CsBZIP40 confers resistance against citrus bacterial canker by repressing CsWRKY43-CsPrx53/CsSOD13 cascade mediated ROS scavenging

Author:

Li Qiang123ORCID,Qin Xiujuan1,Zhang Miao1,Yu Qiyuan1,Jia Ruirui1,Fan Jie1,Huang Xin1,Fu Jia1,Zhang Chenxi1,Xian Baohang1,Yang Wen1,Long Qin123,Peng Aihong123,Yao Lixiao123ORCID,Chen Shanchun123,He Yongrui123

Affiliation:

1. Southwest University/Chinese Academy of Agricultural Sciences Citrus Research Institute, , Beibei, Chongqing 400712, China

2. National Citrus Engineering Research Center , Beibei, Chongqing 400712, China

3. Southwest University National Citrus Improvement Center, , Chongqing 400712, China

Abstract

Abstract As the bacterial etiologic agent causing citrus bacterial canker (CBC), Xanthomonas citri subsp. citri (Xcc) seriously impacts citrus plantation and fruit production globally. In an earlier study, we demonstrated that CsBZIP40 can positively impact CBC resistance in the sweet orange (Citrus sinensis). However, the mechanistic basis for the protective benefits conferred by CsBZIP40 is yet to be delineated. Here, we show that CsBZIP40 positively regulates CBC resistance and reactive oxygen species (ROS) homeostasis in transgenic sweet orange overexpressing CsBZIP40. CsBZIP40 directly binds to the TGA-box of the CsWRKY43 promoter to repress its transcriptional activity. CsWRKY43 overexpression induces CBC susceptibility in transgenic sweet oranges. In contrast, its inhibition produces strong resistance to CBC. CsWRKY43 directly binds to the W-boxes of the CsPrx53 and CsSOD13 promoters to positively regulate the activities of these antioxidant enzymes, resulting in the negative regulation of ROS homeostasis and CBC resistance in sweet orange plants. CsPrx53/CsSOD13 knockdown enhances ROS accumulation and CBC resistance. Overall, our results outline a regulatory pathway through which CsBZIP40 transcriptionally represses CsWRKY43-CsPrx53/CsSOD13 cascade-mediated ROS scavenging in a manner conducive to CBC resistance. These mechanisms underscore the potential importance of CsBZIP40, CsWRKY43, CsPrx53, and CsSOD13, providing promising strategies for the prevention of CBC.

Funder

Earmarked Funds for the China Agriculture Research System

National Natural Sciences Foundation of China

National Key Research and Development Program of China

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

Reference44 articles.

1. Moss transcription factors regulating development and defense responses to stress;Reboledo;J Exp Bot,2022

2. CsBZIP40, a BZIP transcription factor in sweet orange, plays a positive regulatory role in citrus bacterial canker response and tolerance;Li;PLoS One,2019

3. Genome scale transcriptional response diversity among ten ecotypes of Arabidopsis thaliana during heat stress;Barah;Front Plant Sci,2013

4. Genomic surveys and expression analysis of bZIP gene family in castor bean (Ricinus communis L.);Jin;Planta,2014

5. Genomic survey and gene expression analysis of the basic leucine zipper transcription factor family in rice;Nijhawan;Plant Physiol,2008

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