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Mitochondrial Dysfunction Causes Oxidative Stress and Tapetal Apoptosis in Chemical Hybridization Reagent-Induced Male Sterility in Wheat

机译:线粒体功能异常导致小麦化学杂交试剂诱导的雄性不育过程中氧化应激和绒毡层细胞凋亡

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摘要

Male sterility in plants has been strongly linked to mitochondrial dysfunction. Chemical hybridization agent (CHA)-induced male sterility is an important tool in crop heterosis. Therefore, it is important to better understand the relationship between mitochondria and CHA-induced male sterility in wheat. This study reports on the impairment of mitochondrial function duo to CHA-SQ-1, which occurs by decreasing cytochrome oxidase and adenosine triphosphate synthase protein levels and theirs activities, respiratory rate, and in turn results in the inhibition of the mitochondrial electron transport chain (ETC), excessive production of reactive oxygen species (ROS) and disruption of the alternative oxidase pathway. Subsequently, excessive ROS combined with MnSOD defects results in damage to the mitochondrial membrane, followed by ROS release into the cytoplasm. The microspores underwent severe oxidative stress during pollen development. Furthermore, chronic oxidative stress, together with the overexpression of type II metacaspase, triggered premature tapetal apoptosis, which resulted in pollen abortion. Accordingly, we propose a metabolic pathway for mitochondrial-mediated male sterility in wheat, which provides information on the molecular events underlying CHA-SQ-1-induced abortion of anthers and may serve as an additional guide to the practical application of hybrid breeding.
机译:植物中的雄性不育与线粒体功能障碍密切相关。化学杂交剂(CHA)诱导的雄性不育是作物杂种优势的重要工具。因此,重要的是更好地了解线粒体与CHA诱导的小麦雄性不育之间的关系。这项研究报道了线粒体功能对CHA-SQ-1的损害,这是通过降低细胞色素氧化酶和三磷酸腺苷合酶蛋白水平及其活性,呼吸频率而发生的,进而导致线粒体电子运输链受到抑制( ETC),活性氧(ROS)的过量产生和替代氧化酶途径的破坏。随后,过多的ROS与MnSOD缺陷相结合会导致线粒体膜受损,然后ROS释放到细胞质中。在花粉发育过程中,小孢子经历了严重的氧化应激。此外,慢性氧化应激与II型metacaspase的过表达一起引发过早的绒毡层细胞凋亡,从而导致花粉流产。因此,我们提出了小麦线粒体介导的雄性不育的代谢途径,它提供了有关CHA-SQ-1诱导的花药流产的分子事件的信息,并可能为杂种育种的实际应用提供额外的指导。

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