根际
生物
根腐病
栽培
代谢物
微生物种群生物学
农学
植物
植物对草食的防御
病菌
生物技术
土壤微生物学
抗菌剂
细菌
抗真菌
有益生物体
植物抗病性
酶分析
微生物
接种
根系
次生代谢物
园艺
酶
微生物学
微生物生态学
作者
X. -Z. Zhang,Xinshun Li,Jinxin Liu,Shuni Wang,Yonggang Li
摘要
The composition of the root microbiota plays a crucial role in plant responses to soil-borne pathogens. Nevertheless, the defence mechanisms underlying multi-resistant soybean cultivars ability to combat major root rot pathogens remain poorly understood. This study aimed to elucidate how a resistant soybean, Heinong 531 (HN531), mitigates root rot through root metabolite secretion, microbial interactions, and biochemical strategies. We analysed the rhizosphere microbial community, secretion of antifungal compounds, and soil enzyme activities in HN531. A "protective microbial consortium" was identified and its role in pathogen suppression was investigated. Our results indicate that this community is associated with an enrichment of beneficial microorganisms, enhanced plant defence capacity, and increased soil enzyme activity, correlating with a disease control efficacy of up to 70% against root rot. These interactions involve the secretion of antimicrobial compounds and partially reshape the rhizosphere microbial structure, forming a protective microecological barrier. Our findings provide novel molecular targets for disease-resistant soybean breeding and highlight potential microbial resources for sustainable agriculture.
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