首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Retroposons of salmonoid fishes (Actinopterygii: Salmonoidei) and their evolution.
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Retroposons of salmonoid fishes (Actinopterygii: Salmonoidei) and their evolution.

机译:鲑类鱼类的回捕(Actinopterygii:Salmonoidei)及其进化。

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摘要

Short and long retroposons, or non-LTR retrotransposons (SINEs and LINEs, respectively) are two groups of interspersed repetitive elements amplifying in the genome via RNA and cDNA-mediated reverse transcription. In this process, SINEs entirely depend on the enzymatic machinery of autonomous LINEs. The impact of retroposons on the host genome is difficult to overestimate: their sequences account for significant portion of the eukaryotic genome, while propagation of their active copies gradually reshapes it. In this way, the retropositional activity plays a role of important evolutionary factor. More than 100 LINE and nearly 100 SINE families have been described to date from the genomes of various eukaryotes, and it is salmonoid fishes (Actinopterygii: Salmonoidei) that are particularly noticeable for the diversity of transposons they host in their genomes, including two LINE and seven SINE families. Moreover, this group of ray-finned fish represents an excellent opportunity to study such a rare evolutionary phenomenon as lateral gene transfer, due to a great variety of transposons and other sequences salmons share with a blood fluke, Schistosoma japonicum (Trematoda: Strigeiformes)--a parasitic helminth infecting various vertebrates. The aim of the present review is to structure all knowledge accumulated about salmonoid retroposons by now, as well as to complement it with the new data pertaining to the distribution of some SINE families.
机译:短期和长期逆转录子或非LTR逆转座子(分别为SINE和LINE)是两组散布的重复元件,它们通过RNA和cDNA介导的逆转录在基因组中扩增。在此过程中,SINE完全依赖自主LINE的酶促机制。逆转录子对宿主基因组的影响很难高估:它们的序列占真核生物基因组的重要部分,而其活性拷贝的繁殖逐渐使其重塑。这样,后置活动就起着重要的进化因子的作用。迄今为止,已经从各种真核生物的基因组中描述了100多个LINE和近100个SINE家族,尤其是鲑鱼(Actinopterygii:Salmonoidei),因为它们在基因组中携带的转座子的多样性特别引人注目,包括两个LINE和七个SINE家庭。此外,由于有大量转座子和鲑鱼与血吸虫日本血吸虫(Trematoda:Strigeiformes)共享多种转座子和其他序列,这组射线鳍鱼代表了极好的机会来研究诸如侧向基因转移等罕见的进化现象。 -感染各种脊椎动物的寄生虫蠕虫。本综述的目的是构建到目前为止积累的有关鲑鱼类逆转录病毒的所有知识,并用与一些SINE家族分布有关的新数据进行补充。

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