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利用JIP测试探究高臭氧暴露下木本植物的光合行为:综述

Photosynthetic behavior of woody species under high ozone exposure probed with the JIP-test: a review.

作者信息

Bussotti Filippo, Strasser Reto J, Schaub Marcus

机构信息

Department of Plant Biology, University of Florence, Piazzale delle Cascine 28, Florence, Italy.

出版信息

Environ Pollut. 2007 Jun;147(3):430-7. doi: 10.1016/j.envpol.2006.08.036. Epub 2006 Oct 10.

Abstract

Visible ozone symptoms on leaves are expressions of physiological mechanisms to cope with oxidative stresses. Often, the symptoms consist of stippling, which corresponds to localized cell death (hypersensitive response, HR), separated from healthy cells by a layer of callose. The HR strategy tends to protect the healthy cells and in most cases the efficiency of chlorophyll to trap energy is not affected. In other cases, the efficiency of leaves to produce biomass declines and the plant loses its photosynthetic apparatus replacing it with a new, more efficient one. Another strategy consists of the production of pigments (anthocyanins), and leaves become reddish. In these cases, the most significant physiological manifestation consists of the enhanced dissipation of energy. These different behavior patterns are reflected in the initial events of photosynthetic activity, and can be monitored with techniques based on the direct fluorescence of chlorophyll a in photosystem II, applying the JIP-test.

摘要

叶片上可见的臭氧症状是应对氧化应激的生理机制的表现。通常,这些症状表现为点斑,这对应于局部细胞死亡(过敏反应,HR),与健康细胞之间隔着一层胼胝质。HR策略倾向于保护健康细胞,在大多数情况下,叶绿素捕获能量的效率不受影响。在其他情况下,叶片产生生物量的效率下降,植物失去其光合装置,取而代之的是一个新的、效率更高的光合装置。另一种策略是产生色素(花青素),叶片会变成红色。在这些情况下,最显著的生理表现是能量耗散增强。这些不同的行为模式反映在光合活性的初始事件中,可以通过基于光系统II中叶绿素a直接荧光的技术,应用JIP测试进行监测。

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