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脂氧合酶及其代谢产物与植物抗逆性的形成

Lipoxygenases and their metabolites in formation of plant stress tolerance.

作者信息

Babenko L M, Shcherbatiuk M M, Skaterna T D, Kosakivska I V

出版信息

Ukr Biochem J. 2017 Jan-Feb;89(1):5-21. doi: 10.15407/ubj89.01.005.

Abstract

The review focuses on the analysis of new information concerning molecular enzymology of lipoxygenases – proteins involved in lipid peroxidation and found in animals and plants. Modern concept of structural features, catalytic characteristics and functions of lipoxygenase family enzymes as well as products of their catalytic activity in plants have been discussed and summarized. Issues of enzyme localization in plant cells and tissues, evolution and distribution of lipoxygenases, involvement in production of signaling substances involved in formation of adaptation response to abiotic and biotic stress factors and in regulation of lipoxygenase signal system activity are highlighted. Participants of the elements signaling of LOX-pathway reception and transduction into genome are considered. Special attention is given to jasmonates, metabolites of the allene oxide synthase branch of the lipoxygenase cascade, because these metabolites have high biological activity, are ubiquitously present in all plant organisms, and are involved in regulation of vitally important processes. Data concerning lipoxygenase phylogeny, possible occurrence of a common predecessor for modern isoforms of the enzyme in pro- and eukaryote have been examined. Some results of our studies that open up possibilities of using the lipoxygenase catalytic activity characteristics as biological markers in plant stress tolerance researches are given.

摘要

这篇综述着重分析了与脂氧合酶分子酶学相关的新信息,脂氧合酶是参与脂质过氧化的蛋白质,存在于动植物中。本文讨论并总结了脂氧合酶家族酶的结构特征、催化特性和功能的现代概念,以及它们在植物中的催化活性产物。突出了植物细胞和组织中酶的定位问题、脂氧合酶的进化和分布、参与对非生物和生物胁迫因子形成适应性反应的信号物质的产生以及脂氧合酶信号系统活性的调节。考虑了脂氧合酶途径接收和转导到基因组中的信号元件参与者。特别关注茉莉酸酯,它是脂氧合酶级联反应中丙二烯氧化物合酶分支的代谢产物,因为这些代谢产物具有高生物活性,普遍存在于所有植物生物体中,并参与至关重要的过程的调节。研究了有关脂氧合酶系统发育的数据,以及现代酶同工型在原核生物和真核生物中可能存在共同祖先的情况。给出了我们的一些研究结果,这些结果为在植物抗逆性研究中利用脂氧合酶催化活性特征作为生物标志物开辟了可能性。

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