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首页> 外文期刊>Mobile DNA >Transposable element evolution in Heliconius suggests genome diversity within Lepidoptera
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Transposable element evolution in Heliconius suggests genome diversity within Lepidoptera

机译:Heliconius中的转座因子进化表明鳞翅目内的基因组多样性

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Background Transposable elements (TEs) have the potential to impact genome structure, function and evolution in profound ways. In order to understand the contribution of transposable elements (TEs) to Heliconius melpomene, we queried the H. melpomene draft sequence to identify repetitive sequences. Results We determined that TEs comprise ~25% of the genome. The predominant class of TEs (~12% of the genome) was the non-long terminal repeat (non-LTR) retrotransposons, including a novel SINE family. However, this was only slightly higher than content derived from DNA transposons, which are diverse, with several families having mobilized in the recent past. Compared to the only other well-studied lepidopteran genome, Bombyx mori, H. melpomene exhibits a higher DNA transposon content and a distinct repertoire of retrotransposons. We also found that H. melpomene exhibits a high rate of TE turnover with few older elements accumulating in the genome. Conclusions Our analysis represents the first complete, de novo characterization of TE content in a butterfly genome and suggests that, while TEs are able to invade and multiply, TEs have an overall deleterious effect and/or that maintaining a small genome is advantageous. Our results also hint that analysis of additional lepidopteran genomes will reveal substantial TE diversity within the group.
机译:背景转座因子(TEs)可能以深刻的方式影响基因组的结构,功能和进化。为了了解转座因子(TEs)对Heliconius melpomene的贡献,我们查询了H. melpomene草稿序列以鉴定重复序列。结果我们确定TE占基因组的〜25%。 TEs的主要类别(约占基因组的12%)是非长末端重复序列(非LTR)逆转座子,包括一个新的SINE家族。但是,这仅比衍生自DNA转座子的含量略高,DNA转座子的多样性是多种多样的,最近有几个家庭动员起来。与唯一的经过充分研究的鳞翅目基因组Bombyx mori相比,H。melpomene具有更高的DNA转座子含量和独特的逆转录转座子库。我们还发现,H。melpomene表现出很高的TE转化率,而基因组中很少积累较老的元素。结论我们的分析代表了蝴蝶基因组中TE含量的第一个完整的从头开始表征,并表明,尽管TEs能够入侵和繁殖,但TEs具有整体有害作用和/或保持小的基因组是有利的。我们的结果还暗示,对其他鳞翅目基因组的分析将揭示该组内大量的TE多样性。

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