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首页> 外文期刊>Plant molecular biology reporter >A CMS-Related Gene, Psi atp6-2, Causes Increased ATP Hydrolysis Activity of the Mitochondrial F1Fo-ATP Synthase and Induces Male Sterility in Pepper (Capsicum annuum L.)
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A CMS-Related Gene, Psi atp6-2, Causes Increased ATP Hydrolysis Activity of the Mitochondrial F1Fo-ATP Synthase and Induces Male Sterility in Pepper (Capsicum annuum L.)

机译:CMS相关基因,Psi atp6-2,导致线粒体F1Fo-ATP合酶的ATP水解活性增加,并诱导辣椒(辣椒)的雄性不育。

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摘要

Pollen formation is a complex process that is strictly controlled by genetic factors. Although many novel mitochondrial genes have been implicated in the dysfunction of mitochondrial enzymes and the cytoplasmic male sterility (CMS), there is little empirical evidence to show that CMS-related genes actually result in the dysfunction of enzyme and little is known about the regulatory mechanisms of the aberrant mitochondrial enzymes in male sterility in CMS lines. Here, we report the characterization of a novel mitochondrial gene, Psi atp6-2, which is hypothesized to play a role in male sterility in pepper. Using virus-induced gene silencing (VIGS), we observed that silencing the atp6-2 gene in the maintainer line resulted in an increase in ATP hydrolysis activity of the mitochondrial F1Fo-ATP synthase along with pollen abortion, while silencing the truncated Psi atp6-2 gene in the CMS line resulted in an inhibition of ATP hydrolysis activity and restoration of fertility. Altered ATP hydrolysis also affected the tolerance of the gene-silenced plants to abiotic stresses. Localization experiments showed that premature ATP hydrolysis occurred at the tetrad stage of pollen development in the CMS line, but no ATPase activity was observed in the microspores at the later stage. These results suggest that the Psi atp6-2 gene causes the alteration in ATP hydrolysis activity of the mitochondrial F1Fo-ATP synthase during pollen development, which eventually leads to male sterility in pepper
机译:花粉的形成是一个复杂的过程,受到遗传因素的严格控制。尽管许多新的线粒体基因与线粒体酶功能障碍和细胞质雄性不育(CMS)有关,但很少有经验证据表明CMS相关基因实际上会导致酶功能障碍,对调节机制的了解还很少系中雄性不育中异常线粒体酶的表达在这里,我们报道了一个新的线粒体基因Psi atp6-2的表征,该基因被认为在辣椒的雄性不育中发挥作用。使用病毒诱导的基因沉默(VIGS),我们观察到沉默维持谱系中的atp6-2基因导致线粒体F1Fo-ATP合酶的ATP水解活性增加,同时花粉流产,同时使截短的Psi atp6-沉默。 CMS系中的2个基因导致ATP水解活性的抑制和繁殖力的恢复。 ATP水解的改变也影响了基因沉默植物对非生物胁迫的耐受性。定位实验表明,CMS系在花粉发育的第四个阶段发生过早的ATP水解,但在后期的小孢子中未观察到ATPase活性。这些结果表明,Psi atp6-2基因导致花粉发育过程中线粒体F1Fo-ATP合酶的ATP水解活性改变,最终导致辣椒中的雄性不育。

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