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一株新型伯克霍尔德氏菌菌株能有效抑制禾谷镰刀菌生长和脱氧雪腐镰刀菌烯醇(DON)的产生。

A novel Burkholderia pyrrocinia strain effectively inhibits Fusarium graminearum growth and deoxynivalenol (DON) production.

机构信息

School of Plant Protection, Anhui Agricultural University, Hefei, China.

Laboratory of Mycology and Plant Fungal Diseases, School of Plant Protection, Anhui Agricultural University, Hefei, China.

出版信息

Pest Manag Sci. 2024 Oct;80(10):4883-4896. doi: 10.1002/ps.8200. Epub 2024 May 30.

DOI:10.1002/ps.8200
PMID:38817082
Abstract

BACKGROUND

Fusarium graminearum is a devastating fungal pathogen that poses a significant threat to global wheat production and quality. Control of this toxin-producing pathogen remains a major challenge. This study aimed to isolate strains with antagonistic activity against F. graminearum and at the same time to analyze the synthesis of deoxynivalenol (DON), in order to provide a new basis for the biological control of FHB.

RESULTS

Total of 69 microorganisms were isolated from the soil of a wheat-corn crop rotation field, and an antagonistic bacterial strain F12 was identified as Burkholderia pyrrocinia by molecular biology and carbon source utilization. F. graminearum control by strain F12 showed excellent biological activities under laboratory conditions (95.8%) and field testing (63.09%). Meanwhile, the DON content of field-treated wheat grains was detected the results showed that F12 have significantly inhibited of DON, which was further verified by qPCR that F12 produces secondary metabolites that inhibit the expression of DON and pigment-related genes. In addition, the sterile fermentation broth of F12 not only inhibited mycelial growth and spore germination, but also prevented mycelia from producing spores.

CONCLUSION

In this study B. pyrrocinia was reported to have good control of FHB and inhibition of DON synthesis. This novel B. pyrrocinia F12 is a promising biological inoculant, providing possibilities for controlling FHB, and a theoretical basis for the development of potential biocontrol agents and biofertilizers for agricultural use. © 2024 Society of Chemical Industry.

摘要

背景

禾谷镰刀菌是一种具有破坏性的真菌病原体,对全球小麦生产和质量构成重大威胁。对这种产毒病原体的控制仍然是一个主要挑战。本研究旨在分离对禾谷镰刀菌具有拮抗活性的菌株,同时分析脱氧雪腐镰刀菌烯醇(DON)的合成,为禾谷镰刀菌的生物防治提供新的依据。

结果

从小麦-玉米轮作地的土壤中分离出 69 种微生物,通过分子生物学和碳源利用鉴定拮抗菌株 F12 为恶臭假单胞菌。在实验室条件下(95.8%)和田间试验(63.09%)中,菌株 F12 对禾谷镰刀菌的控制表现出优异的生物活性。同时,田间处理的小麦籽粒中 DON 含量的检测结果表明,F12 显著抑制了 DON 的产生,进一步通过 qPCR 验证,F12 产生的次生代谢物抑制了 DON 和色素相关基因的表达。此外,F12 的无菌发酵液不仅抑制了菌丝生长和孢子萌发,还阻止了菌丝产生孢子。

结论

本研究报道了恶臭假单胞菌对赤霉病的良好控制和 DON 合成的抑制作用。这种新型恶臭假单胞菌 F12 是一种很有前途的生物接种剂,为赤霉病的防治提供了可能性,为开发潜在的农业用生物防治剂和生物肥料提供了理论依据。 © 2024 化学工业协会。

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