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The NADPH-oxidase AtrbohB plays a role in Arabidopsis seed after-ripening

机译:NADPH-氧化酶AtrbohB在成熟后的拟南芥种子中起作用

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Seeds can enter a state of dormancy, in which they do not germinate under optimal environmental conditions. Dormancy can be broken during seed after-ripening in the low-hydrated state. By screening enhancer trap lines of Arabidopsis, we identified a role for the NADPH-oxidase AtrbohB in after-ripening. Semiquantitative PCR was used to investigate AtrbohB transcripts in seeds. These methods were complemented with a pharmacological approach using the inhibitor diphenylene iodonium chloride (DPI) and biomechanical measurements in the Brassicaceae seed model system cress (Lepidium sativum) as well as protein carbonylation assays. atrbohB mutants fail to after-ripen and show reduced protein oxidation. AtrbohB pre-mRNA is alternatively spliced in seeds in a hormonally and developmentally regulated manner. AtrbohB is a major producer of superoxide in germinating Arabidopsis seeds, and inhibition of superoxide production by diphenylene iodonium (DPI) leads to a delay in Arabidopsis and cress seed germination and cress endosperm weakening. Reactive oxygen species produced by AtrbohB during after-ripening could act via abscisic acid (ABA) signalling or post-translational protein modifications. Alternative splicing could be a general mechanism in after-ripening: by altered processing of stored pre-mRNAs seeds could react quickly to environmental changes.
机译:种子可以进入休眠状态,在最佳环境条件下它们不会发芽。在低水分状态下的种子成熟后,休眠可能会中断。通过筛选拟南芥的增强子陷阱线,我们确定了NADPH氧化酶AtrbohB在后熟中的作用。半定量PCR用于研究种子中的AtrbohB转录本。这些方法辅以使用抑制剂二苯撑氯化碘鎓(DPI)的药理方法,以及在十字花科种子模型系统水芹(Lepidium sativum)中进行生物力学测量以及蛋白质羰基化分析。 atrbohB突变体未能成熟后显示出降低的蛋白质氧化。 AtrbohB pre-mRNA也可以通过激素和发育调控的方式剪接在种子上。 AtrbohB是发芽拟南芥种子中超氧化物的主要生产者,二苯撑碘鎓(DPI)抑制超氧化物产生会导致拟南芥和水芹种子发芽延迟以及水芹胚乳弱化。在成熟后,AtrbohB产生的活性氧可能通过脱落酸(ABA)信号传导或翻译后蛋白质修饰起作用。替代剪接可能是后熟的一般机制:通过改变存储的前mRNA的加工过程,种子可以对环境变化迅速做出反应。

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