OMIX007062

1Summary
Title NatA Complex-mediated Acetylation Promotes the Tolerance of Phytopathogenic Fungus Verticillium dahliae to Biocontrol Bacterium
Description Here, we identified that the Bacillus amyloliquefaciens strain TG1-2 demonstrated broad-spectrum antimicrobial activity against various phytopathogens. Further exploration revealed that surfactins are the primary compounds responsible for this antimicrobial effect. A genetic screen in the phytopathogenic fungus Verticillium dahliae showed that the NatA acetyltransferase complex plays a crucial role in promoting fungal tolerance by counteracting TG1-2-induced apoptosis. Notably, TG1-2 treatment significantly inhibited the Nat A complex-mediated acetylation, enhancing fungal apoptosis. In summary, our study uncovers a novel antagonistic mechanism employed by phytopathogenic fungus to resist biocontrol bacteria, providing new targets and a theoretical foundation for enhancing the effectiveness of biocontrol bacteria in developing biopesticides against phytopathogenic fungi.
Organism Verticillium dahliae
Data Type Metabolome Data by Mass Spectrometry (MS)
Data Accessibility Open-access
BioProject PRJCA028780
Release Date 2024-08-03
Submitter Yingchao Zhang (1037896629@qq.com)
Organization CAS Center for Excellence in Molecular Plant Sciences / Institute of Plant Physiology and Ecology
Submission Date 2024-08-02
2Files & Download

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File ID File Title Number/Samples File Type File Size File Suffix Download
OMIX007062-01 TG1-2 replicate 1 14 Metabolome Data by Mass Spectrometry (MS) 634.43 MB zip
OMIX007062-02 DH5a replicate_2 14 Metabolome Data by Mass Spectrometry (MS) 629.22 MB zip
OMIX007062-03 TG1-2 replicate 2 14 Metabolome Data by Mass Spectrometry (MS) 467.22 MB zip
OMIX007062-04 DH5a replicate_1 14 Metabolome Data by Mass Spectrometry (MS) 445.64 MB zip
3Relevant Publications
Paper Title Journal Name Publish Time Accession Citing Type
Reduced fungal protein acetylation mediates the antimicrobial activity of a rhizosphere bacterium against a phytopathogenic fungus Nature Communications 2025-07 OMIX007062 Deposit

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