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[光质对植物光合作用的调控及其机制]

[Regulation of photosynthesis by light quality and its mechanism in plants].

作者信息

Zheng Jie, Hu Mei-Jun, Guo Yan-Ping

机构信息

Department of Horticulture, Zhejiang University, Hangzhou 310029, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2008 Jul;19(7):1619-24.

Abstract

Photosynthesis is the basis of plant growth and development. The regulations of photosynthesis by light quality include regulations of stomatal movement, leaf growth, chloroplast structure, photosynthetic pigment, D1 protein and its gene and photosynthetic carbon assimilation by visible light, and effect of ultraviolet light on photosystem II in plant. Blue light and red light can promote the opening of stomata, while the green light can close stomata. Blue light can improve the development of chloroplast, complex light of red, blue and green lights can expand leaf area, and red light can increase the accumulation of photosynthesis production. Effects of different light quality differ in various plants, organs and tissues. Blue light and far red light can promote the accumulation of psbA gene transcription. Most higher plants and green algae have highest photosynthesis rate in orange and red lights, secondly in blue-violet light, and minimum in green light. Ultraviolet light can decline the electron transfer activity of photosystem II. Moreover, questions regarding the effect of light quality on photosynthesis and some topics for future study were also discussed in this paper.

摘要

光合作用是植物生长发育的基础。光质对光合作用的调节包括可见光对气孔运动、叶片生长、叶绿体结构、光合色素、D1蛋白及其基因以及光合碳同化的调节,以及紫外光对植物光系统II的影响。蓝光和红光可促进气孔开放,而绿光可使气孔关闭。蓝光可促进叶绿体的发育,红、蓝、绿复合光可使叶片面积增大,红光可增加光合产物的积累。不同光质的效应在不同植物、器官和组织中存在差异。蓝光和远红光可促进psbA基因转录产物的积累。大多数高等植物和绿藻在橙光和红光下光合速率最高,其次是蓝紫光,绿光下最低。紫外光会降低光系统II的电子传递活性。此外,本文还讨论了光质对光合作用影响的相关问题及一些未来研究的课题。

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