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首页> 外文期刊>Plant physiology >Nitric oxide mediates the hormonal control of Crassulacean acid metabolism expression in young pineapple plants
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Nitric oxide mediates the hormonal control of Crassulacean acid metabolism expression in young pineapple plants

机译:一氧化氮介导年轻菠萝植物中Crassulacean酸代谢表达的激素控制

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摘要

Genotypic, developmental, and environmental factors converge to determine the degree of Crassulacean acid metabolism (CAM) expression. To characterize the signaling events controlling CAM expression in young pineapple (Ananas comosus) plants, this photosynthetic pathway was modulated through manipulations in water availability. Rapid, intense, and completely reversible up-regulation in CAM expression was triggered by water deficit, as indicated by the rise in nocturnal malate accumulation and in the expression and activity of important CAM enzymes. During both up - and down-regulation of CAM, the degree of CAM expression was positively and negatively correlated with the endogenous levels of abscisic acid (ABA) and cytokinins, respectively. When exogenously applied, ABA stimulated and cytokinins repressed the expression of CAM. However, inhibition of water deficit-induced ABA accumulation did not block the up-regulation of CAM, suggesting that a parallel, non-ABA-dependent signaling route was also operating. Moreover, strong evidence revealed that nitric oxide (NO) may fulfill an important role during CAM signaling. Up-regulation of CAM was clearly observed in NO-treated plants, and a conspicuous temporal and spatial correlation was also evident between NO production and CAM expression. Removal of NO from the tissues either by adding NO scavenger or by inhibiting NO production significantly impaired ABA-induced up-regulation of CAM, indicating that NO likely acts as a key downstream component in the ABA-dependent signaling pathway. Finally, tungstate or glutamine inhibition of the NO-generating enzyme nitrate reductase completely blocked NO production during ABA-induced up-regulation of CAM, characterizing this enzyme as responsible for NO synthesis during CAM signaling in pineapple plants.
机译:基因型,发育和环境因素融合在一起,确定了Crassulacean酸代谢(CAM)表达的程度。为了表征控制菠萝(Ananas comosus)年轻植物中CAM表达的信号传递事件,通过控制水的可利用性来调节这种光合途径。水分缺乏触发了CAM表达的快速,强烈和完全可逆的上调,夜间苹果酸积累的增加以及重要CAM酶的表达和活性表明了缺水。在上调和下调CAM的过程中,CAM的表达程度分别与脱落酸(ABA)和细胞分裂素的内源性水平呈正相关和负相关。外源施用时,ABA刺激而细胞分裂素抑制CAM的表达。但是,抑制水分亏缺诱导的ABA积累并不能阻止CAM的上调,这表明平行的,非ABA依赖性的信号传导途径也在起作用。此外,有力的证据表明一氧化氮(NO)可能在CAM信号传导过程中起重要作用。在NO处理过的植物中明显观察到CAM的上调,并且NO产生和CAM表达之间也存在明显的时间和空间相关性。通过添加NO清除剂或抑制NO生成从组织中去除NO会显着削弱ABA诱导的CAM上调,表明NO可能充当ABA依赖性信号传导途径中的关键下游成分。最后,钨酸或谷氨酰胺对NO产生的酶硝酸还原酶的抑制作用在ABA诱导的CAM上调过程中完全阻断了NO的产生,从而表征了该酶在菠萝植物的CAM信号传导过程中负责NO的合成。

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