植物质体醌体内外抗氧化性能的研究

IF 4.033 Q4 Biochemistry, Genetics and Molecular Biology
D. V. Vetoshkina, A. A. Nikolaev, M. M. Borisova-Mubarakshina
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引用次数: 0

摘要

质醌(PQ)是光合电子传递链(PETC)中从光合系统 II 到细胞色素 b6/f 复合物的移动电子载体。此外,PQ 还与许多其他异戊烯类化合物一起发挥抗氧化功能,保护植物细胞免受活性氧(ROS)的侵害。本综述介绍了 PQ 与 ROS(包括单线态氧、超氧阴离子自由基和过氧化氢)在高等植物叶绿体中的反应。分析了许多关于各种胁迫因素对 PQ 生物合成影响的研究数据,结果表明几乎在所有胁迫条件下,PQ 的含量都会增加。因此,PQ 生物合成的增加可以保护光合装置免受氧化降解,从而提高植物的生命力。本章特别介绍了创造 PQ 含量更高的植物并评估其对环境因素的抵抗力的方法。基于植物 PQ 的高抗氧化活性和在脂相中的扩散能力,讨论了植物 PQ 作为膜结构氧化保护剂的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Antioxidant Properties of Plant Plastoquinone in Vivo and in Vitro

Antioxidant Properties of Plant Plastoquinone in Vivo and in Vitro

Plastoquinone (PQ) is a mobile electron carrier from photosystem II to the cytochrome b6/f complex in the photosynthetic electron transport chain (PETC). In addition, PQ acts together with many other isoprenoids to perform the antioxidant function and to protect plant cells from reactive oxygen species (ROS). The review describes the PQ reactions with ROS, including singlet oxygen, superoxide anion radical, and hydrogen peroxide, in chloroplasts of higher plants. Data from many studies on the effect of various stress factors on PQ biosynthesis were analyzed to demonstrate that the PQ content increases in almost all stress conditions. An increase in PQ biosynthesis is therefore a factor that contributes to the plant viability by protecting the photosynthetic apparatus from oxidative degradation. A special section describes the methods to create plants with a higher PQ level and to assess their resistance to environmental factors. Applications of plant PQ as a protector of membrane structures from oxidation are discussed on the basis of its high antioxidant activity and the capability of diffusing in the lipid phase.

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来源期刊
Biophysics
Biophysics Biochemistry, Genetics and Molecular Biology-Biophysics
CiteScore
1.20
自引率
0.00%
发文量
67
期刊介绍: Biophysics is a multidisciplinary international peer reviewed journal that covers a wide scope of problems related to the main physical mechanisms of processes taking place at different organization levels in biosystems. It includes structure and dynamics of macromolecules, cells and tissues; the influence of environment; energy transformation and transfer; thermodynamics; biological motility; population dynamics and cell differentiation modeling; biomechanics and tissue rheology; nonlinear phenomena, mathematical and cybernetics modeling of complex systems; and computational biology. The journal publishes short communications devoted and review articles.
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