光合作用
光防护
叶黄素
生物
光合效率
农学
叶绿素荧光
作物
叶绿素
类胡萝卜素
适应(眼睛)
生物量(生态学)
光强度
叶绿体
光系统II
植物
产量(工程)
电子传输链
非光化学猝灭
作物产量
光合色素
光形态发生
叶绿素a
量子产额
鲁比斯科
光周期
光抑制
适应
间作
作者
Shasha Li,Patrick J. Horn,Meijuan Zhang,Guanqiang Zuo,Yi Wang,Xiping Deng,Lina Yin,Shiwen Wang
摘要
Flexible adaptation to different light intensities found in natural environments is crucial for efficient photosynthesis and yield production in crops. The ability to cope with suboptimal light conditions effectively and efficiently is clearly advantageous. In this study, increased photosynthetic ability, biomass accumulation, grain yield and high membrane lipid contents were observed in OsMGD1-overexpression plants of rice and tobacco under both low and high light conditions. Further exploration of the photosynthetic performance and xanthophyll cycle-dependent photoprotection in these transgenic plants revealed that under low light conditions, the overexpression lines maintained high levels of chlorophyll content and light harvesting capability, leading to a high photosynthetic quantum yield. While under high light conditions, the de-epoxidation status of xanthophyll cycle pigments was higher in the overexpression plants, leading to sufficient photoprotection and reduced photo-oxidative damage, resulting in an increased electron transport rate. These results indicate that OsMGD1 is involved in regulating photosynthetic processes when plants are exposed to different light intensities, providing an effective strategy for achieving improved photosynthesis and crop production under variable light conditions in nature.
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