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Ribosomal DNA in the grasshopper Podisma pedestris: escape from concerted evolution.

机译:蚱PoPedema pedestris中的核糖体DNA:逃脱协调的进化。

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Eukaryote nuclear ribosomal DNA (rDNA) typically exhibits strong concerted evolution: a pattern in which several hundred rDNA sequences within any one species show little or no genetic diversity, whereas the sequences of different species diverge. We report a markedly different pattern in the genome of the grasshopper Podisma pedestris. Single individuals contain several highly divergent ribosomal DNA groups. Analysis of the magnitude of divergence indicates that these groups have coexisted in the Podisma lineage for at least 11 million years. There are two putatively functional groups, each estimated to be at least 4 million years old, and several pseudogene groups, many of which are transcribed. Southern hybridization and real-time PCR experiments show that only one of the putatively functional types occurs at high copy number. However, this group is scarcely amplified under standard PCR conditions, which means that phylogenetic inference on the basis of standard PCR would be severely distorted. The analysis suggests that concerted evolution has been remarkably ineffective in P. pedestris. We propose that this outcome may be related to the species' exceptionally large genome and the associated low rate of deletion per base pair, which may allow pseudogenes to persist.
机译:真核生物核糖体DNA(rDNA)通常表现出强烈的协同进化:一种模式,其中任一物种内的数百个rDNA序列几乎没有遗传多样性,而不同物种的序列却不同。我们报告了蚱PoPodis pedestris基因组中明显不同的模式。一个人包含几个高度不同的核糖体DNA基团。对分歧幅度的分析表明,这些群体在Podisma世系中共存了至少1100万年。有两个假定的功能组,每个功能组估计至少有400万年的历史,还有几个假基因组,其中许多是转录的。 Southern杂交和实时PCR实验表明,只有一种假定的功能类型以高拷贝数出现。但是,该组在标准PCR条件下几乎没有扩增,这意味着基于标准PCR的系统发育推断将严重失真。分析表明,一致的进化对P.pedestris无效。我们建议,这种结果可能与该物种异常大的基因组以及每个碱基对的相关低缺失率有关,这可能会使假基因持续存在。

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