issues in the evolution of the intron/exon structure of genes are the role of exon shuffling and the origin of introns. Using a large data base of eukaryotic intron-containing genes, we have found that there are correlations between intron phases leading to an excess of symmetric exons and symmetric exon sets. We interpret these excesses as manifestations of exon shuffling and make a conservative estimate that at least 19% of the exons in the data base were involved in exon shuffling, suggesting an important role for exon shuffling in evolution. Furthermore, these excesses of symmetric exons appear also in those regions of eukaryotic genes that are homologous to prokaryotic genes: the ancient conserved regions. This last fact cannot be explained in terms of the insertional theory of introns but rather supports the concept that some of the introns were ancient, the exon theory of genes.
机译:基因内含子/外显子结构进化中的两个问题是外显子改组的作用和内含子的起源。使用包含真核内含子的基因的大型数据库,我们发现内含子相之间存在相关性,导致过多的对称外显子和对称外显子集。我们将这些过量解释为外显子改组的表现,并保守估计数据库中至少有19%的外显子参与外显子改组,这表明外显子改组在进化中具有重要作用。此外,这些过量的对称外显子也出现在与原核基因同源的真核基因区域中:古代的保守区域。最后一个事实不能用内含子的插入理论来解释,而是支持一些内含子很古老的概念,即基因的外显子理论。

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