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      Cell death triggered by the P25 protein in Potato virus X‐associated synergisms results from endoplasmic reticulum stress in Nicotiana benthamiana

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          Summary

          The synergistic interaction of Potato virus X (PVX) with a number of potyviruses results in systemic necrosis in Nicotiana spp. Previous investigations have indicated that the viral suppressor of RNA silencing (VSR) protein P25 of PVX triggers systemic necrosis in PVX‐associated synergisms in a threshold‐dependent manner. However, little is still known about the cellular processes that lead to this necrosis, and whether the VSR activity of P25 is involved in its elicitation. Here, we show that transient expression of P25 in the presence of VSRs from different viruses, including the helper component‐proteinase (HC‐Pro) of potyviruses, induces endoplasmic reticulum (ER) stress and the unfolded protein response (UPR), which ultimately lead to ER collapse. However, the host RNA silencing pathway was dispensable for the elicitation of cell death by P25. Confocal microscopy studies in leaf patches co‐expressing P25 and HC‐Pro showed dramatic alterations in ER membrane structures, which correlated with the up‐regulation of bZIP60 and several ER‐resident chaperones, including the ER luminal binding protein (BiP). Overexpression of BiP alleviated the cell death induced by the potexviral P25 protein when expressed together with VSRs derived from different viruses. Conversely, silencing of the UPR master regulator, bZIP60, led to an increase in cell death elicited by the P25/HC‐Pro combination as well as by PVX‐associated synergism. In addition to its role as a negative regulator of P25‐induced cell death, UPR partially restricted PVX infection. Thus, systemic necrosis caused by PVX‐associated synergistic infections is probably the effect of an unmitigated ER stress following the overaccumulation of a viral protein, P25, with ER remodelling activity.

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          Author and article information

          Contributors
          tenllado@cib.csic.es
          Journal
          Mol Plant Pathol
          Mol. Plant Pathol
          10.1111/(ISSN)1364-3703
          MPP
          Molecular Plant Pathology
          John Wiley and Sons Inc. (Hoboken )
          1464-6722
          1364-3703
          11 October 2018
          February 2019
          : 20
          : 2 ( doiID: 10.1111/mpp.2019.20.issue-2 )
          : 194-210
          Affiliations
          [ 1 ] Departamento de Biotecnología Microbiana y de Plantas Centro de Investigaciones Biológicas, CSIC Madrid 28040 Spain
          [ 2 ] Centre SÈVE, Département de Biologie Université de Sherbrooke Sherbrooke QC J1K 2R1 Canada
          Author notes
          [*] [* ] Correspondence: Email: tenllado@ 123456cib.csic.es

          Author information
          http://orcid.org/0000-0002-5349-7642
          Article
          PMC6637867 PMC6637867 6637867 MPP12748
          10.1111/mpp.12748
          6637867
          30192053
          a88f8503-da5a-45e0-853c-4f4605008278
          © 2018 BSPP and John Wiley & Sons Ltd
          History
          Page count
          Figures: 9, Tables: 0, Pages: 17, Words: 22673
          Funding
          Funded by: Ministry of Economy and Competitiveness of Spain
          Award ID: BIO2016-75619-R
          Funded by: National Science and Engineering Research Council of Canada
          Funded by: Spanish Ministry of Education, Culture and Sport
          Award ID: FPU12/01908
          Categories
          Original Article
          Original Articles
          Custom metadata
          2.0
          mpp12748
          February 2019
          Converter:WILEY_ML3GV2_TO_NLMPMC version:5.6.4 mode:remove_FC converted:10.06.2019

          viral synergism,unfolded protein response,systemic necrosis, Potato virus X ,endoplasmic reticulum,cell death

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