首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Comparative analysis of transposable elements in the melanogaster subgroup sequenced genomes.
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Comparative analysis of transposable elements in the melanogaster subgroup sequenced genomes.

机译:黑色素瘤亚组测序基因组中转座因子的比较分析。

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摘要

Transposable elements (TEs) are indwelling components of genomes, and their dynamics have been a driving force in genome evolution. Although we now have more information concerning their amounts and characteristics in various organisms, we still have little data from overall comparisons of their sequences in very closely-related species. While the Drosophila melanogaster genome has been extensively studied, we have only limited knowledge regarding the precise TE sequences in the genomes of the related species Drosophila simulans, Drosophila sechellia and Drosophila yakuba. In this study we analyzed the number and structure of TE copies in the sequenced genomes of these four species. Our findings show that, unexpectedly, the number of TE insertions in D. simulans is greater than that in D. melanogaster, but that most of the copies in D. simulans are degraded and in small fragments, as in D. sechellia and D. yakuba. This suggests that all three species were invaded by numerous TEs a long time ago, but have since regulated their activity, as the present TE copies are degraded, with very few full-length elements. In contrast, in D. melanogaster, a recent activation of TEs has resulted in a large number of almost-identical TE copies. We have detected variants of some TEs in D. simulans and D. sechellia, that are almost identical to the reference TE sequences in D. melanogaster, suggesting that D. melanogaster has recently been invaded by active TE variants from the other species. Our results indicate that the three species D. simulans, D. sechellia, and D. yakuba seem to be at a different stage of their TE life cycle when compared to D. melanogaster. Moreover, we show that D. melanogaster has been invaded by active TE variants for several TE families likely to come from D. simulans or the ancestor of D. simulans and D. sechellia. The numerous horizontal transfer events implied to explain these results could indicate introgression events between these species.
机译:转座因子(TEs)是基因组的内在组成部分,其动态性已成为基因组进化的驱动力。尽管我们现在掌握了有关它们在各种生物中的数量和特征的更多信息,但是从非常紧密相关的物种中对其序列进行整体比较以来,我们仍然缺乏相关数据。虽然果蝇果蝇的基因组已被广泛研究,但我们对相关物种果蝇,果蝇和黑果蝇的基因组中精确的TE序列知之甚少。在这项研究中,我们分析了这四个物种的测序基因组中TE拷贝的数量和结构。我们的发现表明,出乎意料的是,D。simulans中的TE插入数量大于D. melanogaster中的TE插入数量,但D. simulans中的大多数复制品都被降解且碎片很小,如D. sechellia和D.。雅库巴。这表明很久以前所有三个物种都被众多TE入侵,但是由于目前的TE拷贝被降解,几乎没有全长元素,因此已经调节了它们的活性。相反,在D. melanogaster中,TE的最近激活导致了大量几乎相同的TE拷贝。我们在D. simulans和D. sechellia中检测到一些TE的变体,这些变体与D. melanogaster中的参考TE序列几乎相同,这表明D. melanogaster最近已被其他物种的活动TE变体入侵。我们的结果表明,与D. melanogaster相比,D。simulans,D。sechellia和D. yakuba这三个物种似乎处于其TE生命周期的不同阶段。此外,我们表明,D。melanogaster已被活跃的TE变种入侵,有可能来自拟或拟sim和祖先D. simulans的多个TE家族。暗示解释这些结果的大量水平转移事件可能表明这些物种之间发生了渗入事件。

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