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The evolutionary landscape of intergenic trans-splicing events in insects

机译:昆虫基因间转拼事件的进化景观

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摘要

To explore the landscape of intergenic trans-splicing events and characterize their functions and evolutionary dynamics, we conduct a mega-data study of a phylogeny containing eight species across five orders of class Insecta, a model system spanning 400 million years of evolution. A total of 1,627 trans-splicing events involving 2,199 genes are identified, accounting for 1.58% of the total genes. Homology analysis reveals that mod(mdg4)-like trans-splicing is the only conserved event that is consistently observed in multiple species across two orders, which represents a unique case of functional diversification involving trans-splicing. Thus, evolutionarily its potential for generating proteins with novel function is not broadly utilized by insects. Furthermore, 146 non-mod trans-spliced transcripts are found to resemble canonical genes from different species. Trans-splicing preserving the function of 'breakup' genes may serve as a general mechanism for relaxing the constraints on gene structure, with profound implications for the evolution of genes and genomes.
机译:为了探索基因间转拼事件的景观并描述其功能和进化动力学,我们对系统发育的大型数据研究进行了研究,该系统包含五个昆虫纲五阶的八种物种,这是一个跨越4亿年进化的模型系统。鉴定出总共1,627个涉及2,199个基因的转拼事件,占总基因的1.58%。同源性分析表明,类似mod(mdg4)的反式剪接是唯一在两个物种的多个物种中一致观察到的保守事件,这代表了涉及反式剪接的功能多样化的独特情况。因此,从进化上说,昆虫产生具有新功能的蛋白质的潜力并未得到广泛利用。此外,发现146个非mod的反式转录本类似于来自不同物种的规范基因。保留“破坏”基因功能的反式剪接可作为放松对基因结构的限制的一般机制,对基因和基因组的进化具有深远的意义。

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