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来自[具体来源未提及]的热稳定激发子与PbrPOD1相互作用以促进梨的抗性并抵御苦腐病。

Thermostable Elicitor from Interacts with PbrPOD1 to Promote Pear Resistance and Protect against Bitter Rot Disease.

作者信息

Liu Shuang, Feng Jiao, Su Yuhan, Wang Zhenjun, Liu Jianying, Nie Jiajun

机构信息

Anhui Province Key Laboratory of Crop Integrated Pest Management, Anhui Agricultural University, Hefei 230036, China.

State Key Laboratory for Crop Stress Resistance and High-Efficiency Production, Northwest A&F University, Yangling 712100, Shaanxi, China.

出版信息

J Agric Food Chem. 2025 Jun 25;73(25):15650-15660. doi: 10.1021/acs.jafc.5c01510. Epub 2025 Jun 12.

Abstract

Exploitation of elicitor-induced resistance represents a promising strategy for crop disease management. Although numerous elicitors have been identified, the mechanisms by which they trigger crop resistance have remained largely uncharacterized. Pear anthracnose (pear bitter rot), caused by the broad-host-range pathogen , results in significant economic losses. In this study, we functionally characterized CfCE61, an elicitor secreted by . Deletion of increased fungal virulence in the pear fruit, suggesting that CfCE61 may activate pear immunity. Consistent with this, the recombinant CfCE61 protein enhanced fruit immunity and resistance against . Notably, heat treatment did not impair CfCE61-triggered immunity, indicating its thermostability. Through immunoprecipitation-mass spectrometry (IP-MS) and protein-protein interaction assays, we demonstrated that CfCE61 associates with the peroxidase PbrPOD1 and . Transient overexpression of PbrPOD1 significantly enhanced the resistance against in pear leaves. Further analysis revealed that CfCE61 promotes PbrPOD1 enzyme activity without altering its protein abundance. Co-treatment with CfCE61 and PbrPOD1 synergistically improved the pear resistance to . Our findings illustrate that CfCE61 acts as a thermostable elicitor by interacting with PbrPOD1 and enhancing peroxidase activity to protect against pear bitter rot disease.

摘要

利用诱导子诱导的抗性是作物病害管理的一种有前景的策略。尽管已鉴定出许多诱导子,但它们触发作物抗性的机制在很大程度上仍不清楚。由广寄主范围病原菌引起的梨炭疽病(梨苦腐病)会造成重大经济损失。在本研究中,我们对一种由……分泌的诱导子CfCE61进行了功能鉴定。缺失……会增加梨果实中的真菌毒力,这表明CfCE61可能激活梨的免疫反应。与此一致的是,重组CfCE61蛋白增强了果实的免疫力和对……的抗性。值得注意的是,热处理并未损害CfCE61触发的免疫反应,表明其热稳定性。通过免疫沉淀-质谱分析(IP-MS)和蛋白质-蛋白质相互作用分析,我们证明CfCE61与过氧化物酶PbrPOD1和……相关联。PbrPOD1的瞬时过表达显著增强了梨叶片对……的抗性。进一步分析表明,CfCE61促进PbrPOD1的酶活性但不改变其蛋白质丰度。CfCE61和PbrPOD1共同处理可协同提高梨对……的抗性。我们的研究结果表明,CfCE61通过与PbrPOD1相互作用并增强过氧化物酶活性来作为一种热稳定诱导子,以抵御梨苦腐病。

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