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Alpha-Tocopherol-Induced Regulation of Growth and Metabolism in Plants Under Non-stress and Stress Conditions

机译:α-生育酚诱导在非应力和应力条件下植物中生长和代谢的调节

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摘要

Alpha-tocopherol (alpha-Toc) is a member of the vitamin E family and is lipid soluble. Its biosynthesis is by the reaction of isopentyl diphosphate and homogentisic acid in plastid membranes. The putative biochemical activities of tocopherols are linked with the formation of tocopherol quinone species, which subsequently undergo degradation and recycling within cells/tissues. alpha-Toc plays a key role in a variety of plant metabolic processes throughout the ontogeny of plants. It can maintain the integrity and fluidity of photosynthesizing membranes. It can also neutralize lipid peroxy radicals, consequently blocking lipid peroxidation by quenching oxidative cations. It preserves membrane integrity by retaining membranous structural components under environmental constraints such as water deficiency, high salt content, toxic metals, high/low temperatures, and radiations. alpha-Toc also induces cellular signalling pathways within biological membranes. Its biosynthesis varies during growth and developmental stages as well as under different environmental conditions. The current review primarily focuses on how alpha-Toc can regulate various metabolic processes involved in promoting plant growth and development under stress and non-stress and how it can effectively counteract the stress-induced high accumulation of reactive oxygen species (ROS). Currently, exogenous application of alpha-Toc has been widely reported as a potential means of promoting resistance in plants to a variety of stressful environments.
机译:α-生育酚(alpha-toc)是维生素E系列的成员,是脂质溶于脂质。它的生物合成是通过异戊基二磷酸二磷酸二磷酸酯和同型溶解在塑性膜中的反应。生育酚的推定的生化活性与生育酚醌物种的形成有关,随后在细胞/组织内进行降解和再循环。 Alpha-TOC在整个植物的组织发生的各种植物代谢过程中起着关键作用。它可以保持光合膜化膜的完整性和流动性。它还可以中和脂质过氧基团,因此通过淬灭氧化阳离子阻断脂质过氧化。它通过在环境约束下保持膜结构部件,例如水缺乏,高盐含量,有毒金属,高/低温和辐射来保持膜完整性。 α-TOC还诱导生物膜内的细胞信号传导途径。其生物合成在生长和发育阶段以及不同的环境条件下变化。目前的审查主要集中在α-TOC如何调节促进促进植物生长和在应力和非应激之下的各种代谢过程以及它如何有效地抵消反应性氧(ROS)的应激诱导的高积聚。目前,α-TOC的外源性应用已被广泛报告为促进植物抗性到各种压力环境的潜在手段。

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