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感知光合作用 II 中β-胡萝卜素的氧化,以掌握植物的应激耐受能力。

Sensing β-carotene oxidation in photosystem II to master plant stress tolerance.

机构信息

CEA, CNRS, UMR 7265, Institut Biosciences et Biotechnologies d'Aix-Marseille, CEA/Cadarache, Aix-Marseille University, Saint-Paul-lez-Durance, France.

出版信息

New Phytol. 2019 Sep;223(4):1776-1783. doi: 10.1111/nph.15924. Epub 2019 Jun 19.

Abstract

Stressful environmental conditions lead to the production of reactive oxygen species in the chloroplasts, due to limited photosynthesis and enhanced excitation pressure on the photosystems. Among these reactive species, singlet oxygen ( O ), which is generated at the level of the PSII reaction center, is very reactive, readily oxidizing macromolecules in its immediate surroundings, and it has been identified as the principal cause of photooxidative damage in plant leaves. The two β-carotene molecules present in the PSII reaction center are prime targets of O oxidation, leading to the formation of various oxidized derivatives. Plants have evolved sensing mechanisms for those PSII-generated metabolites, which regulate gene expression, putting in place defense mechanisms and alleviating the effects of PSII-damaging conditions. A new picture is thus emerging which places PSII as a sensor and transducer in plant stress resilience through its capacity to generate signaling metabolites under excess light energy. This review summarizes new advances in the characterization of the apocarotenoids involved in the PSII-mediated stress response and of the pathways elicited by these molecules, among which is the xenobiotic detoxification.

摘要

在应激环境条件下,由于光合作用受到限制和光系统的激发压力增强,叶绿体中会产生活性氧物质。在这些活性物质中,单线态氧(1O2)在 PSII 反应中心水平产生,具有很强的反应性,很容易氧化其周围的大分子,并且已被确定为植物叶片光氧化损伤的主要原因。存在于 PSII 反应中心的两个β-胡萝卜素分子是 1O2 氧化的主要目标,导致形成各种氧化衍生物。植物已经进化出对这些 PSII 产生的代谢物的感应机制,这些机制调节基因表达,建立防御机制并减轻 PSII 损伤条件的影响。因此,出现了一个新的图景,即 PSII 通过在过量光能下生成信号代谢物,成为植物应激弹性的传感器和转换器。本综述总结了 PSII 介导的应激反应中涉及的脱羧类胡萝卜素以及这些分子引发的途径的新进展,其中包括外源性解毒。

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