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首页> 外文期刊>Nucleic Acids Research >siRNA-dependent and -independent post-transcriptional cosuppression of the LTR-retrotransposon MAGGY in the phytopathogenic fungus Magnaporthe oryzae
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siRNA-dependent and -independent post-transcriptional cosuppression of the LTR-retrotransposon MAGGY in the phytopathogenic fungus Magnaporthe oryzae

机译:稻瘟病菌稻瘟病菌中LTR-反转录转座子MAGGY的siRNA依赖性和非转录后共抑制

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摘要

The LTR-retrotransposon MAGGY was introduced into naive genomes of Magnaporthe oryzae with different genetic backgrounds (wild-type, and MoDcl1 [mdl1] and MoDcl2 [mdl2] dicer mutants). The MoDcl2 mutants deficient in MAGGY siRNA biogenesis generally showed greater MAGGY mRNA accumulation and more rapid increase in MAGGY copy number than did the wild-type and MoDcl1 mutants exhibiting normal MAGGY siRNA accumulation, indicating that RNA silencing functioned as an effective defense against the invading element. Interestingly, however, regardless of genetic background, the rate of MAGGY transposition drastically decreased as its copy number in the genome increased. Notably, in the MoDcl2 mutant, copy-number-dependent MAGGY suppression occurred without a reduction in its mRNA accumulation, and therefore by a silencing mechanism distinct from both transcriptional gene silencing and siRNA-mediated RNA silencing. This might imply that some mechanism possibly similar to post-transcriptional cosuppression of Ty1 retrotransposition in Saccharomyces cerevisiae, which operates regardless of the abundance of target transcript and independent of RNA silencing, would also function in M. oryzae that possesses the RNA silencing machinery.
机译:LTR逆转座子MAGGY被引入到具有不同遗传背景(野生型和MoDcl1 [mdl1]和MoDcl2 [mdl2]切丁酶突变体)的稻瘟病菌幼稚基因组中。与野生型和MoDcl1突变体表现出正常的MAGGY siRNA积累相比,缺乏MAGGY siRNA生物发生的MoDcl2突变体通常显示出更大的MAGGY mRNA积累和MAGGY拷贝数更快的增加,这表明RNA沉默可以有效地防御入侵元素。然而,有趣的是,无论遗传背景如何,MAGGY转座的速率都随着其在基因组中拷贝数的增加而急剧下降。值得注意的是,在MoDcl2突变体中,拷贝数依赖性的MAGGY抑制在不减少其mRNA积累的情况下发生,因此通过不同于转录基因沉默和siRNA介导的RNA沉默的沉默机制发生。这可能意味着某种机制可能与酿酒酵母中Ty1逆转录的转录后共抑制相似,该机制无论靶转录物的丰度如何均独立于RNA沉默而起作用,在拥有RNA沉默机制的米曲霉中也起作用。

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