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首页> 外文期刊>International Journal of Molecular Sciences >Reactive Oxygen Species Generated by NADPH Oxidases Promote Radicle Protrusion and Root Elongation during Rice Seed Germination
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Reactive Oxygen Species Generated by NADPH Oxidases Promote Radicle Protrusion and Root Elongation during Rice Seed Germination

机译:NADPH氧化酶产生的活性氧促进水稻种子萌发过程中根系突出和根伸长

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Seed germination is a complicated biological process that requires regulation through various enzymatic and non-enzymatic mechanisms. Although it has been recognized that reactive oxygen species (ROS) regulate radicle emergence and root elongation in a non-enzymatic manner during dicot seed germination, the role of ROS in monocot seed germination remains unknown. NADPH oxidases (NOXs) are the major ROS producers in plants; however, whether and how NOXs regulate rice seed germination through ROS generation remains unclear. Here, we report that diphenyleneiodinium (DPI), a specific NOX inhibitor, potently inhibited embryo and seedling growth—especially that of the radicle and of root elongation—in a dose-dependent manner. Notably, the DPI-mediated inhibition of radicle and root growth could be eliminated by transferring seedlings from DPI to water. Furthermore, ROS production/accumulation during rice seed germination was quantified via histochemistry. Superoxide radicals (O 2 ? ), hydrogen peroxide (H 2 O 2 ) and hydroxyl radicals ( ? OH) accumulated steadily in the coleorhiza, radicle and seedling root of germinating rice seeds. Expression profiles of the nine typical NOX genes were also investigated. According to quantitative PCR, OsNOX5 , 7 and 9 were expressed relatively higher. When seeds were incubated in water, OsNOX5 expression progressively increased in the embryo from 12 to 48 h, whereas OsNOX7 and 9 expressions increased from 12 to 24 h and decreased thereafter. As expected, DPI inhibits the expression at predetermined time points for each of these genes. Taken together, these results suggest that ROS produced by NOXs are involved in radicle and root elongation during rice seed germination, and OsNOX5 , 7 and 9 could play crucial roles in rice seed germination. These findings will facilitate further studies of the roles of ROS generated by NOXs during seed germination and seedling establishment and also provide valuable information for the regulation of NOX family gene expression in germinating seeds of monocot cereals.
机译:种子发芽是一个复杂的生物过程,需要通过各种酶和非酶机制进行调控。尽管已经认识到,在双子叶植物种子萌发过程中,活性氧(ROS)以非酶促方式调节了胚根的出苗和根的伸长,但是ROS在单子叶植物种子萌发中的作用仍然未知。 NADPH氧化酶(NOXs)是植物中主要的ROS生产者;但是,尚不清楚NOX是否以及如何通过ROS产生来调节水稻种子发芽。在这里,我们报道了一种特定的NOX抑制剂二苯撑碘鎓(DPI)以剂量依赖的方式有效地抑制了胚胎和幼苗的生长,特别是胚根和根的生长。值得注意的是,通过将幼苗从DPI转移到水中,可以消除DPI介导的对胚根和根生长的抑制。此外,通过组织化学定量水稻种子发芽过程中ROS的产生/积累。超氧自由基(O 2?),过氧化氢(H 2 O 2)和羟基自由基(?OH)稳定地积累在发芽水稻种子的油菜籽,胚根和幼苗根中。还研究了九种典型的NOX基因的表达谱。根据定量PCR,OsNOX5、7和9表达相对较高。当种子在水中孵育时,OsNOX5的表达在胚胎中从12到48小时逐渐增加,而OsNOX7和9的表达从12到24小时增加,此后减少。如预期的那样,DPI在每个这些基因的预定时间点抑制表达。综上所述,这些结果表明由NOXs产生的ROS参与了水稻种子萌发过程中的胚根和根的伸长,而OsNOX5、7和9可能在水稻种子萌发过程中起关键作用。这些发现将有助于进一步研究由NOX产生的ROS在种子发芽和幼苗建立过程中的作用,并为调节单子叶谷物发芽的NOX家族基因表达提供有价值的信息。

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