Deciphering Kiwifruit Bacterial Canker: Molecular Insights, Host–Pathogen Dynamics, and Innovative Management Strategies

Abstract Kiwifruit bacterial canker, caused by Pseudomonas syringae pv. actinidiae (Psa), severely threatens global kiwifruit production. Psa uses type III secretion, effectors, biofilms, and hormone manipulation to suppress the host immunity and achieve successful colonization. In response, kiwifruit activates multilayered defense systems involving pattern-triggered immunity, effector-triggered immunity, structural barriers, reactive oxygen species signaling, and hormone-mediated defense pathways. However, these immune mechanisms remain insufficiently validated in Actinidia species, limiting the translation of molecular findings to practical field applications. This review summarizes Psa epidemiology, pathogenicity, host defense (phenylpropanoids, lignin, and resistance inducers such as sulfur/saccharin), and integrated management strategies. Control measures include copper, antibiotics, biocontrol, induced resistance, microbiome engineering, CRISPR, and predictive-disease modeling. Several translational gaps persist, such as inconsistent efficacy, resistance to control measures, varying regulations, and insufficient long-term studies. Future priorities include precision diagnostics, resistance monitoring, region-specific integrated disease management, robust field trials, durable resistance breeding, and global collaboration for sustainable management.

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Publication Details

Journal
Journal of Agricultural and Food Chemistry
Published
2026-09-14
DOI
https://doi.org/10.1021/acs.jafc.5c12309
Primary Topic
Plant Pathogenic Bacteria Studies
Type
article
Field-Weighted Citation Impact
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article

Deciphering Kiwifruit Bacterial Canker: Molecular Insights, Host–Pathogen Dynamics, and Innovative Management Strategies

Umair Gul, Xianhui Yin, Youhua Long, Weizhen Wang et al.
Journal of Agricultural and Food Chemistry
Plant Pathogenic Bacteria Studies
article

Deciphering Kiwifruit Bacterial Canker: Molecular Insights, Host–Pathogen Dynamics, and Innovative Management Strategies

Umair Gul, Xianhui Yin, Youhua Long, Weizhen Wang, Kaijing Li, Najma Awan, Muhammad Arif, Usman Ahmad, Kapparage Kavinda Sandaruwan, Kun Guo
article en

Abstract

Abstract Kiwifruit bacterial canker, caused by Pseudomonas syringae pv. actinidiae (Psa), severely threatens global kiwifruit production. Psa uses type III secretion, effectors, biofilms, and hormone manipulation to suppress the host immunity and achieve successful colonization. In response, kiwifruit activates multilayered defense systems involving pattern-triggered immunity, effector-triggered immunity, structural barriers, reactive oxygen species signaling, and hormone-mediated defense pathways. However, these immune mechanisms remain insufficiently validated in Actinidia species, limiting the translation of molecular findings to practical field applications. This review summarizes Psa epidemiology, pathogenicity, host defense (phenylpropanoids, lignin, and resistance inducers such as sulfur/saccharin), and integrated management strategies. Control measures include copper, antibiotics, biocontrol, induced resistance, microbiome engineering, CRISPR, and predictive-disease modeling. Several translational gaps persist, such as inconsistent efficacy, resistance to control measures, varying regulations, and insufficient long-term studies. Future priorities include precision diagnostics, resistance monitoring, region-specific integrated disease management, robust field trials, durable resistance breeding, and global collaboration for sustainable management.

Journal of Agricultural and Food Chemistry
COMSATS University Islamabad (PK), Guizhou University (CN)
Openalex Percentile: Top 12%
Plant Pathogenic Bacteria Studies
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