首页> 外文期刊>Journal of Molecular Evolution >Copia Retrotransposon in the Zaprionus Genus: Another Case of Transposable Element Sharing with the Drosophila melanogaster Subgroup
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Copia Retrotransposon in the Zaprionus Genus: Another Case of Transposable Element Sharing with the Drosophila melanogaster Subgroup

机译:Zaprionus属中的Copia反转录转座子:与果蝇果蝇亚组可转座元素共享的另一种情况。

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摘要

Copia is a retrotransposon that appears to be distributed widely among the Drosophilidae subfamily. Evolutionary analyses of regulatory regions have indicated that the Copia retrotransposon evolved through both positive and purifying selection, and that horizontal transfer (HT) could also explain its patchy distribution of the among the subfamilies of the melanogaster subgroup. Additionally, Copia elements could also have transferred between melanogaster subgroup and other species of Drosophilidae—D. willistoni and Z. tuberculatus. In this study, we surveyed seven species of the Zaprionus genus by sequencing the LTR–ULR and reverse transcriptase regions, and by using RT–PCR in order to understand the distribution and evolutionary history of Copia in the Zaprionus genus. The Copia element was detected, and was transcriptionally active, in all species investigated. Structural and selection analysis revealed Zaprionus elements to be closely related to the most ancient subfamily of the melanogaster subgroup, and they seem to be evolving mainly under relaxed purifying selection. Taken together, these results allowed us to classify the Zaprionus sequences as a new subfamily—ZapCopia, a member of the Copia retrotransposon family of the melanogaster subgroup. These findings indicate that the Copia retrotransposon is an ancient component of the genomes of the Zaprionus species and broaden our understanding of the diversity of retrotransposons in the Zaprionus genus.
机译:Copia是一种反转录转座子,似乎在果蝇亚科之间广泛分布。监管区域的进化分析表明,Copia逆转录转座子是通过阳性和纯化选择进化而来的,而水平转移(HT)也可以解释其在黑猩猩亚组之间的斑片状分布。此外,Copia元素也可能已在黑腹果蝇亚群和果蝇D的其他物种之间转移。威利托尼和马铃薯。在这项研究中,我们通过对LTR–ULR和逆转录酶区域进行测序,并使用RT–PCR来调查Zaprionus属的7种,以了解Zaprionus属中Copia的分布和进化史。在所有调查的物种中均检测到了Copia元件,并且该元件具有转录活性。结构和选择分析表明,Zaprionus元素与黑猩猩亚组中最古老的亚科密切相关,它们似乎主要在宽松的纯化选择下进化。综上所述,这些结果使我们能够将Zaprionus序列归类为一个新的亚科-ZapCopia,它是黑猩猩亚组Copia反转录转座子家族的成员。这些发现表明,科皮亚逆转录转座子是Zaprionus物种基因组的古老组成部分,并拓宽了我们对Zaprionus属逆转录转座子多样性的理解。

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