Effector CLas0185 targets methionine sulphoxide reductase B1 of Citrus sinensis to promote multiplication of ‘Candidatus Liberibacter asiaticus’ via enhancing enzymatic activity of ascorbate peroxidase 1

Author:

Zhang Shushe12ORCID,Wang Xuefeng1ORCID,Zhao Tingchang2,Zhou Changyong1

Affiliation:

1. Citrus Research Institute Southwest University, National Citrus Engineering Research Center Chongqing China

2. State Key Laboratory for Biology of Plant Diseases and Insect Pests Chinese Academy of Agriculture Sciences, Institute of Plant Protection Beijing China

Abstract

AbstractCitrus huanglongbing (HLB) has been causing enormous damage to the global citrus industry. As the main causal agent, ‘Candidatus Liberibacter asiaticus’ (CLas) delivers a set of effectors to modulate host responses, while the modes of action adopted remain largely unclear. Here, we demonstrated that CLIBASIA_00185 (CLas0185) could attenuate reactive oxygen species (ROS)‐mediated cell death in Nicotiana benthamiana. Transgenic expression of CLas0185 in Citrus sinensis ‘Wanjincheng’ enhanced plant susceptibility to CLas. We found that methionine sulphoxide reductase B1 (CsMsrB1) was targeted by the effector, and its abundance was elevated in CLas0185‐transgenic citrus plants. Their interaction promoted CLas proliferation. We then determined that CsMsrB1 sustained redox state and enzymatic activity of ascorbate peroxidase 1 (CsAPX1) under oxidative stress. The latter reduced H2O2 accumulation and was associated with host susceptibility to CLas infection. Consistently, citrus plants expressing CLas0185 and CsMsrB1 conferred enhanced APX activity and decreased H2O2 content. Taken together, these findings revealed how CLas0185 benefits CLas colonization by targeting CsMsrB1, which facilitated the antioxidant activity and depressed ROS during pathogen infection.

Funder

National Key Research and Development Program of China

Publisher

Wiley

Reference74 articles.

1. Regulation of heat shock proteins 70 and their role in plant immunity;Berka M.;Journal of Experimental Botany,2022

2. ‘Candidatus Liberibacter asiaticus’ accumulation in the phloem inhibits callose and reactive oxygen species;Bernardini C.;Plant Physiology,2022

3. Challenges for managing Candidatus Liberibacter spp. (huanglongbing disease pathogen): current control measures and future directions;Blaustein R.A.;Phytopathology,2018

4. Selective redox signaling shapes plant–pathogen interactions;Bleau J.R.;Plant Physiology,2021

5. Huanglongbing: a destructive, newly‐emerging, century‐old disease of citrus;Bóve J.;Journal of Plant Pathology,2006

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