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Phosphatidylinositol 3-Kinase Plays a Vital Role in Regulation of Rice Seed Vigor via Altering NADPH Oxidase Activity

机译:磷脂酰肌醇3-激酶通过改变NADPH氧化酶活性在调节水稻种子活力中起重要作用

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摘要

Phosphatidylinositol 3-kinase (PI3K) has been reported to be important in normal plant growth and stress responses. In this study, it was verified that PI3K played a vital role in rice seed germination through regulating NADPH oxidase activity. Suppression of PI3K activity by inhibitors wortmannin or could abate the reactive oxygen species (ROS) formation, which resulted in disturbance to the seed germination. And then, the signal cascades that PI3K promoted the ROS liberation was also evaluated. Diphenylene iodonium (DPI), an NADPH oxidase inhibitor, suppressed most of ROS generation in rice seed germination, which suggested that NADPH oxidase was the main source of ROS in this process. Pharmacological experiment and RT-PCR demonstrated that PI3K promoted the expression of Os rboh9. Moreover, functional analysis by native PAGE and the measurement of the 2, 3-bis-(2-methoxy-4-nitro-5-sulfophenyl)-2H-tetrazo-lium-5- carboxanilide (XTT) formazan concentration both showed that PI3K promoted the activity of NADPH oxidase. Furthermore, the western blot analysis of OsRac-1 demonstrated that the translocation of Rac-1 from cytoplasm to plasma membrane, which was known as a key factor in the assembly of NADPH oxidase, was suppressed by treatment with PI3K inhibitors, resulting in the decreased activity of NADPH oxidase. Taken together, these data favored the novel conclusion that PI3K regulated NADPH oxidase activity through modulating the recruitment of Rac-1 to plasma membrane and accelerated the process of rice seed germination.
机译:据报道磷脂酰肌醇3-激酶(PI3K)在正常植物生长和胁迫反应中很重要。在这项研究中,已证实PI3K通过调节NADPH氧化酶的活性在水稻种子萌发中起着至关重要的作用。抑制剂渥曼青霉素抑制PI3K活性或可减轻活性氧(ROS)的形成,从而干扰种子的萌发。然后,还评估了PI3K促进ROS释放的信号级联。 NADPH氧化酶抑制剂联苯碘鎓(DPI)抑制了水稻种子萌发过程中大部分ROS的生成,这表明NADPH氧化酶是该过程中ROS的主要来源。药理实验和RT-PCR证实PI3K促进了Os rboh9的表达。此外,通过天然PAGE进行的功能分析和对2,3-双-(2-甲氧基-4-硝基-5-硝基苯基)-2H-四唑--5-甲酰胺的浓度的测量均显示PI3K促进了NADPH氧化酶的活性。此外,OsRac-1的蛋白质印迹分析表明,PI3K抑制剂处理可抑制Rac-1从细胞质到质膜的转运,这是NADPH氧化酶组装的关键因素,从而抑制了这种现象。 NADPH氧化酶的活性。综上所述,这些数据支持了PI3K通过调节Rac-1向质膜的募集并促进水稻种子发芽的过程来调节NADPH氧化酶活性的新结论。

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