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Redox regulation of plant development

机译:氧化还原调节植物发育

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Significance: We provide a conceptual framework for the interactions between the cellular redox signaling hub and the phytohormone signaling network that controls plant growth and development to maximize plant productivity under stress-free situations, while limiting growth and altering development on exposure to stress. Recent Advances: Enhanced cellular oxidation plays a key role in the regulation of plant growth and stress responses. Oxidative signals or cycles of oxidation and reduction are crucial for the alleviation of dormancy and quiescence, activating the cell cycle and triggering genetic and epigenetic control that underpin growth and differentiation responses to changing environmental conditions. Critical Issues: The redox signaling hub interfaces directly with the phytohormone network in the synergistic control of growth and its modulation in response to environmental stress, but a few components have been identified. Accumulating evidence points to a complex interplay of phytohormone and redox controls that operate at multiple levels. For simplicity, we focus here on redox-dependent processes that control root growth and development and bud burst. Future Directions: The multiple roles of reactive oxygen species in the control of plant growth and development have been identified, but increasing emphasis should now be placed on the functions of redox-regulated proteins, along with the central roles of reductants such as NAD(P)H, thioredoxins, glutathione, glutaredoxins, peroxiredoxins, ascorbate, and reduced ferredoxin in the regulation of the genetic and epigenetic factors that modulate the growth and vigor of crop plants, particularly within an agricultural context.
机译:启示:我们为细胞氧化还原信号枢纽与植物激素信号网络之间的相互作用提供了一个概念框架,该网络控制植物的生长和发育以在无胁迫的情况下最大化植物的生产力,同时限制了生长并改变了暴露于胁迫下的发育。最新进展:增强的细胞氧化在调节植物生长和胁迫反应中起关键作用。氧化和还原的氧化信号或循环对于缓解休眠和静止,激活细胞循环并触发遗传和表观遗传控制至关重要,这些控制是对不断变化的环境条件的生长和分化反应的基础。关键问题:氧化还原信号集线器直接与植物激素网络对接,以协同控制生长及其对环境压力的调节,以响应环境压力,但是已经确定了一些成分。越来越多的证据表明,植物激素和氧化还原控制物在多个层面上相互作用复杂。为简单起见,我们在此重点介绍依赖氧化还原的过程,该过程控制根的生长和发育以及芽的爆发。未来方向:已经确定了活性氧在控制植物生长和发育中的多种作用,但现在应越来越重视氧化还原调节蛋白的功能,以及诸如NAD(P)等还原剂的核心作用。 H,硫氧还蛋白,谷胱甘肽,谷胱甘肽毒素,过氧化物氧还蛋白,抗坏血酸和还原铁氧还蛋白在调节遗传和表观遗传因素中的作用,这些因素调节农作物的生长和活力,特别是在农业环境中。

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