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首页> 外文期刊>Genetics, selection, evolution >Sequence heterogeneity and phylogenetic relationships between the copia retrotransposon in Drosophila species of the repleta and melanogaster groups
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Sequence heterogeneity and phylogenetic relationships between the copia retrotransposon in Drosophila species of the repleta and melanogaster groups

机译:腹果蝇和黑腹果蝇属中果蝇逆转录转座子之间的序列异质性和系统发育关系

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摘要

Although the retrotransposon copia has been studied in the melanogaster group of Drosophila species, very little is known about copia dynamism and evolution in other groups. We analyzed the occurrence and heterogeneity of the copia 5'LTR-ULR partial sequence and their phylogenetic relationships in 24 species of the repleta group of Drosophila. PCR showed that copia occurs in 18 out of the 24 species evaluated. Sequencing was possible in only eight species. The sequences showed a low nucleotide diversity, which suggests selective constraints maintaining this regulatory region over evolutionary time. On the contrary, the low nucleotide divergence and the phylogenetic relationships between the D. willistoni/Zaprionus tuberculatus/melanogaster species subgroup suggest horizontal transfer. Sixteen transcription factor binding sites were identified in the LTR-ULR repleta and melanogaster consensus sequences. However, these motifs are not homologous, neither according to their position in the LTR-ULR sequences, nor according to their sequences. Taken together, the low motif homologies, the phylogenetic relationship and the great nucleotide divergence between the melanogaster and repleta copia sequences reinforce the hypothesis that there are two copia families.
机译:尽管已经在果蝇的黑色素瘤组中研究了反转录转座子的卡波亚,但对其他组的卡波亚动力和进化知之甚少。我们分析了果蝇5'LTR-ULR部分序列的发生,异质性及其在24种果蝇repleta组中的系统发育关系。 PCR显示,在评估的24个物种中,有18个物种出现了鸦片。仅在八个物种中可以进行测序。该序列显示出低的核苷酸多样性,这表明在进化时间内维持该调节区的选择性限制。相反,D。willistoni / Zaprionus tuberculatus / melanogaster物种亚组之间的低核苷酸差异和系统发育关系表明水平转移。在LTR-ULR repleta和melanogaster共有序列中鉴定出16个转录因子结合位点。然而,这些基序既不是根据它们在LTR-ULR序列中的位置,也不是根据它们的序列是同源的。综合起来,低基序同源性,系统发育关系以及黑变种人和pleta copia序列之间的巨大核苷酸差异强化了存在两个copia家族的假说。

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