The P3N-PIPO Protein Encoded by Wheat Yellow Mosaic Virus Is a Pathogenicity Determinant and Promotes Its Pathogenicity through Interaction with NbRLK6 in Nicotiana benthamiana .
Runpu MiaoZhuangxin YeStuart MacFarlaneYanjun LiQianzhuo MaoYanzhen TianZhiping DengZong-Tao SunJian YangJun-Min LiFei YanJian-Ping ChenChulang YuPublished in: Viruses (2022)
Similarly to other potyvirids, the bymovirus wheat yellow mosaic virus (WYMV) encodes a P3N-PIPO protein that is expressed by frameshifting occurring within the open reading frame of the P3 protein. P3N-PIPO is known to be essential for the cell-to-cell movement of several potyviruses, but this has not yet been confirmed for the WYMV. Here, we show that the WYMV P3N-PIPO protein influences disease symptom formation. Infection of Nicotiana benthamiana plants with a potato virus X (PVX)-based vector carrying the WYMV P3N-PIPO gene induced more severe disease symptoms and resulted in higher virus accumulation levels than did infection with PVX lacking the P3N-PIPO gene. N. benthamiana P3N-PIPO-interacting proteins were identified through co-immunoprecipitation (Co-IP) coupled with LC-MS/MS (mass spectrometry), and the interaction between P3N-PIPO and the N. benthamiana receptor-like kinase NbRLK6 was further verified by Co-IP and bimolecular fluorescence complementation (BiFC) of transiently-expressed proteins. Furthermore, our investigation showed that the disease symptom severity and accumulation level of PVX-P3N-PIPO were decreased in N. benthamiana plants when Nb RLK6 expression was reduced by tobacco rattle virus-induced gene silencing.
Keyphrases
- binding protein
- mass spectrometry
- protein protein
- amino acid
- cell therapy
- high glucose
- poor prognosis
- drug induced
- disease virus
- copy number
- genome wide
- gene expression
- high resolution
- escherichia coli
- working memory
- protein kinase
- cystic fibrosis
- bone marrow
- endothelial cells
- dna methylation
- long non coding rna
- ms ms
- biofilm formation