The effector protein CfCFEM19 of Colletotrichum fructicola targets chitinase ChtBD1-P1 of Camellia oleifera to promote virulence

Plants defend against pathogen invasion by synthesizing defense-related enzymes. Pathogens promote their infection by secreting effectors that suppress plant defense responses. However, little is known about how CFEM effector proteins from pathogenic fungi act to suppress plant immunity. In this study, we identified a secreted CFEM effector protein CfCFEM19 from Colletotrichum fructicola . We found that the CfCFEM19 can suppress leaf necrosis in Nicotiana benthamiana plants that is caused by BAX or INF1. Moreover, overexpression of CfCFEM19 significantly increases the susceptibility of plants to pathogenic fungi. The deletion of the CfCFEM19 gene, although it did not significantly affect mycelial growth, response to various stresses, and appressorium formation of C. fructicola , reduced the virulence of the fungus. Notably, CfCFEM19 interacts with the chitinase ChtBD1-P1, which is localized in the cell membrane in Camellia oleifera . ChtBD1-P1 can inhibit the infection of C. fructicola , while CfCFEM19 can affect the function of ChtBD1-P1. These findings indicate that CfCFEM19, as an important pathogenic factor in C. fructicola ,. It can weaken the resistance of C. oleifera to C. fructicola by targeting ChtBD1-P1. This study provides a foundation for the development of precise and highly effective green pesticides against C. oleifera anthracnose in the future, as well as important insights into the mechanisms of fungal infection and plant-microbe interactions.

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Journal
Industrial Crops and Products
Published
2026-08-25
DOI
https://doi.org/10.1016/j.indcrop.2026.123826
Primary Topic
Plant-Microbe Interactions and Immunity
Type
article
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article

The effector protein CfCFEM19 of Colletotrichum fructicola targets chitinase ChtBD1-P1 of Camellia oleifera to promote virulence

Jing Wu, Guoying Zhou, Anhua Bao, Xingzhou Chen et al.
Industrial Crops and Products
Plant-Microbe Interactions and Immunity
article

The effector protein CfCFEM19 of Colletotrichum fructicola targets chitinase ChtBD1-P1 of Camellia oleifera to promote virulence

Jing Wu, Guoying Zhou, Anhua Bao, Xingzhou Chen, Junang Liu, Hong Liu, Ying Wang, Yanmei Pan
article en

Abstract

Plants defend against pathogen invasion by synthesizing defense-related enzymes. Pathogens promote their infection by secreting effectors that suppress plant defense responses. However, little is known about how CFEM effector proteins from pathogenic fungi act to suppress plant immunity. In this study, we identified a secreted CFEM effector protein CfCFEM19 from Colletotrichum fructicola . We found that the CfCFEM19 can suppress leaf necrosis in Nicotiana benthamiana plants that is caused by BAX or INF1. Moreover, overexpression of CfCFEM19 significantly increases the susceptibility of plants to pathogenic fungi. The deletion of the CfCFEM19 gene, although it did not significantly affect mycelial growth, response to various stresses, and appressorium formation of C. fructicola , reduced the virulence of the fungus. Notably, CfCFEM19 interacts with the chitinase ChtBD1-P1, which is localized in the cell membrane in Camellia oleifera . ChtBD1-P1 can inhibit the infection of C. fructicola , while CfCFEM19 can affect the function of ChtBD1-P1. These findings indicate that CfCFEM19, as an important pathogenic factor in C. fructicola ,. It can weaken the resistance of C. oleifera to C. fructicola by targeting ChtBD1-P1. This study provides a foundation for the development of precise and highly effective green pesticides against C. oleifera anthracnose in the future, as well as important insights into the mechanisms of fungal infection and plant-microbe interactions.

Industrial Crops and ProductsVol. 251
Central South University of Forestry and Technology (CN), Central South University (CN), Hunan Provincial Center for Disease Control and Prevention (CN), State Laboratory (IE), Ministry of Forests and Soil Conservation (NP)
Ministry of Science and Technology, Nanjing Forestry University, National Natural Science Foundation of China
Life in Land
Openalex Percentile: Top 12%
Plant-Microbe Interactions and Immunity
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