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Whole genome surveys of rice, maize and sorghum reveal multiple horizontal transfers of the LTR-retrotransposon Route66 in Poaceae.

机译:水稻,玉米和高粱的全基因组调查显示,禾本科中LTR-逆转座子Route66的多个水平转移。

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摘要

Background: Horizontal transfers (HTs) refer to the transmission of genetic material between phylogenetically distant species. Although most of the cases of HTs described so far concern genes, there is increasing evidence that some involve transposable elements (TEs) in Eukaryotes. The availability of the full genome sequence of two cereal species, (i.e. rice and Sorghum), as well as the partial genome sequence of maize, provides the opportunity to carry out genome-wide searches for TE-HTs in Poaceae. Results: We have identified an LTR-retrotransposon, that we named Route66, with more than 95% sequence identity between rice and Sorghum. Using a combination of in silico and molecular approaches, we are able to present a substantial phylogenetic evidence that Route66 has been transferred horizontally between Panicoideae and several species of the genus Oryza. In addition, we show that it has remained active after these transfers. Conclusion: This study constitutes a new case of HTs for an LTR-retrotransposon and we strongly believe that this mechanism could play a major role in the life cycle of transposable elements. We therefore propose to integrate class I elements into the previous model of transposable element evolution through horizontal transfers.
机译:背景:水平转移(HTs)是指遗传物质在系统发育距离较远的物种之间的传播。尽管迄今为止描述的大多数HT病例都与基因有关,但是越来越多的证据表明,某些涉及真核生物中的转座因子(TEs)。两种谷物物种(即水稻和高粱)的全基因组序列的可用性以及玉米的部分基因组序列,为在禾本科中进行全基因组搜索TE-HTs提供了机会。结果:我们已经鉴定出一个LTR-反转录转座子,我们命名为Route66,在水稻和高粱之间具有超过95%的序列同一性。使用计算机方法和分子方法相结合,我们能够提供大量的系统发育证据,表明Route66已在Panicoideae和Oryza属的几种物种之间水平转移。此外,我们显示了这些传输后它仍然保持活动状态。结论:该研究构成了LTR-反转录转座子HT的新病例,我们坚信该机制可能在转座因子的生命周期中发挥重要作用。因此,我们建议通过水平转移将I类元素整合到转座因子进化的先前模型中。

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