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The Neurospora crassa Standard Oak Ridge Background Exhibits Atypically Efficient Meiotic Silencing by Unpaired DNA

机译:Neurospora crassa标准橡树岭背景通过未配对的DNA表现出非典型有效的减数分裂沉默。

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摘要

Meiotic silencing by unpaired DNA (MSUD), an RNAi-mediated gene silencing process, is efficient in crosses made in the Neurospora crassa standard Oak Ridge (OR) genetic background. However, MSUD was decidedly less efficient when the OR-derived MSUD testers were crossed with many wild-isolated strains (W), suggesting that either sequence heterozygosity in tester x W crosses suppresses MSUD, or that OR represents the MSUD-conducive extreme in the range of genetic variation in MSUD efficiency. Our results support the latter model. MSUD was less efficient in near-isogenic crosses made in the novel N. crassa B/S1 genetic background, and in N. tetrasperma strain 85. Possibly, in B/S1 and 85, additional regulatory cues, absent from OR, calibrate the MSUD response. A locus in distal chromosome 1R appears to underlie the OR vs. B/S1 difference. Repeat-induced point mutation (RIP) destroys duplicated genes by G:C to A:T mutation of duplicated DNA sequences. Chromosome segment duplications (Dps) dominantly suppress RIP, possibly by titrating out the RIP machinery. In Dp x N crosses, the Dp–borne genes cannot pair properly, hence efficient MSUD, as in OR, silences them and renders the crosses barren. We speculate that the increased productivity engendered by inefficient MSUD enables small duplications to escape RIP.
机译:不成对的DNA(MSUD)减数分裂沉默是RNAi介导的基因沉默过程,可有效地用于在Neurospora crassa标准橡树岭(OR)遗传背景中进行的杂交。但是,当OR衍生的MSUD测试仪与许多野生分离株(W)杂交时,MSUD的效率显然较低,这表明要么测试仪x W杂交的序列杂合性抑制了MSUD,要么OR代表MSUD诱导性极端。 MSUD效率的遗传变异范围。我们的结果支持后一种模型。 MSUD在新的猪笼草B / S1遗传背景和四精子猪笼草菌株85中产生的近等基因杂交中效率较低。可能在B / S1和85中,OR缺少其他调控信号,可校准MSUD响应。远端染色体1R中的一个基因座似乎是OR与B / S1差异的基础。重复诱导的点突变(RIP)通过重复DNA序列的G:C到A:T突变破坏重复的基因。染色体片段重复(Dps)可能主要通过滴定RIP机制来抑制RIP。在Dp x N杂交中,Dp携带的基因无法正确配对,因此有效的MSUD(如OR)使它们沉默并使杂交变得贫瘠。我们推测,效率低下的MSUD带来的生产率提高使小的重复可以逃脱RIP。

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