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RNA Silencing Gene Truncation in the Filamentous Fungus Aspergillus nidulans

机译:丝状真菌构巢曲霉中的RNA沉默基因截断。

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The genus Aspergillus is ideally suited for the investigation of RNA silencing evolution because it includes species that have experienced a variety of RNA silencing gene changes. Our work on this subject begins here with the model species Aspergillus nidulans. Filamentous ascomycete fungi generally each encode two of the core RNA silencing proteins, Dicer and Argonaute, but A. nidulans appears to have lost one of each to gene truncation events. Although a role in growth, development, or RNA silencing was not detected for the truncated genes, they do produce spliced and poly(A)-tailed transcripts, suggesting that they may have an undetermined biological function. Population analysis demonstrates that the truncated genes are fixed at the species level and that their full-length orthologs in a closely related species are also unstable. With these gene truncation events, A. nidulans encodes only a single intact Dicer and Argonaute. Their deletion results in morphologically and reproductively normal strains that are incapable of experimental RNA silencing. Thus, our results suggest that the remaining A. nidulans RNA silencing genes have a “nonhousekeeping” function, such as defense against viruses and transposons.
机译:曲霉属(empergillus)非常适合研究RNA沉默进化,因为它包括经历了各种RNA沉默基因变化的物种。我们在此主题上的工作始于模型物种 nidulans 。丝状子囊真菌通常每个编码两种核心RNA沉默蛋白,Dicer和Argonaute,但它们是A。 nidulans 似乎因基因截短事件而失去了一种。尽管未检测到截短基因在生长,发育或RNA沉默中的作用,但它们确实会产生剪接的和poly(A)尾部的转录本,表明它们可能具有不确定的生物学功能。群体分析表明,截短的基因固定在物种水平上,并且它们在紧密相关物种中的全长直向同源物也不稳定。通过这些基因截断事件, A。 nidulans 仅编码完整的Dicer和Argonaute。它们的缺失导致不能进行实验性RNA沉默的形态学和生殖正常菌株。因此,我们的结果表明剩余的 A。 nidulans RNA沉默基因具有“非内务处理”功能,例如防御病毒和转座子。

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