天冬酰胺
烟草花叶病毒
烟草
烟草
生物
生物化学
绿色荧光蛋白
双分子荧光互补
拟南芥
分子生物学
病毒学
氨基酸
病毒
酵母
突变体
基因
作者
Changyun Liu,Shaorui Tian,Xing Lv,Yundan Pu,Haoran Peng,Guangjin Fan,Xiaozhou Ma,Lisong Ma,Xianchao Sun
摘要
Abstract Asparagine synthetase is a key enzyme that catalyses the conversion of amide groups from glutamine or ammonium to aspartate, which leads to the generation of asparagine. However, the role of asparagine synthetase in plant immunity remains largely unknown. Here, we identified a Nicotiana benthamiana asparagine synthetase B (NbAS‐B) that associates with tomato mosaic virus coat protein‐interacting protein L (IP‐L) using the yeast two‐hybrid assay and examined its role in tobacco mosaic virus (TMV) resistance. The association of IP‐L with NbAS‐B was further confirmed by in vivo co‐immunoprecipitation, luciferase complementation imaging, and bimolecular fluorescence complementation assays. IP‐L and NbAS‐B interact in the nucleus and cytosol and IP‐L apparently stabilizes NbAS‐B, thus enhancing its accumulation. The expressions of IP‐L and NbAS‐B are continuously induced on TMV‐green fluorescent protein (GFP) infection. Co‐silencing of IP‐L and NbAS‐B facilitates TMV‐GFP infection. Overexpression of NbAS‐B in tobacco reduces TMV‐GFP infection by significantly improving the synthesis of asparagine. Furthermore, the external application of asparagine significantly inhibits the infection of TMV‐GFP by activating the salicylic acid signalling pathway. These findings hold the potential for the future application of asparagine in the control of TMV.
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