氮同化
硝酸还原酶
光合作用
硝酸盐
同化(音韵学)
光系统II
互补
化学
突变体
生物化学
调节器
蓝藻
生物
氮气
电子传输链
蛋白质亚单位
植物
细胞生物学
光系统I
生物物理学
环境化学
氧气
光系统
氧化还原
蛋白质片段互补分析
氮缺乏
作者
Chengcheng Huang,Zhen Xiao,Haitao Ge,Gaojie Wang,Jinghui Dong,Yan Wang,Yan Wang,Hang Yang,Xin Wang,Hui Gao,Zhongshu Wang,Huanling Yang,Yuanya Zhang,Wu Xu,Weimin Ma,Weimin Ma,Wenqiang Yang,Yingchun Wang,Yingchun Wang
标识
DOI:10.1002/advs.202518047
摘要
Nitrogen assimilation relies on photosynthetically produced energy and reducing equivalents. Here, we identify a small protein, PsbO-interacting regulator of nitrate assimilation (PirN), as a key coordinator of photosynthesis and nitrate assimilation in Synechocystis sp. PCC 6803 (Synechocystis). PirN specifically accumulates in nitrate-grown cells and interacts with the photosystem II (PSII) subunit PsbO. Deletion of pirN (ΔpirN) under nitrate impairs growth, reduces PSII contents and oxygen evolution, and upregulates most nitrogen transport and assimilation proteins except the nitrate reductase NarB, mimicking nitrogen starvation response likely due to impaired nitrate reduction. PsbO expression is markedly reduced in both ΔpirN and ΔnarB mutants. Complementation of narB or psbO in the ΔpirN mutant background largely rescued the growth defect of the mutant and led to increased expression of PsbO or NarB, respectively. These findings suggest that PirN is a nitrate-inducible regulator that hierarchically modulates NarB and PsbO expression to couple nitrate assimilation with photosynthetic activity. This coordination likely safeguards redox homeostasis when nitrate assimilation or photosynthetic electron production is perturbed.
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