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粗糙脉孢菌长片段重复中重复诱导点突变的发生

Occurrence of repeat induced point mutation in long segmental duplications of Neurospora.

作者信息

Perkins D D, Margolin B S, Selker E U, Haedo S D

机构信息

Department of Biological Sciences, Stanford University, California 94305-5020, USA.

出版信息

Genetics. 1997 Sep;147(1):125-36. doi: 10.1093/genetics/147.1.125.

Abstract

Previous studies of repeat induced point mutation (RIP) have typically involved gene-size duplications resulting from insertion of transforming DNA at ectopic chromosomal positions. To ascertain whether genes in larger duplications are subject to RIP, progeny were examined from crosses heterozygous for long segmental duplications obtained using insertional or quasiterminal translocations. Of 17 distinct mutations from crossing 11 different duplications, 13 mapped within the segment that was duplicated in the parent, one was closely linked, and three were unlinked. Half of the mutations in duplicated segments were at previously unknown loci. The mutations were recessive and were expressed both in haploid and in duplication progeny from Duplication x Normal, suggesting that both copies of the wild-type gene had undergone RIP. Seven transition mutations characteristic of RIP were found in 395 base pairs (bp) examined in one ro-11 allele from these crosses and three were found in approximately 750 bp of another. A single chain-terminating C to T mutation was found in 800 bp of arg-6. RIP is thus responsible. These results are consistent with the idea that the impaired fertility that is characteristic of segmental duplications is due to inactivation by RIP of genes needed for progression through the sexual cycle.

摘要

先前对重复诱导点突变(RIP)的研究通常涉及由于转化DNA插入异位染色体位置而导致的基因大小重复。为了确定较大重复中的基因是否会发生RIP,对使用插入或准末端易位获得的长片段重复杂合子杂交产生的后代进行了检查。在对11个不同重复进行杂交产生的17个不同突变中,13个定位在亲本中重复的片段内,1个紧密连锁,3个不连锁。重复片段中的突变有一半位于以前未知的位点。这些突变是隐性的,在单倍体以及来自重复×正常杂交的重复后代中均有表达,这表明野生型基因的两个拷贝都发生了RIP。在对这些杂交后代的一个ro-11等位基因检测的395个碱基对(bp)中发现了7个具有RIP特征的转换突变,在另一个约750 bp中发现了3个。在arg-6的800 bp中发现了一个单链终止的C到T突变。因此RIP是造成这种情况的原因。这些结果与以下观点一致,即片段重复所特有的生育力受损是由于RIP使性周期进展所需的基因失活所致。

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