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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Details of Retropositional Genome Dynamics That Provide a Rationale for a Generic Division: The Distinct Branching of All the Pacific Salmon and Trout (Oncorhynchus) From the Atlantic Salmon and Trout (Salmo)
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Details of Retropositional Genome Dynamics That Provide a Rationale for a Generic Division: The Distinct Branching of All the Pacific Salmon and Trout (Oncorhynchus) From the Atlantic Salmon and Trout (Salmo)

机译:逆向基因组动力学的细节为通用分类提供了理论依据:大西洋鲑鱼和鳟鱼(鲑鱼)与太平洋鲑鱼和鳟鱼(Oncorhynchus)的明显分支

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Salmonid species contain numerous short interspersed repetitive elements (SINEs), known collectively as the HpaI family, in their genomes. Amplification and successive integration of individual SINEs into the genomes have occurred during the evolution of salmonids. We reported previously a strategy for determining the phylogenetic relationships among the Pacific salmonids in which these SINEs were used as temporal landmarks of evolution. Here, we provide evidence for extensive genomic rearrangements that involved retropositions and deletions in a common ancestor of all the Pacific salmon and trout. Our results provide genetic support for the recent phylogenetic reassignment of steelhead and related species from the genus Salmo to the genus Oncorhynchus. Several other informative loci identified by insertions of HpaI SINEs have been isolated, and previously proposed branching orders of the Oncorhynchus species have been confirmed. The authenticity of our phylogenetic tree is supported both by the isolation of more than two informative loci per branching point and by the congruence of all our data, which suggest that the period between succesive speciations was sufficiently long for each SINE that had been amplified in the original species to become fixed in all individuals of that species.
机译:鲑鱼物种在其基因组中包含许多短短的重复性元件(SINE),统称为HpaI家族。鲑鱼进化过程中发生了单个SINE的扩增和后续整合。我们以前报道过一种确定太平洋鲑科鱼类之间系统发育关系的策略,其中这些SINE被用作进化的时间标志。在这里,我们为广泛的基因组重排提供了证据,这些重排涉及所有太平洋鲑鱼和鳟鱼的共同祖先中的重新定位和缺失。我们的研究结果为刚从头目Salmo到Oncorhynchus的硬头和相关物种的系统发育重新分配提供了遗传学支持。已分离出通过插入HpaI SINEs鉴定出的其他几个信息位点,并且已经确认了先前提出的Oncorhynchus物种的分支顺序。每个分支点隔离两个以上的信息位点以及我们所有数据的一致性,都支持了我们的系统进化树的真实性,这表明成功物种形成之间的时间间隔对于每个在SINE中扩增的SINE足够长。原始物种固定在该物种的所有个体中。

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