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Genome-wide exonic small interference RNA-mediated gene silencing regulates sexual reproduction in the homothallic fungus Fusarium graminearum

机译:全基因组的外显子小干扰RNA介导的基因沉默调节同型真菌禾谷镰刀菌的有性生殖

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Various ascomycete fungi possess sex-specific molecular mechanisms, such as repeat-induced point mutations, meiotic silencing by unpaired DNA, and unusual adenosine-to-inosine RNA editing, for genome defense or gene regulation. Using a combined analysis of functional genetics and deep sequencing of small noncoding RNA (sRNA), mRNA, and the degradome, we found that the sex-specifically induced exonic small interference RNA (ex-siRNA)-mediated RNA interference (RNAi) mechanism has an important role in fine-tuning the transcriptome during ascospore formation in the head blight fungus Fusarium graminearum. Approximately one-third of the total sRNAs were produced from the gene region, and sRNAs with an antisense direction or 5′-U were involved in post-transcriptional gene regulation by reducing the stability of the corresponding gene transcripts. Although both Dicers and Argonautes partially share their functions, the sex-specific RNAi pathway is primarily mediated by FgDicer1 and FgAgo2, while the constitutively expressed RNAi components FgDicer2 and FgAgo1 are responsible for hairpin-induced RNAi. Based on our results, we concluded that F. graminearum primarily utilizes ex-siRNA-mediated RNAi for ascosporogenesis but not for genome defenses and other developmental stages. Each fungal species appears to have evolved RNAi-based gene regulation for specific developmental stages or stress responses. This study provides new insights into the regulatory role of sRNAs in fungi and other lower eukaryotes.
机译:各种子囊真菌均具有性别特异性的分子机制,例如重复诱导的点突变,未配对DNA引起的减数分裂沉默以及不寻常的腺苷到肌苷RNA编辑,可用于基因组防御或基因调控。使用功能遗传学的组合分析和小型非编码RNA(sRNA),mRNA和降解组的深度测序,我们发现性别特异性诱导的外显子小干扰RNA(ex-siRNA)介导的RNA干扰(RNAi)机制具有在头枯萎真菌镰刀镰刀菌的子囊孢子形成过程中调节转录组中起重要作用。大约三分之一的sRNA均来自基因区域,具有反义方向或5'-U的sRNA通过降低相应基因转录本的稳定性参与转录后基因调控。尽管Dicers和Argonautes均部分共享其功能,但性别特异性RNAi途径主要由FgDicer1和FgAgo2介导,而组成型表达的RNAi成分FgDicer2和FgAgo1负责发夹诱导的RNAi。根据我们的结果,我们得出结论,禾谷镰孢主要利用前siRNA介导的RNAi进行子孢子发生,但不利用其进行基因组防御和其他发育阶段。每个真菌物种似乎已经针对特定的发育阶段或应激反应进化了基于RNAi的基因调控。这项研究为sRNA在真菌和其他低等真核生物中的调控作用提供了新见解。

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