Silliker M E, Liotta M R, Cummings D J
Department of Biological Sciences, DePaul University, 1036 West Belden Avenue, Chicago IL 60614, USA.
Curr Genet. 1996 Sep;30(4):318-24. doi: 10.1007/s002940050139.
In order to understand the transmission of mitochondrial mutations in sexual crosses of Podospora, we attempted to create compatible strains with defined mitochondrial mutations. A previously characterized mutant, Mn19, with a bipartite mitochondrial genome, served as the fertilizing parent in a cross with a mitochondrial deletion mutant, alphadelta5. Characterization of the deletion mutant is reported here. All six of the monokaryotic progeny isolated had neither parental defect but instead appeared to have inherited wild-type mitochondrial DNA. One of the progeny had a mitochondrial plasmid derived from intramolecular recombination between an 11-bp repeated mitochondrial sequence. Subsequent analysis using the polymerase chain reaction (PCR) identified rare undeleted wild-type mtDNA sequences in the maternal parent. The uniform inheritance of wild-type mitochondrial DNA suggests either an aggressive repair mechanism or else selective amplification and transmission of rare wild-type mtDNA molecules.
为了了解线粒体突变在波氏足菌有性杂交中的传递情况,我们试图构建具有特定线粒体突变的兼容菌株。一个先前已表征的具有二分体线粒体基因组的突变体Mn19,在与线粒体缺失突变体alphadelta5的杂交中作为受精亲本。本文报道了该缺失突变体的特征。分离出的所有六个单核后代均无亲本缺陷,反而似乎继承了野生型线粒体DNA。其中一个后代有一个线粒体质粒,它源自11个碱基对的重复线粒体序列之间的分子内重组。随后使用聚合酶链反应(PCR)进行的分析在母本中鉴定出罕见的未缺失野生型线粒体DNA序列。野生型线粒体DNA的一致遗传表明存在一种积极的修复机制,或者是罕见野生型线粒体DNA分子的选择性扩增和传递。