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Action of Repeat-Induced Point Mutation on Both Strands of a Duplex and on Tandem Duplications of Various Sizes in Neurospora

机译:重复诱导的点突变对双链体两股和串联重复的神经孢子菌

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摘要

In Neurospora crassa, DNA sequence duplications are detected and altered efficiently during the sexual cycle by a process known as RIP (repeat-induced point mutation). Affected sequences are subjected to multiple GC-to-AT mutations. To explore the pattern in which base changes are laid down by RIP we examined two sets of strains. First, we examined the products of a presumptive spontaneous RIP event at the mtr locus. Results of sequencing suggested that a single RIP event produces two distinct patterns of change, descended from the two strands of an affected DNA duplex. Equivalent results were obtained using an exceptional tetrad from a cross with a known duplication flanking the zeta-eta (z-h) locus. The mtr sequence data were also used to further examine the basis for the differential severity of C-to-T mutations on the coding and noncoding strands in genes. The known bias of RIP toward CpA/TpG sites in conjunction with the sequence bias of Neurospora accounts for the differential effect. Finally, we used a collection of tandem repeats (from 16 to 935 bp in length) within the mtr gene to examine the length requirement for RIP. No evidence of RIP was found with duplications shorter than 400 bp while all longer tandem duplications were frequently affected. A comparison of these results with vegetative reversion data for the same duplications is consistent with the idea that reversion of long tandem duplications and RIP share a common step.
机译:在Neurospora Crassa中,通过称为RIP(重复诱导的点突变)的过程在性循环期间检测和改变DNA序列重复。受影响的序列经受多种GC-in-in突变。探索通过RIP奠定基础变化的模式我们检查了两组菌株。首先,我们检查了MTR基因座的推定自发性RIP事件的产品。测序结果表明,单个裂纹事件产生两个不同的变化模式,从受影响的DNA双链体的两条链中降下来。使用具有来自交叉的异常的Tetrad获得等同的结果,其中具有Zeta-eta(Z-H)基因座的已知复制。 MTR序列数据还用于进一步检查基因中编码和非分量链对C对T突变的差异严重程度的基础。结合神经孢子酸的序列偏差,对CPA / TPG部位的已知偏差结合差异效应。最后,我们在MTR基因内使用了一系列串联重复(从16至935bp的长度),以检查RIP的长度要求。没有发现RIP的证据,重复比400 BP短,而串联重复经常受到影响。这些结果与相同重复的植物逆转数据的比较是与恢复长串联重复和RIP的思想共享共同步骤的想法。

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