Photosynthesis and chloroplast functioning within individual pustules of Uromyces muscari on bluebell leaves

J.D. Scholes, J.F. Farrar
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引用次数: 39

Abstract

Photosynthesis and chloroplast functioning is examined within pustules of Uromyces muscari on bluebell leaves at different stages of development from presporulation to green island formation. Green island tissue is shown to be photosynthetically active by 14CO2 fixation, OZ evolution and in vivo chlorophyll fluorescence kinetics. Chloroplast measurements indicate that, whilst there is little reduction in chloroplast number per unit area in pustules of U. muscari, the chloroplast volume, the chlorophyll concentration and the ratio of chlorophyll a : b decline, suggesting that chlorophyll is lost from individual chloroplasts. Oxygen evolution, both per unit area and per unit chlorophyll, is reduced in pustules in comparison to green areas of an infected leaf and to uninfected leaves. Two major parameters of in vivo chlorophyll fluorescence kinetics (Fvar and F.) are progressively reduced in pustules. This suggests that non-cyclic electron transport, and general chloroplast integrity, are impaired as the disease develops. These results are discussed in the context of current theories concerning the mechanisms by which parasites induce a block in the electron transport chain, and a new model is proposed, based on a change in the chlorophyll content of the photosystem reaction centres.

风信子叶片上蕈蕈单个脓疱内的光合作用和叶绿体功能
研究了蓝铃草叶片上不同发育阶段(从孢子形成前到绿岛形成)的蕈蕈脓疱内的光合作用和叶绿体功能。绿岛组织通过14CO2固定、OZ进化和体内叶绿素荧光动力学显示出光合活性。叶绿体测量结果表明,虽然蘑菇脓疱单位面积的叶绿体数量几乎没有减少,但叶绿体体积、叶绿素浓度和叶绿素a: b比值下降,表明叶绿素从单个叶绿体中丢失。与感染叶片的绿色区域和未感染叶片相比,脓疱内单位面积和单位叶绿素的出氧量都减少了。体内叶绿素荧光动力学的两个主要参数(Fvar和f)在脓疱中逐渐降低。这表明,随着疾病的发展,非循环电子传递和一般叶绿体完整性受到损害。这些结果在当前寄生虫诱导电子传递链阻滞机制的理论背景下进行了讨论,并提出了一个基于光系统反应中心叶绿素含量变化的新模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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