Xiong T-L, Xiao J-H, Li Y-X, Bian S-N, Huang D-W
Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing, 100101, China.
University of Chinese Academy of Sciences, Beijing, 100039, China.
Insect Mol Biol. 2015 Oct;24(5):503-16. doi: 10.1111/imb.12167. Epub 2015 Jun 16.
Ty1-copia retrotransposons are widespread and diverse in insects. Some features of their hosts, such as mating and genetic systems, are predicted to influence the spread of selfish genetic elements like Ty1-copia. Using part of the reverse transcriptase gene as a reference, we experimentally surveyed Ty1-copia elements in eight species of fig wasps (Hymenoptera: Chalcidoidea), and performed an in silico analysis of six available genomes of chalcid wasps. Contrary to initial expectations that selfish elements such as Ty1-copia would be purged from the genomes of these species because of inbreeding and haplodiploidy, almost all of these wasps harbour an abundance of diverse Ty1-copia elements. Phylogenetic analyses suggest that the families of Ty1-copia elements found in these species have had a long association with their chalcid hosts. These results suggest an evolutionary scenario in which there was ancestral polymorphism followed by some taxa-specific events including stochastic loss and further diversification. Furthermore, estimating natural selection within the internal and terminal portions of the Ty1-copia phylogenies demonstrated that the elements are under strong evolutionary constraints for their long-term survival, but evolve like pseudogenes in the short term, accompanied by the rise and fall of parasitic elements in the history of wasp lineage.
Ty1 - copia逆转座子在昆虫中广泛存在且种类多样。预计其宿主的一些特征,如交配和遗传系统,会影响像Ty1 - copia这样的自私遗传元件的传播。我们以逆转录酶基因的一部分作为参考,对8种榕小蜂(膜翅目:小蜂总科)中的Ty1 - copia元件进行了实验性调查,并对6种可用的小蜂基因组进行了电子分析。与最初的预期相反,即由于近亲繁殖和单倍二倍体,像Ty1 - copia这样的自私元件会从这些物种的基因组中被清除,几乎所有这些黄蜂都含有大量多样的Ty1 - copia元件。系统发育分析表明,在这些物种中发现的Ty1 - copia元件家族与其小蜂宿主有着长期的关联。这些结果表明了一种进化情景,即存在祖先多态性,随后发生了一些特定类群的事件,包括随机丢失和进一步多样化。此外,对Ty1 - copia系统发育树内部和末端部分的自然选择估计表明,这些元件为了长期生存受到强烈的进化限制,但在短期内像假基因一样进化,伴随着黄蜂谱系历史中寄生元件的兴衰。