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March 21, 2026BMC Microbiology2 citationsOpen Access

A novel actinomycete, Streptomyces fugnipugnans sp. nov., with potent antifungal activity against Colletotrichum orbiculare

CHChuang HanJSJia-xin SongYGYu-han Guo

Key Points

  • The study aims to identify a novel actinomycete with potent antifungal properties against Colletotrichum orbiculare, the agent of cucumber anthracnose.
  • Isolated actinomycetes from pine tree rhizosphere soil.
  • Conducted morphological, physiological, and biochemical analyses to classify NEAU-S77ᵀ as a novel species.
  • Performed pot experiments to assess disease control efficacy of the spore suspension.
  • Optimized fermentation using cottonseed meal medium to enhance antifungal supernatant production.
  • Utilized whole-genome sequencing and AntiSMASH analysis for functional characterization of the strain.
  • The spore suspension reduced the disease index of cucumber anthracnose from 57.3% to 14.1%, achieving 80.3% control efficiency.
  • Fermentation optimization yielded a supernatant with a pathogen inhibition rate of 71.9%.
  • Whole-genome sequencing revealed 8,495 genes, with 390 linked to secondary metabolite biosynthesis and 354 related to antibiotic production.
  • Identified 66 biosynthetic gene clusters, some linked to known antifungal compounds.

Abstract

Cucumber anthracnose, which is caused by Colletotrichum orbiculare, significantly threatens the quality and production of crops. Chemical fungicides are frequently used to manage this disease, but increasing health and environmental concerns have highlighted the urgent need to develop sustainable biocontrol strategies. Actinomycetes were isolated from pine tree rhizosphere soil, and the NEAU-S77ᵀ strain was identified as a potent antagonist against C. orbiculare. Morphological, physiological, and biochemical analyses confirmed NEAU-S77ᵀ as a novel species, designated Streptomyces fugnipugnans sp. nov. Pot experiments showed that its spore suspension (1.0 × 10⁸ CFU/mL) significantly reduced the disease index of cucumber anthracnose from 57.3% to 14.1%, achieving a control efficiency of 80.3%. Fermentation optimization with cottonseed meal medium yielded a fermented supernatant with a pathogen inhibition rate of 71.9%. Whole-genome sequencing revealed a 10,269,260 bp genome (G + C content: 71.54%) encoding 8,495 genes. Functional annotation identified 390 genes related to secondary metabolite biosynthesis and 354 genes associated with antibiotic production. AntiSMASH analysis predicted 66 secondary metabolite biosynthetic gene clusters (BGCs), and comparison with the MIBiG database confirmed clusters encoding known antifungal compounds (e.g., 9-methylstreptimidone, mediomycin A, anisomycin, nigericin, bafilomycin B1). The novel strain S. fugnipugnans NEAU-S77ᵀ, isolated from pine rhizosphere soil, exhibits excellent biocontrol potential against C. orbiculare. Its high control efficiency, optimized fermentation performance in cottonseed meal medium, and rich repertoire of secondary metabolite BGCs (including those encoding known antifungal substances) highlight its prominent biocontrol activity and promising application in plant disease management.

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Cite This Study

Han et al. (2026) studied this question.

synapsesocial.com/papers/69be34d16e48c4981c672fbbhttps://doi.org/10.1186/s12866-026-04917-9
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