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泽兰黄脉病毒感染对牧野泽兰叶片发育过程中光合速率、叶绿素含量及叶绿体结构的影响

Effects of Eupatorium yellow vein virus infection on photosynthetic rate, chlorophyll content and chloroplast structure in leaves of Eupatorium makinoi during leaf development.

作者信息

Funayama-Noguchi Sachiko, Terashima Ichiro

机构信息

Department of Biology, Graduate School of Science, Osaka University, Machikaneyama-cho 1-1, Toyonaka, Osaka 560-0043, Japan.

出版信息

Funct Plant Biol. 2006 Mar;33(2):165-175. doi: 10.1071/FP05172.

Abstract

Infection of Eupatorium yellow vein geminivirus (EpYVV, formerly called tobacco leaf curl virus, TLCV) causes variegation in Eupatorium makinoi Kawahara et Yahara leaves. We examined changes in photosynthesis during leaf development to clarify what is the primary event when photosynthesis is suppressed in virus-infected E. makinoi leaves. The gas-exchange rate, leaf absorptance, chlorophyll (Chl) and nitrogen contents, leaf anatomy and chloroplast ultrastructure were compared between virus-infected and uninfected E. makinoi leaves at various developmental stages. These photosynthetic properties did not differ between infected and uninfected leaves when they were young. However, when expanded, infected leaves showed lower maximum quantum yield of photosynthetic CO uptake in the incident photosynthetically active photon fluence rate (PPFR), which was attributed to their lower Chl contents. The Chla / b ratio was higher and the grana had fewer thylakoids in the infected leaves, which are features common to Chl b-deficient mutants that have defects in Chl synthesis. Our results suggested that, in E. makinoi leaves, EpYVV infection primarily impairs Chl biosynthesis. Possible mechanisms of the suppression of photosynthesis in E. makinoi leaves by virus infection are discussed.

摘要

泽兰黄脉双生病毒(EpYVV,原称烟草曲叶病毒,TLCV)感染会导致牧野泽兰(Eupatorium makinoi Kawahara et Yahara)叶片出现杂色。我们研究了叶片发育过程中光合作用的变化,以阐明病毒感染的牧野泽兰叶片光合作用受到抑制时的主要事件是什么。比较了不同发育阶段病毒感染和未感染的牧野泽兰叶片的气体交换速率、叶片吸收率、叶绿素(Chl)和氮含量、叶片解剖结构以及叶绿体超微结构。这些光合特性在幼叶阶段,感染和未感染的叶片之间没有差异。然而,在叶片展开后,感染的叶片在入射光合有效光子通量密度(PPFR)下光合CO2吸收的最大量子产率较低,这归因于其较低的Chl含量。感染叶片的Chla / b比值较高,且基粒类囊体较少,这些是Chl合成存在缺陷的Chl b缺陷型突变体的共同特征。我们的结果表明,在牧野泽兰叶片中,EpYVV感染主要损害Chl生物合成。本文还讨论了病毒感染抑制牧野泽兰叶片光合作用的可能机制。

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