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粗糙脉孢菌中重复序列诱导点突变(RIP)的特异性:非粗糙脉孢菌序列的敏感性、自然分化的串联重复以及与重复区域相邻的独特DNA。

Specificity of repeat-induced point mutation (RIP) in Neurospora: sensitivity of non-Neurospora sequences, a natural diverged tandem duplication, and unique DNA adjacent to a duplicated region.

作者信息

Foss E J, Garrett P W, Kinsey J A, Selker E U

机构信息

Institute of Molecular Biology, University of Oregon, Eugene 97403.

出版信息

Genetics. 1991 Apr;127(4):711-7. doi: 10.1093/genetics/127.4.711.

Abstract

The process designated RIP (repeat-induced point mutation) alters duplicated DNA sequences in the sexual cycle of Neurospora crassa. We tested whether non-Neurospora sequences are susceptible to RIP, explored the basis for the observed immunity to this process of a diverged tandem duplication that probably arose by a natural duplication followed by RIP (the Neurospora zeta-eta region), and investigated whether RIP extends at all into unique sequences bordering a duplicated region. Bacterial sequences of the plasmid pUC8 and of a gene conferring resistance to hygromycin B were sensitive to RIP in N. crassa when repeated in the genome. When the entire 1.6-kb zeta-eta region was duplicated, it was susceptible to RIP, but was affected by it to a lesser extent than other duplications. Only three of 62 progeny from crosses harboring unlinked duplications of the region showed evidence of changes. We attribute the low level of alterations to depletion of mutable sites. The stability of the zeta-eta region in strains having single copies of the region suggests that the 14% divergence of the tandem elements is sufficient to prevent RIP. DNA sequence analysis of unduplicated pUC8 sequences adjacent to a duplication revealed that RIP continued at least 180 bp beyond the boundary of the duplication. Three mutations occurred in the 200-bp segment of bordering sequences examined.

摘要

名为RIP(重复诱导点突变)的过程会改变粗糙脉孢菌有性生殖周期中重复的DNA序列。我们测试了非脉孢菌序列是否易受RIP影响,探究了一个可能由自然重复继之以RIP产生的分化串联重复(脉孢菌ζ-η区域)对该过程具有免疫性的基础,并研究了RIP是否会延伸至与重复区域相邻的独特序列中。质粒pUC8的细菌序列以及赋予潮霉素B抗性的一个基因在基因组中重复时,对粗糙脉孢菌中的RIP敏感。当整个1.6 kb的ζ-η区域被重复时,它易受RIP影响,但受影响程度小于其他重复序列。携带该区域不连锁重复的杂交后代中,62个后代里只有3个显示出变化的迹象。我们将这种低水平的改变归因于可变位点的耗尽。该区域具有单拷贝的菌株中ζ-η区域的稳定性表明,串联元件14%的差异足以阻止RIP。对与一个重复序列相邻的未重复pUC8序列进行的DNA序列分析表明,RIP至少在重复边界之外180 bp处继续存在。在所检测的200 bp边界序列片段中发生了三个突变。

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