Ogawa Ken'ichi, Hatano-Iwasaki Aya, Yanagida Mototsugu, Iwabuchi Masaki
Research Institute for Biological Sciences, Okayama (RIBS Okayama), 7549-1 Yoshikawa, Okayama, 716-1241 Japan.
Plant Cell Physiol. 2004 Jan;45(1):1-8. doi: 10.1093/pcp/pch008.
Glutathione (GSH) is associated with flowering in Arabidopsis thaliana, but how GSH biosynthesis is regulated to control the transition to flowering remains to be elucidated. Since the key reaction of GSH synthesis is catalyzed by gamma-glutamylcysteine synthetase (gamma-ECS) and all the gamma-ECS cDNAs examined contained extra sequences for plastid targeting, we investigated the relationships among GSH levels, photosynthesis and flowering. The GSH level in Arabidopsis increased with the light intensity. The ch1 mutants defective in a light-harvesting antenna in photosystem II showed reduced GSH levels with accumulation of the GSH precursor cysteine, and introduction of the gamma-ECS gene GSH1 under the control of the cauliflower mosaic virus 35S promoter (35S-GSH1) into the ch1 mutant altered the GSH level in response to the gamma-ECS mRNA level. These indicate that photosynthesis limits the gamma-ECS reaction to regulate GSH biosynthesis. Like the glutathione-biosynthesis-defective cad2-1 mutant, the ch1 mutants flowered late under weak-light conditions, and this late-flowering phenotype was rescued by supplementation of GSH. Introduction of the 35S-GSH1 construct into the ch1 mutant altered flowering in response to the gamma-ECS mRNA and GSH levels. These findings indicate that flowering in A. thaliana is regulated by the gamma-ECS reaction of GSH synthesis that is coupled with photosynthesis.
谷胱甘肽(GSH)与拟南芥的开花相关,但GSH生物合成如何被调控以控制向开花的转变仍有待阐明。由于GSH合成的关键反应由γ-谷氨酰半胱氨酸合成酶(γ-ECS)催化,且所有检测的γ-ECS cDNA都含有用于叶绿体靶向的额外序列,我们研究了GSH水平、光合作用和开花之间的关系。拟南芥中的GSH水平随光照强度增加。在光系统II中捕光天线有缺陷的ch1突变体显示GSH水平降低,同时GSH前体半胱氨酸积累,并且在花椰菜花叶病毒35S启动子(35S-GSH1)控制下将γ-ECS基因GSH1导入ch1突变体后,GSH水平响应γ-ECS mRNA水平而改变。这些表明光合作用限制γ-ECS反应以调控GSH生物合成。与谷胱甘肽生物合成缺陷的cad2-1突变体一样,ch1突变体在弱光条件下开花延迟,并且补充GSH可挽救这种晚花表型。将35S-GSH1构建体导入ch1突变体后,开花响应γ-ECS mRNA和GSH水平而改变。这些发现表明拟南芥的开花受与光合作用相关的GSH合成的γ-ECS反应调控。