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被烟草花叶病毒黄花叶株系感染的成熟烟草叶片中光系统II核心复合体的耗竭。

Depletion of the photosystem II core complex in mature tobacco leaves infected by the flavum strain of tobacco mosaic virus.

作者信息

Lehto Kirsi, Tikkanen Mikko, Hiriart Jean-Baptiste, Paakkarinen Virpi, Aro Eva-Mari

机构信息

Department of Plant Physiology and Molecular Biology, University of Turku, FIN-20014 Turku, Finland.

出版信息

Mol Plant Microbe Interact. 2003 Dec;16(12):1135-44. doi: 10.1094/MPMI.2003.16.12.1135.

Abstract

The flavum strain of Tobacco mosaic virus (TMV) differs from the wild-type (wt) virus by causing strong yellow and green mosaic in the systemically infected developing leaves, yellowing in the fully expanded leaves, and distinct malformations of chloroplasts in both types of infected tissues. Analysis of the thylakoid proteins of flavum strain-infected tobacco leaves indicated that the chlorosis in mature leaves was accompanied by depletion of the entire photosystem II (PSII) core complexes and the 33-kDa protein of the oxygen evolving complex. The only change observed in the thylakoid proteins of the corresponding wt TMV-infected leaves was a slight reduction of the alpha and beta subunits of the ATP synthase complex. The coat proteins of different yellowing strains of TMV are known to effectively accumulate inside chloroplasts, but in this work, the viral movement protein also was detected in association with the thylakoid membranes of flavum strain-infected leaves. The mRNAs of different enzymes involved in the chlorophyll biosynthesis pathway were not reduced in the mature chlorotic leaves. These results suggest that the chlorosis was not caused by reduction of pigment biosynthesis, but rather, by reduction of specific proteins of the PSII core complexes and by consequent break-down of the pigments.

摘要

烟草花叶病毒(TMV)的黄花叶株系与野生型(wt)病毒不同,它在系统感染的发育叶片中引起强烈的黄绿相间花叶,在完全展开的叶片中导致黄化,并且在两种受感染组织中叶绿体均出现明显畸形。对黄花叶株系感染的烟草叶片类囊体蛋白的分析表明,成熟叶片中的黄化伴随着整个光系统II(PSII)核心复合物以及放氧复合物的33 kDa蛋白的减少。在相应的野生型TMV感染叶片的类囊体蛋白中观察到的唯一变化是ATP合酶复合物的α和β亚基略有减少。已知TMV不同黄化株系的外壳蛋白能在叶绿体中有效积累,但在这项研究中,在黄花叶株系感染叶片的类囊体膜上也检测到了病毒运动蛋白。参与叶绿素生物合成途径的不同酶的mRNA在成熟黄化叶片中并未减少。这些结果表明,黄化不是由色素生物合成减少引起的,而是由PSII核心复合物的特定蛋白减少以及随之而来的色素分解引起的。

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