Genomics Analysis Reveals the Potential Biocontrol Mechanism of Pseudomonas aeruginosa QY43 against Fusarium pseudograminearum

Author:

Meng Jiaxing1,Zan Feifei1,Liu Zheran1,Zhang Yuan1,Qin Cancan1,Hao Lingjun1,Wang Zhifang1,Wang Limin1,Liu Dongmei2,Liang Shen3,Li Honglian14,Li Haiyang1,Ding Shengli14ORCID

Affiliation:

1. College of Plant Protection, Henan Agricultural University, Zhengzhou 450046, China

2. Institute of Quality Standards and Testing Technology for Agro-Products, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China

3. Horticulture Research Institute, Henan Academy of Agricultural Sciences, Zhengzhou 450002, China

4. National Key Laboratory of Wheat and Maize Crop Science, Zhengzhou 450046, China

Abstract

Fusarium crown rot (FCR) in wheat is a prevalent soil-borne disease worldwide and poses a significant threat to the production of wheat (Triticum aestivum) in China, with F. pseudograminearum being the dominant pathogen. Currently, there is a shortage of biocontrol resources to control FCR induced by F. pseudograminearum, along with biocontrol mechanisms. In this study, we have identified 37 strains of biocontrol bacteria displaying antagonistic effects against F. pseudograminearum from over 8000 single colonies isolated from soil samples with a high incidence of FCR. Among them, QY43 exhibited remarkable efficacy in controlling FCR. Further analysis identified the isolate QY43 as Pseudomonas aeruginosa, based on its colony morphology and molecular biology. In vitro, QY43 significantly inhibited the growth, conidial germination, and the pathogenicity of F. pseudograminearum. In addition, QY43 exhibited a broad spectrum of antagonistic activities against several plant pathogens. The genomics analysis revealed that there are genes encoding potential biocontrol factors in the genome of QY43. The experimental results confirmed that QY43 secretes biocontrol factor siderophores and pyocyanin. In summary, QY43 exhibits a broad spectrum of antagonistic activities and the capacity to produce diverse biocontrol factors, thereby showing substantial potential for biocontrol applications to plant disease.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Henan Province of China

Science and Technology Planning Project of Henan Province of China

International (Regional) Cooperation and Exchange Program of the National Natural Science Foundation of China

Publisher

MDPI AG

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