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The Arabidopsis Prohibitin Gene PHB3 Functions in Nitric Oxide–Mediated Responses and in Hydrogen Peroxide–Induced Nitric Oxide Accumulation

机译:拟南芥抑制素基因PHB3在一氧化氮介导的反应和过氧化氢诱导的一氧化氮累积中的功能

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摘要

To discover genes involved in nitric oxide (NO) metabolism, a genetic screen was employed to identify mutants defective in NO accumulation after treatment with the physiological inducer hydrogen peroxide. In wild-type Arabidopsis thaliana plants, NO levels increase eightfold in roots after H2O2 treatment for 30 min. A mutant defective in H2O2-induced NO accumulation was identified, and the corresponding mutation was mapped to the prohibitin gene PHB3, converting the highly conserved Gly-37 to an Asp in the protein's SPFH domain. This point mutant and a T-DNA insertion mutant were examined for other NO-related phenotypes. Both mutants were defective in abscisic acid–induced NO accumulation and stomatal closure and in auxin-induced lateral root formation. Both mutants were less sensitive to salt stress, showing no increase in NO accumulation and less inhibition of primary root growth in response to NaCl treatment. In addition, light-induced NO accumulation was dramatically reduced in cotyledons. We found no evidence for impaired H2O2 metabolism or signaling in the mutants as H2O2 levels and H2O2-induced gene expression were unaffected by the mutations. These findings identify a component of the NO homeostasis system in plants and expand the function of prohibitin genes to include regulation of NO accumulation and NO-mediated responses.
机译:为了发现涉及一氧化氮(NO)代谢的基因,采用了遗传筛选方法,以鉴定在用生理诱导剂过氧化氢处理后NO积累有缺陷的突变体。在野生型拟南芥植物中,H2O2处理30分钟后,根中的NO水平增加了八倍。鉴定出H2O2诱导的NO积累缺陷的突变体,并将相应的突变定位到禁止素基因PHB3,从而将高度保守的Gly-37转化为蛋白质SPFH域中的Asp。检查该点突变体和T-DNA插入突变体的其他NO相关表型。这两个突变体在脱落酸诱导的NO积累和气孔关闭以及生长素诱导的侧根形成方面均存在缺陷。两种突变体对盐胁迫的敏感性均较低,显示出对NOCl的处理,NO积累没有增加,对初级根生长的抑制作用也较小。另外,在子叶中,光诱导的NO蓄积显着减少。我们没有发现突变体中H2O2代谢或信号受损的证据,因为H2O2水平和H2O2诱导的基因表达不受突变影响。这些发现确定了植物中NO稳态系统的组成部分,并扩展了禁止素基因的功能,以包括NO积累和NO介导的反应的调节。

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