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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Nuclear restorer-of-fertility Mutation Disrupts Accumulation of Mitochondrial ATP Synthase Subunit α in Developing Pollen of S Male-Sterile Maize
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A Nuclear restorer-of-fertility Mutation Disrupts Accumulation of Mitochondrial ATP Synthase Subunit α in Developing Pollen of S Male-Sterile Maize

机译:核恢复性突变破坏了线粒体ATP合酶亚基α在发育雄性无菌玉米花粉中的积累

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Mitochondrial biogenesis and function depend upon the interaction of mitochondrial and nuclear genomes. Forward genetic analysis of mitochondrial function presents a challenge in organisms that are obligated to respire. In the S-cytoplasmic male sterility (CMS-S) system of maize, expression of mitochondrial open reading frames ( orf355 - orf77 ) conditions collapse of developing haploid pollen. Nuclear restorer-of-fertility mutations that circumvent pollen collapse are often homozygous lethal. These spontaneous mutations potentially result from disruption of nuclear genes required for mitochondrial gene expression, in contrast to homozygous-viable restorer-of-fertility alleles that function to block or compensate for the expression of mitochondrial CMS genes. Consistent with this hypothesis, the homozygous-lethal restoring allele historically designated RfIII was shown to be recessive in diploid pollen produced by tetraploid CMS-S plants. Accordingly, the symbol for this allele has been changed to r estorer-of- f ertility l ethal 1 ( rfl1 ). In haploid rfl1 pollen, orf355-orf77 transcripts and mitochondrial transcripts encoding the α-subunit of the ATP synthase (ATPA) were decreased in abundance. Haploid rfl1 pollen failed to accumulate wild-type levels of ATPA protein, indicating that functional requirements for mitochondrial protein accumulation are relaxed in maize pollen. The CMS-S system and rfl mutations therefore allow for the selection of nuclear mutations disrupting mitochondrial biogenesis in a multicellular eukaryote.
机译:线粒体生物发生和功能取决于线粒体和核基因组的相互作用。线粒体功能的前瞻性遗传分析呈现有义务呼吸的生物体挑战。在S-细胞质雄性不育(CMS-S)体系的玉米系统中,线粒体开放阅读框的表达(ORF355 - ORF77)条件塌陷显影单倍体花粉。核恢复 - 脾脏花粉塌陷的生育突变通常是纯合的致死。这些自发性突变可能因线粒体基因表达所需的核基因而导致,与纯合的恢复剂 - 育种的生育等位基因相反,该生育等位基因造成抗体或补偿线粒体CMS基因的表达的生育等位基因。与这种假说一致,历史指定的RFIII的纯合致死恢复等位基因显示在通过四倍体CMS-S植物产生的二倍体花粉中的隐性。因此,该等位基因的符号已被改变为r estorer-f的r est-of ustlet1(Rfl1)。在Haploid RFL1花粉中,在丰度下降低了编码ATP合酶(ATPA)的α-亚基的ORF355-ORF77转录物和线粒体转录物。单倍体RFL1花粉未能积累野生型ATPA蛋白水平,表明在玉米花粉中放松了线粒体蛋白质积累的功能性要求。因此,CMS-S系统和RFL突变允许在多细胞真核生物中选择破坏线粒体生物的核突变。

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