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首页> 外文期刊>Molecular biology and evolution >Evolutionary dynamics of Ty1-copia group retrotransposons in grass shown by reverse transcriptase domain analysis
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Evolutionary dynamics of Ty1-copia group retrotransposons in grass shown by reverse transcriptase domain analysis

机译:逆转录酶结构域分析显示Ty1-copia组逆转座子在草中的进化动力学

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The evolutionary dynamics of Ty1-copia group retrotransposons in grass (Poaceae) species were examined by reverse transcriptase (RT) domain analysis. Twenty-three rice RT sequences were newly determined for this report. Phylogenetic analysis of 177RT sequences, mostly derived from wheat, rice and maize, showed four distinct families, which were designated G1, G2, G3 and G4. Three of these families have elements obtained from distantly related species, indicative of origins prior to the radiation of grass species. Results of Southern hybridization and detailed comparisons between the wheat and rice sequences indicated that each of the families had undergone a distinct pattern of evolution. Multiple families appear to have evolved in parallel in ahost species. Analyses of synonymous and nonsynonymous substitutions suggested that there is a low percentage of elements carrying functional RT domains in the G4 family, indicating that the production of new G4 elements has been controlled by a small number of elements carrying functional RT domains.
机译:通过逆转录酶(RT)域分析检查了Ty1-copia组逆转座子在草(禾本科)物种中的进化动力学。本报告新确定了23个水稻RT序列。对大多数来自小麦,水稻和玉米的177RT序列进行系统进化分析,显示出四个不同的科,分别命名为G1,G2,G3和G4。这些科目中的三个具有从远缘物种获取的元素,这些元素指示了在辐射草种之前的起源。 Southern杂交的结果以及小麦和水稻序列的详细比较表明,每个家族都经历了不同的进化模式。多个科目似乎在寄主物种中平行进化。对同义和非同义取代的分析表明,G4家族中携带功能性RT域的元件比例很低,这表明新G4元件的生产已受到少数携带功能性RT域的元件的控制。

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