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R2 dynamics in Triops cancriformis (Bosc 1801) (Crustacea Branchiopoda Notostraca): turnover rate and 28S concerted evolution

机译:Triops cancriformis(Bosc1801)(甲壳纲BranchiopodaNotostraca)中的R2动力学:周转率和28S协调进化

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摘要

The R2 retrotransposon is here characterized in bisexual populations of the European crustacean Triops cancriformis. The isolated element matches well with the general aspects of the R2 family and it is highly differentiated from that of the congeneric North American Triops longicaudatus. The analysis of 5′ truncations indicates that R2 dynamics in T. cancriformis populations show a high turnover rate as observed in Drosophila simulans. For the first time in the literature, though, individuals harboring truncation variants, but lacking the complete element, are found. Present results suggest that transposition-mediated deletion mechanisms, possibly involving genomic turnover processes acting on rDNAs, can dramatically decrease the copy number or even delete R2 from the ribosomal locus. The presence of R2 does not seem to impact on the nucleotide variation of inserted 28S rDNA with respect to the uninserted genes. On the other hand, a low level of polymorphism characterizes rDNA units because new 28S variants continuously spread across the ribosomal array. Again, the interplay between transposition-mediated deletion and molecular drive may explain this pattern.
机译:R2反转录转座子的特征是欧洲甲壳类Triops cancriformis的双性恋。隔离的元素与R2家族的一般方面非常匹配,并且与同类北美洲Triops longicaudatus高度不同。 5'截短的分析表明,如在果蝇模拟动物中观察到的那样,Cancriformis种群中的R2动态显示出很高的周转率。但是,这是文献中首次发现具有截断变体但缺乏完整元素的个体。目前的结果表明,转座介导的缺失机制可能涉及作用于rDNA的基因组更新过程,可以显着降低拷贝数,甚至从核糖体位点删除R2。关于未插入的基因,R2的存在似乎不影响插入的28S rDNA的核苷酸变异。另一方面,低水平的多态性是rDNA单元的特征,因为新的28S变体连续分布在核糖体阵列中。同样,转座介导的缺失和分子驱动之间的相互作用可能解释了这种模式。

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