Zhai Yushan, Yuan Quan, Qiu Shiyou, Li Saisai, Li Miaomiao, Zheng Hongying, Wu Guanwei, Lu Yuwen, Peng Jiejun, Rao Shaofei, Chen Jianping, Yan Fei
College of Plant Protection, Northwest A & F University, Yangling, China.
State Key Laboratory for Managing Biotic and Chemical Threats to the Quality and Safety of Agro-products, Institute of Plant Virology, Ningbo University, Ningbo, China.
Plant Cell Environ. 2021 Nov;44(11):3681-3699. doi: 10.1111/pce.14157. Epub 2021 Aug 9.
Chloroplasts play crucial roles in plant defence against viral infection. We now report that chloroplast NADH dehydrogenase-like (NDH) complex M subunit gene (NdhM) was first up-regulated and then down-regulated in turnip mosaic virus (TuMV)-infected N. benthamiana. NbNdhM-silenced plants were more susceptible to TuMV, whereas overexpression of NbNdhM inhibited TuMV accumulation. Overexpression of NbNdhM significantly induced the clustering of chloroplasts around the nuclei and disturbing this clustering facilitated TuMV infection, suggesting that the clustering mediated by NbNdhM is a defence against TuMV. It was then shown that NbNdhM interacted with TuMV VPg, and that the NdhMs of different plant species interacted with the proteins of different viruses, implying that NdhM may be a common target of viruses. In the presence of TuMV VPg, NbNdhM, which is normally localized in the nucleus, chloroplasts, cell periphery and chloroplast stromules, colocalized with VPg at the nucleus and nucleolus, with significantly increased nuclear accumulation, while NbNdhM-mediated chloroplast clustering was significantly impaired. This study therefore indicates that NbNdhM has a defensive role in TuMV infection probably by inducing the perinuclear clustering of chloroplasts, and that the localization of NbNdhM is altered by its interaction with TuMV VPg in a way that promotes virus infection.
叶绿体在植物抵御病毒感染过程中发挥着关键作用。我们现在报道,在被芜菁花叶病毒(TuMV)感染的本氏烟草中,叶绿体NADH脱氢酶样(NDH)复合体M亚基基因(NdhM)先是上调,然后又下调。沉默NbNdhM的植株对TuMV更敏感,而过量表达NbNdhM则抑制TuMV积累。过量表达NbNdhM显著诱导叶绿体围绕细胞核聚集,扰乱这种聚集会促进TuMV感染,这表明由NbNdhM介导的聚集是对TuMV的一种防御。随后发现NbNdhM与TuMV VPg相互作用,并且不同植物物种的NdhM与不同病毒的蛋白相互作用,这意味着NdhM可能是病毒的一个共同靶标。在存在TuMV VPg的情况下,通常定位于细胞核、叶绿体、细胞周边和叶绿体基质小管的NbNdhM与VPg在细胞核和核仁处共定位,核内积累显著增加,而NbNdhM介导的叶绿体聚集则显著受损。因此,本研究表明NbNdhM可能通过诱导叶绿体在细胞核周围聚集而在TuMV感染中发挥防御作用,并且NbNdhM与TuMV VPg的相互作用以促进病毒感染的方式改变了NbNdhM的定位。