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January 22, 2026Pest Management Science0 citations

Genomic and phenotypic analysis of Bacillus strains from Protaetia brevitarsis frass reveals plant growth promoting potential and biocontrol activity against Fusarium wheat crown rot

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SZShuan ZhaoHWHongyu WangTGTing Guo

Key Points

  • This research aims to assess Bacillus strains derived from Protaetia brevitarsis frass for their plant growth-promoting and antagonistic properties against Fusarium.
  • Isolated 47 bacterial strains from Protaetia brevitarsis frass.
  • Identified nine Bacillus strains with antagonistic activity against Fusarium graminearum.
  • Conducted in planta assays to evaluate growth promotion and biocontrol efficacy in wheat.
  • Performed complete genome sequencing on the elite Bacillus strain PBF3.
  • Nine Bacillus strains exhibited significant antagonism against Fusarium graminearum.
  • Strains PBF3, PBF5, and PBF9 achieved biocontrol efficacies of 70.32%, 69.03%, and 66.45%, respectively.
  • Genome analysis of PBF3 revealed 4841 protein-coding genes and identified secondary metabolite biosynthesis gene clusters.
  • The findings indicate potential for developing dual-purpose bioinoculants.

Abstract

Abstract BACKGROUND The search for novel microbial agents is essential for advancing sustainable agriculture. Insect frass, a nutrient‐rich byproduct, represents a promising yet underexplored reservoir of beneficial microbes. This study explores the potential of frass derived from Protaetia brevitarsis larvae (PBL) as a source of multifunctional Bacillus strains that exhibit antagonistic activity against fungal pathogens and plant growth promotion. RESULTS A total of 47 bacterial strains, including 37 Bacillus strains, were isolated from PBL frass. Among these, nine strains belonging to five distinct Bacillus species, namely B. velezensis , B. subtilis , B. paralicheniformis , B. safensis and members of the B. pumilus group, exhibited significant in vitro antagonism against Fusarium graminearum . These nine Bacillus strains displayed diverse plant growth‐promoting traits, such as indole‐3‐acetic acid and siderophore production, as well as phosphate solubilization. In planta assays confirmed their ability to promote wheat growth and suppress Fusarium crown rot, with strains PBF3, PBF5 and PBF9 achieving biocontrol efficacies of 70.32%, 69.03% and 66.45%, respectively. Complete genome sequencing of the elite strain PBF3 revealed a genome size of 3.845 Mb, harboring 4841 protein‐coding genes. Average nucleotide identity analysis confirmed that PBF3 represents a novel strain within the species B. safensis . Genomic analysis identified three secondary metabolite biosynthesis gene clusters associated with known antimicrobial properties, along with a repertoire of putative novel compounds, suggesting potentially unique bioactivities. Genome mining further uncovered multiple key genes involved in plant growth promotion, root colonization, biofilm formation and stress tolerance. CONCLUSION PBL frass represents a valuable Bacillus strain source for the green control of Fusarium wheat crown rot. The convergence of phenotypic advantages and genomic potential in these strains underscores their promise for the development of dual‐purpose bioinoculants that combine plant growth promotion with the biocontrol of plant diseases, providing a sustainable solution for crop protection. © 2026 Society of Chemical Industry.

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Cite This Study

Zhao et al. (2026) studied this question.

synapsesocial.com/papers/6971bdad642b1836717e2632https://doi.org/10.1002/ps.70557
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