烟草响尾蛇病毒
烟草
铁氧还蛋白
生物
光合作用
蛋白酶体
机制(生物学)
细胞生物学
病毒
内共生
寄主(生物学)
烟草花叶病毒
外壳蛋白
植物
泛素
龙葵
共生
细菌
蛋白质降解
共生细菌
叶绿体
病毒学
微生物学
生物化学
巴西橡胶树
作者
Shaorui Tian,Changyun Liu,Jie Dong,Xin Zhu,Xingyi Luo,Weina Liu,H. Peng,Lin Cai,Xianchao Sun
摘要
Plant virus infections commonly inhibit leaf photosynthesis, leading to characteristic symptoms such as chlorosis. However, whether a conserved mechanism underpins this phenomenon remains unclear. Here, we demonstrate that the coat protein (CP) of tobacco rattle virus (TRV) interacts with Nicotiana benthamiana ferredoxin (NbFd1) in chloroplasts, recruiting the 26S proteasome to promote NbFd1 degradation. This degradation reduces the net photosynthetic rate facilitated by NbFd1, ultimately causing leaf chlorosis. Notably, this interaction is not unique to TRV CP, as other viral proteins also recognise Fd1, suggesting a conserved mechanism among plant viruses. Evolutionary analyses indicate that Fd1 originated from prokaryotic photosynthetic bacteria and was maintained in plants through endosymbiosis under strong selective pressure. Notably, Fd1 from Selaginella moellendorffii, an early-diverging vascular plant, is also recognised by TRV CP, suggesting an ancient origin of this interaction. In addition, Solanum lycopersicum Fd1 interacts with TRV CP, and its overexpression suppresses TRV-GFP infection, supporting a defensive role. Together, these findings show that TRV CP targets Fd1 to impair host photosynthesis and promote symptom development, whereas highlighting the evolutionary significance of this interaction.
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