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首页> 外文期刊>Fungal Genetics and Biology >Evidence for the absence of meiotic silencing by unpaired DNA in Neurospora tetrasperma.
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Evidence for the absence of meiotic silencing by unpaired DNA in Neurospora tetrasperma.

机译:四孢子虫神经孢子中未配对DNA不会导致减数分裂沉默的证据。

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摘要

Meiotic silencing by unpaired DNA is a posttranscriptional gene silencing process in Neurospora crassa. Any gene without a homolog in the same chromosomal position during meiotic prophase generates a sequence-specific signal that prevents expression of all copies of that gene, but only during meiosis. Meiotic silencing is epigenetic and involves components of a meiosis-specific RNA silencing machinery. Although N. tetrasperma is closely related to N. crassa, its sexual biology is significantly different. N. tetrasperma was used here to evaluate both the generality of meiotic silencing within the genus and its possible evolutionary significance. A reporter gene for meiotic silencing, a histone H1-GFP fusion construct, was introgressed from N. crassa into various chromosome locations in N. tetrasperma. Whereas we did not observe meiotic silencing in four out of five introgression series, we obtained inconclusive results in the fifth series. Thus, we propose that meiotic silencing in N. tetrasperma is either absent or is substantially reduced when compared to N. crassa, possibly because the sad-1 gene (RNA-directed RNA polymerase, RdRP) is naturally unsynapsed (although "paired") and self-silenced during meiosis by structural differences between N. tetrasperma mating-type chromosomes. In N. crassa, wild-type sad-1 function is essential for meiotic silencing. Many point mutations in or deletion of sad-1 result in self-silencing of RdRP, and consequently suppression of meiotic silencing in heterozygous asci. The apparent absence or reduced meiotic silencing in N. tetrasperma raises the possibility that this form of silencing is not necessarily a major genome defense mechanism or responsible for reproductive isolation among the species of the genus Neurospora.
机译:未配对DNA的减数分裂沉默是Neurospora crassa中转录后的基因沉默过程。在减数分裂前期,在相同染色体位置上没有同源物的任何基因都会产生序列特异性信号,该信号可阻止该基因的所有拷贝表达,但仅在减数分裂期间。减数分裂沉默是表观遗传的,涉及减数分裂特异性RNA沉默机制的组成部分。尽管四精子猪笼草与猪笼草密切相关,但其性生物学差异显着。在这里,使用了四精子猪笼草来评估该属中减数分裂沉默的普遍性及其可能的进化意义。减数分裂沉默的报道基因,一种组蛋白H1-GFP融合构建体,从crassa渗入到了4s精子中的各个染色体位置。尽管我们在五个渗入系列中没有观察到减数分裂沉默,但在第五个渗入系列中我们没有得出结论性的结果。因此,我们提出,与N. crassa相比,N.tetrasperma中不存在减数分裂沉默,或实质上减少了减数分裂沉默,这可能是因为sad-1基因(RNA定向RNA聚合酶,RdRP)自然没有突触(尽管“成对”)。并在减数分裂过程中因四精子交配型染色体之间的结构差异而自我沉默。在N. crassa中,野生型sad-1功能对于减数分裂沉默至关重要。 sad-1中的许多点突变或缺失会导致RdRP自我沉默,从而抑制杂合子asci的减数分裂沉默。四精子猪中明显缺乏或减数分裂沉默增加了这种可能性,即这种沉默不一定是主要的基因组防御机制,也不是造成神经孢菌属物种间生殖分离的原因。

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