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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >The a2 mating-type locus genes lga2 and rga2 direct uniparental mitochondrial DNA (mtDNA) inheritance and constrain mtDNA recombination during sexual development of Ustilago maydis.
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The a2 mating-type locus genes lga2 and rga2 direct uniparental mitochondrial DNA (mtDNA) inheritance and constrain mtDNA recombination during sexual development of Ustilago maydis.

机译:a2交配型基因基因lga2和rga2指导单亲线粒体DNA(mtDNA)遗传,并限制了UStilago性发育过程中mtDNA的重组。

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摘要

Uniparental inheritance of mitochondria dominates among sexual eukaryotes. However, little is known about the mechanisms and genetic determinants. We have investigated the role of the plant pathogen Ustilago maydis genes lga2 and rga2 in uniparental mitochondrial DNA (mtDNA) inheritance during sexual development. The lga2 and rga2 genes are specific to the a2 mating-type locus and encode small mitochondrial proteins. On the basis of identified sequence polymorphisms due to variable intron numbers in mitochondrial genotypes, we could demonstrate that lga2 and rga2 decisively influence mtDNA inheritance in matings between a1 and a2 strains. Deletion of lga2 favored biparental inheritance and generation of recombinant mtDNA molecules in combinations in which inheritance of mtDNA of the a2 partner dominated. Conversely, deletion of rga2 resulted in predominant loss of a2-specific mtDNA and favored inheritance of the a1 mtDNA. Furthermore, expression of rga2 in the a1 partner protected the associated mtDNA from elimination. Our results indicate that Lga2 in conjunction with Rga2 directs uniparental mtDNA inheritance by mediating loss of the a1-associated mtDNA. This study shows for the first time an interplay of mitochondrial proteins in regulating uniparental mtDNA inheritance.
机译:线粒体的单亲遗传在性真核生物中占主导地位。然而,关于机制和遗传决定因素知之甚少。我们调查了性病过程中植物病原体马齿til的基因lga2和rga2在单亲线粒体DNA(mtDNA)遗传中的作用。 lga2和rga2基因对a2交配型位点具有特异性,并编码小的线粒体蛋白。基于线粒体基因型中内含子数目可变而鉴定的序列多态性,我们可以证明lga2和rga2在a1和a2菌株之间的交配中决定性地影响mtDNA遗传。 lga2的缺失有利于双亲遗传和重组mtDNA分子的组合,其中a2伴侣的mtDNA遗传占主导地位。相反,rga2的缺失导致a2特异性mtDNA的主要丢失,并有利于a1 mtDNA的遗传。此外,rga2在a1伴侣中的表达保护了相关的mtDNA免受清除。我们的结果表明,Lga2与Rga2结合通过介导与a1相关的mtDNA的丢失来指导单亲mtDNA遗传。这项研究首次显示了线粒体蛋白在调节单亲mtDNA遗传中的相互作用。

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