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首页> 外文期刊>Molecular and Biochemical Parasitology >Chromatin diminution leads to rapid evolutionary changes in the organization of the germ line genomes of the parasitic nematodes A. suum and P. univalens.
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Chromatin diminution leads to rapid evolutionary changes in the organization of the germ line genomes of the parasitic nematodes A. suum and P. univalens.

机译:染色质的减少导致寄生线虫A. suum和P. univalens的种系基因组组织的快速进化变化。

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摘要

Chromatin diminution in the parasitic nematodes Ascaris suum and Parascaris univalens represents a rather complex molecular phenomenon that includes chromosomal breakage, DNA degradation and new telomere formation. At a given elimination site, DNA breakage and new telomere addition does not take place at a single chromosomal locus but at many different places within a several kilobase long chromosomal region, referred to as chromosomal breakage region (CBR). Here we describe the cloning and the characterisation of seven CBRs from A. suum and P. univalens and we show that the process has been conserved between the two species. A detailed sequence comparison provides evidence that the sequences of the CBRs and their flanking regions are not directly important for the specification of the elimination sites. Six out of the seven CBRs are conserved between the two nematode species, suggesting that they have already existed in a common ancestor. We present a hypothesis stating that the elimination process ensures the maintenance of a functional somatic genome and concomitantly allows extremely rapid and profound changes in the germ line genome, thereby allowing the development of new germ line specific functions and thus providing a selective advantage for the chromatin eliminating nematodes during further evolution.
机译:寄生线虫Ascaris suum和Parascaris univalens中的染色质减少代表了一种相当复杂的分子现象,包括染色体断裂,DNA降解和新的端粒形成。在给定的消除位点,DNA断裂和新端粒的添加不会在单个染色体位点发生,而是在几千碱基长的染色体区域(称为染色体断裂区域(CBR))中的许多不同位置发生。在这里,我们描述了来自A. suum和P. univalens的七个CBR的克隆和特征,我们证明了这两个物种之间的这一过程是保守的。详细的序列比较提供了证据,表明CBR及其侧翼区域的序列对于消除位点的确定不是直接重要的。在两个线虫物种之间,七个CBR中有六个是保守的,这表明它们已经存在于一个共同的祖先中。我们提出了一个假设,指出消除过程确保了功能性体细胞基因组的维持,并同时允许种系基因组发生极其迅速和深刻的变化,从而允许开发新的种系特异性功能,从而为染色质提供了选择性优势在进一步进化中消除线虫。

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