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蚕豆萎蔫病毒2号分离物侵染对蚕豆叶片光合活性和叶绿体超微结构的影响
引用本文:李燕宏,洪健,谢礼,杨勇,周雪平,蒋德安. 蚕豆萎蔫病毒2号分离物侵染对蚕豆叶片光合活性和叶绿体超微结构的影响[J]. 植物生理与分子生物学学报, 2006, 32(4): 490-496
作者姓名:李燕宏  洪健  谢礼  杨勇  周雪平  蒋德安
作者单位:1. 浙江大学,生物技术研究所,杭州,310029
2. 浙江大学,生命科学学院,杭州,310029
摘    要:研究了受蚕豆萎蔫病毒2号(Broad bean wilt virus 2,BBWV2)中国分离物B935和欧洲分离物PV131侵染的蚕豆(Vicica faba)叶片光合特性、叶绿素荧光诱导动力学参数和叶绿体超微结构变化。感病蚕豆叶绿素含量减少,叶绿素a/b比逐步降低;光合气体交换参数Pn值和Gs值降低,Ci值升高;叶绿素荧光诱导动力学参数Fv/Fm、FV'/Fm'、ΦPSII、qP值均有不同程度降低,NPQ值升高;光合器结构遭到不同程度的破坏,B935侵染后叶绿体发育不良,片层结构疏松,PVl31侵染后叶绿体肿胀变圆,片层结构疏松瓦解。与B935相比,PV131侵染对以上各参数的变化有更大影响,且对叶绿体的破坏更为严重。实验结果表明BBWV2不同分离物对光系统II(PSII)的抑制作用与光合器受损程度相关。

关 键 词:蚕豆萎蔫病毒2号  蚕豆  叶绿体超微结构  光合作用  叶绿素荧光
收稿时间:2005-12-20
修稿时间:2006-07-14

Effects of Broad bean wilt virus 2 Isolate Infection on Photosynthetic Activities and Chloroplast Ultrastructure in Broad Bean Leaves
LI Yan-Hong,HONG Jian,XIE Li,YANG Yong,ZHOU Xue-Ping,JIANG De-An. Effects of Broad bean wilt virus 2 Isolate Infection on Photosynthetic Activities and Chloroplast Ultrastructure in Broad Bean Leaves[J]. Journal Of Plant Physiology and Molecular Biology, 2006, 32(4): 490-496
Authors:LI Yan-Hong  HONG Jian  XIE Li  YANG Yong  ZHOU Xue-Ping  JIANG De-An
Affiliation:1.Institute of Biotechnology; 2.College of Life Sciences, Zhejiang University, Hangzhou 310029, China
Abstract:The effects of Broad bean wilt virus 2 (BBWV 2) isolate B935 and PV131 infection on photosynthetic activities and chloroplast ultrastructure in broad bean (Vicia faba) were investigated. As the disease progressed, net photosynthetic rate (P(n)), stomatal conductance (G(s)) of leaves, the chlorophyll content and chlorophyll a/b ratio decreased while the intercellular CO(2) concentration (C(i)) of leaves rose in comparison with that of the healthy plants (Figs. 1, 2). After BBWV 2 infection, F(v)/F(m), F(v)'/F(m)', Phi(PSII) and q(P) values all became lower, but the NPQ values were higher, than the healthy control plants (Fig. 3). Electron microscopy showed that BBWV 2 infection disrupted the chloroplast structure. Most of the B935-infected chloroplasts showed inhibition of lamellar development or membrane vesiculation (Fig. 4B, C) and PV131-infected chloroplasts showed swollen or disintegrated membrane (Fig. 4D-F). Chloroplasts of PV131-infected leaves were different from those of normal ones to a higher degree than those of the B935-infected ones, which suggests that the disruption of chloroplast structure by virus invasion is responsible for the suppression of photosynthesis, which is more serious with PV131 than with B935.
Keywords:Broad bean wilt virus 2   broad bean   chloroplast ultrastructure   photosynthesis   chlorophyll fluorescence
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