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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Sex-Induced Silencing Operates During Opposite-Sex and Unisexual Reproduction in Cryptococcus neoformans
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Sex-Induced Silencing Operates During Opposite-Sex and Unisexual Reproduction in Cryptococcus neoformans

机译:在新隐球菌的相反性和两性生殖过程中发生性诱导的沉默。

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Cryptococcus neoformans is a human fungal pathogen that undergoes a dimorphic transition from yeast to hyphae during a -α opposite-sex mating and α-α unisexual reproduction (same-sex mating). Infectious spores are generated during both processes. We previously identified a sex-induced silencing (SIS) pathway in the C. neoformans serotype A var. grubii lineage, in which tandem transgene arrays trigger RNAi-dependent gene silencing at a high frequency during a -α opposite-sex mating, but at an ~250-fold lower frequency during asexual mitotic vegetative growth. Here we report that SIS also operates during α-α unisexual reproduction. A self-fertile strain containing either SXI2 a- URA5 or NEO-URA5 transgene arrays exhibited an elevated silencing frequency during solo and unisexual mating compared with mitotic vegetative growth. We also found that SIS operates at a similar efficiency on transgene arrays of the same copy number during either α-α unisexual reproduction or a -α opposite-sex mating. URA5 -derived small RNAs were detected in the silenced progeny of α-α unisexual reproduction and RNAi core components were required, providing evidence that SIS induced by same-sex mating is also mediated by RNAi via sequence-specific small RNAs. In addition, our data show that the SIS RNAi pathway also operates to defend the genome via squelching transposon activity during same-sex mating as it does during opposite-sex mating. Taken together, our results confirm that SIS is conserved between the divergent C. neoformans serotype A and serotype D cryptic sibling species.
机译:新型隐球菌是一种人类真菌病原体,在-α异性交配和α-α单性繁殖(同性交配)过程中经历了从酵母到菌丝的双态转变。在两个过程中都会产生感染性孢子。我们先前在新孢子虫血清型A var中鉴定出性别诱导的沉默(SIS)途径。 grubii谱系,其中串联转基因阵列在-α异性交配过程中以较高的频率触发RNAi依赖性基因沉默,而在无性有丝分裂植物生长期间以低约250倍的频率触发。在这里,我们报道SIS在α-α单性生殖期间也起作用。与有丝分裂营养生长相比,含有SXI2α-URA5或NEO-URA5转基因阵列的自育菌株在单交和单性交配过程中表现出较高的沉默频率。我们还发现,在α-α单性生殖或-α异性交配期间,SIS在具有相同拷贝数的转基因阵列上以相似的效率运行。在沉默的α-α单性生殖后代中检测到URA5衍生的小RNA,需要RNAi核心成分,这提供了证据,证明由同性交配诱导的SIS也由RNAi通过序列特异性小RNA介导。此外,我们的数据表明,SIS RNAi途径也可在同性交配过程中通过抑制转座子的活性来保护基因组,就像在异性交配过程中一样。两者合计,我们的结果证实,SIS在不同的新孢梭菌血清型A和血清型D隐性同胞物种之间是保守的。

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