bZIP60 and Bax inhibitor 1 contribute IRE1‐dependent and independent roles to potexvirus infection

Author:

Adhikari Binita1ORCID,Gayral Mathieu12ORCID,Herath Venura13ORCID,Bedsole Caleb Oliver1ORCID,Kumar Sandeep4ORCID,Ball Haden1ORCID,Atallah Osama1ORCID,Shaw Brian1ORCID,Pajerowska‐Mukhtar Karolina M.5ORCID,Verchot Jeanmarie1ORCID

Affiliation:

1. Department of Plant Pathology and Microbiology Texas A&M University 496 Olsen Blvd College Station TX 77845 USA

2. Agroécologie, INRAE Institut Agro Dijon, Université de Bourgogne 26, bd Docteur Petitjean‐BP 87999 Dijon Cedex 21079 France

3. Department of Agricultural Biology, Faculty of Agriculture University of Peradeniya Peradeniya 20400 Sri Lanka

4. Department of Plant Pathology, College of Agriculture Odisha University of Agriculture and Technology Bhubaneswar Odisha 751003 India

5. Department of Biology University of Alabama at Birmingham 902 14th Street South Birmingham Alabama 35294 USA

Abstract

Summary IRE1, BI‐1, and bZIP60 monitor compatible plant–potexvirus interactions though recognition of the viral TGB3 protein. This study was undertaken to elucidate the roles of three IRE1 isoforms, the bZIP60U and bZIP60S, and BI‐1 roles in genetic reprogramming of cells during potexvirus infection. Experiments were performed using Arabidopsis thaliana knockout lines and Plantago asiatica mosaic virus infectious clone tagged with the green fluorescent protein gene (PlAMV‐GFP). There were more PlAMV‐GFP infection foci in ire1a/b, ire1c, bzip60, and bi‐1 knockout than wild‐type (WT) plants. Cell‐to‐cell movement and systemic RNA levels were greater bzip60 and bi‐1 than in WT plants. Overall, these data indicate an increased susceptibility to virus infection. Transgenic overexpression of AtIRE1b or StbZIP60 in ire1a/b or bzip60 mutant background reduced virus infection foci, while StbZIP60 expression influences virus movement. Transgenic overexpression of StbZIP60 also confers endoplasmic reticulum (ER) stress resistance following tunicamycin treatment. We also show bZIP60U and TGB3 interact at the ER. This is the first demonstration of a potato bZIP transcription factor complementing genetic defects in Arabidopsis. Evidence indicates that the three IRE1 isoforms regulate the initial stages of virus replication and gene expression, while bZIP60 and BI‐1 contribute separately to virus cell‐to‐cell and systemic movement.

Funder

Division of Integrative Organismal Systems

Publisher

Wiley

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