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植物体内活性氧和氧化还原电位的荧光检测:当前方法与未来展望。

In vivo ROS and redox potential fluorescent detection in plants: Present approaches and future perspectives.

作者信息

Ortega-Villasante Cristina, Burén Stefan, Barón-Sola Ángel, Martínez Flor, Hernández Luis E

机构信息

Fisiología Vegetal (Plant Physiology Laboratory), Dpto. Biología (Biology Department), Universidad Autónoma de Madrid, 28049 Madrid, Spain.

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid, Pozuelo de Alarcón, Madrid 28223, Spain.

出版信息

Methods. 2016 Oct 15;109:92-104. doi: 10.1016/j.ymeth.2016.07.009. Epub 2016 Jul 14.

Abstract

Reactive oxygen species (ROS) are metabolic by-products in aerobic organisms including plants. Endogenously produced ROS act as cellular messengers and redox regulators involved in several plant biological processes, but excessive accumulation of ROS cause oxidative stress and cell damage. Understanding ROS signalling and stress responses requires precise imaging and quantification of local, subcellular and global ROS dynamics with high selectivity, sensitivity, and spatiotemporal resolution. Several fluorescent vital dyes have been tested so far, which helped to provide relevant spatially resolved information of oxidative stress dynamics in plants subjected to harmful environmental conditions. However, certain plant characteristics, such as high background fluorescence of plant tissues in vivo and antioxidant mechanisms, can interfere with ROS detection. The development of improved small-molecule fluorescent dyes and protein-based ROS sensors targeted to subcellular compartments will enable in vivo monitoring of ROS and redox changes in photosynthetic organisms.

摘要

活性氧(ROS)是包括植物在内的需氧生物中的代谢副产物。内源性产生的ROS作为细胞信使和氧化还原调节剂参与多种植物生物学过程,但ROS的过度积累会导致氧化应激和细胞损伤。了解ROS信号传导和应激反应需要以高选择性、灵敏度和时空分辨率对局部、亚细胞和整体ROS动态进行精确成像和定量。到目前为止,已经测试了几种荧光活体染料,这有助于提供遭受有害环境条件的植物中氧化应激动态的相关空间分辨信息。然而,某些植物特性,如植物组织在体内的高背景荧光和抗氧化机制,可能会干扰ROS检测。开发针对亚细胞区室的改进型小分子荧光染料和基于蛋白质的ROS传感器将能够在体内监测光合生物中的ROS和氧化还原变化。

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