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Candicidin Isomer Production Is Essential for Biocontrol of Cucumber Rhizoctonia Rot by Streptomyces albidoflavus W68

机译:念珠菌素异构体的生产对于白黄链霉菌 W68 对黄瓜根瘤菌腐烂病的生物防治至关重要

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摘要

Diseases caused by soilborne fungal pathogens result in significant crop yield losses and quality reduction. Streptomyces albidoflavus strain W68 is effective in controlling several soilborne fungal diseases. To identify antifungal substances critical for biocontrol activity of W68, the genome of W68 was sequenced and a linear chromosome of 6.80Mb was assembled. A total of 21 secondary metabolite biosynthesis gene clusters (BGCs), accounting for 12.27 of the genome, were identified. Core gene deletion mutants for each of all 8 BGCs for nonribosomal peptide synthetases and polyketide synthases were created. Among them, only the mutant lacking ctg1-5755 (the gene was renamed as fscD_(W68)) in BGC 19, which shares 100 sequence similarity with the BGC for candicidin synthesis, showed obvious reduction in antifungal activity. A pot experiment revealed that biocontrol effects of the ΔfscD_(W68) mutant in Rhizoctonia rot of cucumber were also significantly compromised relative to W68. Liquid chromatographymass spectrometry (LC-MS) analysis revealed that W68 but not the ΔfscD_(W68) mutant can produce candicidin isomers, indicating that the production of candicidin isomers is key for antifungal activity and biocontrol activity of S. albidoflavus W68. IMPORTANCE This study reports that candicidin-like secondary metabolites produced by microbial cells in natural soil environments can effectively control soilborne fungal diseases, revealing a novel mechanism of microbial biocontrol agents. We demonstrated that the main antifungal activity and biocontrol activity of Streptomyces albidoflavus strain W68 are attributable to the production of candicidin isomers, suggesting that gene clusters for candicidin-like compound biosynthesis might be used as molecular markers to screen and breed microbial strains for biocontrol agent development.
机译:由土壤传播的真菌病原体引起的疾病会导致作物产量的重大损失和质量下降。白黄链霉菌菌株 W68 可有效控制多种土传真菌病害。为了鉴定对W68的生防活性至关重要的抗真菌物质,对W68的基因组进行了测序,并组装了6.80Mb的线性染色体。共鉴定出21个次生代谢物生物合成基因簇(BGCs),占基因组的12.27%。为非核糖体肽合成酶和聚酮合酶的所有 8 个 BGC 中的每一个都创建了核心基因缺失突变体。其中,只有BGC 19中缺乏ctg1-5755(基因更名为fscD_(W68))的突变体,与克隆菌素合成的BGC具有100%的序列相似性,其抗真菌活性明显降低。盆栽实验表明,Δ fscD_(W68)突变体在黄瓜根瘤菌腐烂中的生防效果也明显低于W68。液相色谱质谱(LC-MS)分析表明,W68而非Δ fscD_(W68)突变体可以产生念珠菌素异构体,表明念珠菌素异构体的产生是白黄链球菌W68抗真菌活性和生防活性的关键。重要性 本研究报道了微生物细胞在自然土壤环境中产生的念珠菌素样次生代谢产物可以有效控制土传真菌病害,揭示了微生物生防剂的新机制。结果表明,白黄链霉菌W68菌株的主要抗真菌活性和生防活性归因于念珠菌素异构体的产生,提示念珠菌素样化合物生物合成的基因簇可作为分子标记,筛选和育种微生物菌株,用于生物防治剂开发。

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