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首页> 外文期刊>Journal of Experimental Botany >Nicotinateicotinamide mononucleotide adenyltransferase-mediated regulation of NAD biosynthesis protects guard cells from reactive oxygen species in ABA-mediated stomatal movement in Arabidopsis
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Nicotinateicotinamide mononucleotide adenyltransferase-mediated regulation of NAD biosynthesis protects guard cells from reactive oxygen species in ABA-mediated stomatal movement in Arabidopsis

机译:烟酸/烟酰胺单核苷酸腺苷酸转移酶介导的NAD生物合成调控可保护保卫细胞免受ABA介导的拟南芥气孔运动中活性氧的影响

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摘要

Nicotinamide adenine dinucleotide (NAD) and its derivative nicotinamide adenine dinucleotide phosphate (NADP) are indispensable co-factors in broad-spectrum metabolic events for the maintenance of cellular homeostasis in all living organisms. In this study, the cellular expression levels of NAD biosynthesis genes in Arabidopsis were investigated. A very high expression of nicotinateicotinamide mononucleotide adenyltransferase (NMNAT) was observed in the differentiated stomatal guard cells of the leaf surface. Transcriptional analysis confirmed that several genes in the biosynthesis pathway were also highly expressed in stomatal guard cells. In fact, NAD and NADP metabolisms were investigated during stomatal movement. Importantly, the generation of phytohormone ABA-induced reactive oxygen species, which acts as a signal for stomatal closure, was accompanied by markedly decreased levels of NAD. The ABA-induced oxidative stress caused stomatal cell death in the nmnat mutant. Furthermore, stomata partially lost their ability to close leading to drought susceptibility. The stomata were less responsive to opening cues as well. These results indicate that NAD biosynthesis is involved in protecting guard cells from ABA-induced local oxidative stress via the regulation of NMNAT activity. In this study, it is demonstrated that NMNAT is essential for the maintenance of NAD homeostasis enabling sustainable stomatal movement.
机译:烟酰胺腺嘌呤二核苷酸(NAD)及其衍生物烟酰胺腺嘌呤二核苷酸磷酸(NADP)是在广谱代谢事件中维持所有活生物体细胞稳态所必不可少的辅助因素。在这项研究中,调查了拟南芥中NAD生物合成基因的细胞表达水平。在叶表面分化的气孔保卫细胞中观察到烟酸/烟酰胺单核苷酸腺苷酸转移酶(NMNAT)的高表达。转录分析证实,生物合成途径中的几个基因也在气孔保卫细胞中高表达。实际上,在气孔运动期间已研究了NAD和NADP代谢。重要的是,植物激素ABA诱导的活性氧物种的产生,这是气孔关闭的信号,同时伴随着NAD水平的显着降低。 ABA诱导的氧化应激在nmnat突变体中导致气孔细胞死亡。此外,气孔部分失去了关闭的能力,导致干旱敏感性。气孔对打开线索的反应也较弱。这些结果表明,NAD的生物合成通过调控NMNAT活性参与保护保卫细胞免受ABA诱导的局部氧化应激。在这项研究中,证明了NMNAT对于维持NAD稳态以实现可持续的气孔运动至关重要。

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