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酚酸降解菌耐盐芽胞杆菌YNK-FB0022对番茄枯萎病罹病土壤微生物多样性的影响

王宇 廖永琴 贾健鹏 刘鑫 施竹丽 施竹凤 普特 何飞飞 杨佩文

生物技术通报2026,Vol.42Issue(5):101-112,12.
生物技术通报2026,Vol.42Issue(5):101-112,12.DOI:10.13560/j.cnki.biotech.bull.1985.2025-1115

酚酸降解菌耐盐芽胞杆菌YNK-FB0022对番茄枯萎病罹病土壤微生物多样性的影响

Effects of Phenolic Acid-degrading Bacterium Bacillus halotolerans YNK-FB0022 on Microbial Diversity in Soil Infected with Tomato Fusarium Wilt

王宇 1廖永琴 2贾健鹏 1刘鑫 1施竹丽 1施竹凤 2普特 2何飞飞 3杨佩文2

作者信息

  • 1. 云南大学农学院,昆明 650504||云南省农业科学院农业环境资源研究所,昆明 650205
  • 2. 云南省农业科学院农业环境资源研究所,昆明 650205
  • 3. 云南大学农学院,昆明 650504
  • 折叠

摘要

Abstract

[Objective]To clarify the regulatory effect of salt-tolerant Bacillus halotolerans YNK-FB0022 with phenolic acid-degrading activity on the microbial diversity and community structure of diseased soil,verify its control efficacy against tomato fusarium wilt,and provide a theoretical basis for the biological control of tomato fusarium wilt in continuous cropping systems.[Method]In this study,continuous cropping soil frequently affected by tomato fusarium wilt was collected from the Honghe region,and four indoor pot experiment treatments were set up:blank control group(CK),benzoic acid addition group(CK1,simulating the phenolic acid accumulation stress environment in continuous cropping soil),benzoic acid+YNK-FB0022 bacterial solution addition group(T1),and YNK-FB0022 bacterial solution addition group(T2).By determining the disease index of tomato fusarium wilt and agronomic traits,analyzing soil physicochemical properties,the control mechanism of salt-tolerant Bacillus halotolerans YNK-FB0022 on tomato fusarium wilt was clarified.[Result]Compared with CK,the YNK-FB0022 bacterial solution treatment significantly increased tomato plant height(15.92%),stem diameter(10.92%),and root length(11.45%)(P<0.05);the activities of sucrase,urease,and acid phosphatase—key enzymes involved in soil carbon,nitrogen,and phosphorus cycles—significantly increased by 33.25%,72.06%,and 74.69%(P<0.05),respectively.Under T2 treatment,the Ace index of bacterial α-diversity significantly increased by 12.07%compared with CK,while the fungal Ace index and Chao1 index significantly decreased by 17.83% and 16.52%respectively.Beta diversity PCA analysis showed that the bacterial and fungal communities in T2 treatment were significantly separated from those in CK and CK1 treatments,while the communities in CK and CK1 treatments had high aggregation and no significant difference(P<0.05).The results of microbial community structure showed that the abundance of Actinobacteriota(a dominant bacterial phylum)and Glomeromycota(a dominant fungal phylum)significantly increased;the composition of bacterial community structure had a significant impact on the disease index of tomato fusarium wilt,and the strain treatment increased the complexity of the bacterial network structure.The results of SEM analysis indicated that YNK-FB0022 reduced the disease index of tomato fusarium wilt by improving soil physicochemical indicators,increasing soil enzyme activities,and enhancing the complexity of microbial network structure,thereby achieving disease control.[Conclusion]Salt-tolerant Bacillus halotolerans YNK-FB0022 demonstrates a promising control effect on tomato fusarium wilt by improving soil physicochemical properties,enhancing soil enzyme activities,effectively regulating the microbial diversity and community structure of diseased soil,and increasing the complexity of microbial network structure.It is a biocontrol strain with great potential.

关键词

耐盐芽胞杆菌/生物活性/番茄枯萎病/微生物多样性

Key words

Bacillus halotolerans/biological activity/Fusarium oxysporum f.sp.lycopersici/microbial diversity

引用本文复制引用

王宇,廖永琴,贾健鹏,刘鑫,施竹丽,施竹凤,普特,何飞飞,杨佩文..酚酸降解菌耐盐芽胞杆菌YNK-FB0022对番茄枯萎病罹病土壤微生物多样性的影响[J].生物技术通报,2026,42(5):101-112,12.

基金项目

中央引导地方科技发展资金项目(202407AC110006),云南省"兴滇英才支持计划"项目(XDYC-CYCX-2002-0071) (202407AC110006)

生物技术通报

1002-5464

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