拟南芥
电子传输链
细胞色素b6f复合物
类囊体
700页
细胞色素f
拟南芥
光防护
光抑制
光合作用
光系统I
光系统
生物
细胞色素
电子转移
辅酶Q-细胞色素c还原酶
生物物理学
生物化学
突变体
化学
细胞色素c
光系统II
叶绿体
光化学
线粒体
酶
基因
作者
Xiaoxia Yang,Yufen Che,Veder J. Garcia,Jianqiang Shen,Yuejiu Zheng,Zhezheng Su,Li Zhu,Sheng Luan,Xin Hou
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2023-05-05
卷期号:192 (4): 2803-2821
被引量:1
标识
DOI:10.1093/plphys/kiad268
摘要
Abstract Plants have evolved multiple mechanisms to cope with diverse types of light stress, particularly the regulation of the electron transport chain (ETC). Under high light (HL) conditions, the balance of electron flux in the ETC is disturbed, which leads to the overaccumulation of reactive oxygen species (ROS) and results in photodamage and photoinhibition. The cytochrome (Cyt) b6/f complex, which coordinates electron transfer between photosystems I and II (PSI and PSII), plays an essential role in regulating the ETC and initiating photoprotection. However, how the Cyt b6/f complex is maintained under HL conditions remains unclear. Here, we report that the activity of the Cyt b6/f complex is sustained by thylakoid-localized cyclophilin 37 (CYP37) in Arabidopsis (Arabidopsis thaliana). Compared with wild-type plants, cyp37 mutants displayed an imbalance in electron transport from Cyt b6/f to PSI under HL stress, which led to increased ROS accumulation, decreased anthocyanin biosynthesis, and increased chlorophyll degradation. Surprisingly, CYP37's role in regulating ETC balance was independent of photosynthesis control, which was indicated by a higher Y (ND), an indicator of P700 oxidation in PSI. Furthermore, the interaction between CYP37 and photosynthetic electron transfer A (PetA), a subunit of the Cyt b6/f complex, suggests that the central function of CYP37 is to maintain Cyt b6/f complex activity rather than to serve as an assembly factor. Our study provides insights into how plants balance electron flow between PSII and PSI via Cyt b6/f complex under HL.
科研通智能强力驱动
Strongly Powered by AbleSci AI