State Key Laboratory of Protein and Plant Gene Research, Center for Bioinformatics, School of Life Sciences, Peking University, Beijing 100871, China.
Genes (Basel). 2019 May 6;10(5):338. doi: 10.3390/genes10050338.
Transposable elements (TEs) are ubiquitous in arthropods. However, analyses of large-scale and long-term coevolution between TEs and host genomes remain scarce in arthropods. Here, we choose 14 representative species from eight orders spanning more than 500 million years of evolution. By developing an unbiased TE annotation pipeline, we obtained 87 to 2266 TE reference sequences in a species, which is a considerable improvement compared to the reference TEs previously annotated in Repbase. We find that TE loads are diversified among species and were previously underestimated. The highly species- and time-specific expansions and contractions, and intraspecific sequence diversification are the leading driver of long terminal repeat (LTR) dynamics in Lepidoptera. Terminal inverted repeats (TIRs) proliferated substantially in five species with large genomes. A phylogenetic comparison reveals that the loads of multiple TE subfamilies are positively correlated with genome sizes. We also identified a few horizontally transferred TE candidates across nine species. In addition, we set up the Arthropod Transposable Elements database (ArTEdb) to provide TE references and annotations. Collectively, our results provide high-quality TE references and uncover that TE loads and expansion histories vary greatly among arthropods, which implies that TEs are an important driving force shaping the evolution of genomes through gain and loss.
转座元件 (TEs) 在节肢动物中普遍存在。然而,在节肢动物中,关于 TEs 与宿主基因组之间的大规模和长期共同进化的分析仍然很少。在这里,我们选择了来自 8 个目、跨越超过 5 亿年进化的 14 个代表性物种。通过开发一种无偏的 TE 注释管道,我们在一个物种中获得了 87 到 2266 个 TE 参考序列,与之前在 Repbase 中注释的参考 TE 相比有了相当大的改进。我们发现 TE 负荷在物种之间是多样化的,以前被低估了。高度的物种特异性和时间特异性扩张和收缩,以及种内序列多样化,是鳞翅目长末端重复 (LTR) 动态的主要驱动因素。末端反向重复 (TIRs) 在五个基因组较大的物种中大量增殖。系统发育比较表明,多个 TE 亚家族的负荷与基因组大小呈正相关。我们还在 9 个物种中鉴定出了一些水平转移的 TE 候选者。此外,我们建立了节肢动物转座元件数据库 (ArTEdb) 来提供 TE 参考和注释。总的来说,我们的结果提供了高质量的 TE 参考,并揭示了 TE 负荷和扩张历史在节肢动物中差异很大,这意味着 TEs 通过获得和丧失是塑造基因组进化的一个重要驱动力。