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食品安全与生物防治;解淀粉芽胞杆菌 FB2 对农业真菌病原菌的基因组分析及抗菌潜力。

Food safety and biological control; genomic insights and antimicrobial potential of Bacillus velezensis FB2 against agricultural fungal pathogens.

机构信息

Industrial Biotechnology Division, National Institute for Biotechnology and Genetic Engineering College, Pakistan Institute of Engineering and Applied Sciences (NIBGE-C, PIEAS), Faisalabad, Pakistan.

Health Biotechnology Division, National Institute for Biotechnology and Genetic Engineering College, Pakistan Institute of Engineering and Applied Sciences (NIBGE-C, PIEAS), Faisalabad, Pakistan.

出版信息

PLoS One. 2023 Nov 14;18(11):e0291975. doi: 10.1371/journal.pone.0291975. eCollection 2023.

Abstract

Development of natural, broad-spectrum, and eco-friendly bio-fungicides is of high interest in the agriculture and food industries. In this context, Bacillus genus has shown great potential for producing a wide range of antimicrobial metabolites against various pathogens. A Bacillus velezensis strain FB2 was isolated from an agricultural field of National Institute for Biotechnology and Genetic Engineering (NIBGE) Faisalabad, Pakistan, exhibiting good antifungal properties. The complete genome of this strain was sequenced, and its antifungal potential was assayed by dual culture method. Moreover, structural characterization of its antifungal metabolites, produced in vitro, were studied. Genome analysis and mining revealed the secondary metabolite gene clusters, encoding non-ribosomal peptides (NRPs) production (e.g., surfactin, iturin and fengycin) and polyketide (PK) synthesis (e.g., difficidin, bacillaene and macrolactin). Furthermore, the Bacillus velezensis FB2 strain was observed to possess in vitro antifungal activity; 41.64, 40.38 and 26% growth inhibition against major fungal pathogens i.e. Alternaria alternata, Fusarium oxysporum and Fusarium solani respectively. Its lipopeptide extract obtained by acid precipitation method was also found effective against the above-mentioned fungal pathogens. The ESI-MS/MS analysis indicated various homologs of surfactin and iturin-A, responsible for their antifungal activities. Overall, this study provides a better understanding of Bacillus velezensis FB2, as a promising candidate for biocontrol purposes, acting in a safe and sustainable way, to control plant pathogens.

摘要

开发天然、广谱且环保的生物杀菌剂在农业和食品工业中具有很高的关注度。在这方面,芽孢杆菌属显示出了生产针对各种病原体的广泛抗菌代谢物的巨大潜力。从巴基斯坦白沙瓦国家生物技术和基因工程研究所(NIBGE)的农田中分离到一株芽孢杆菌 velezensis FB2 菌株,该菌株表现出良好的抗真菌特性。对该菌株的全基因组进行了测序,并通过双培养法测定了其抗真菌潜力。此外,还研究了其在体外产生的抗真菌代谢物的结构特征。基因组分析和挖掘揭示了编码非核糖体肽(NRPs)生产(如表面活性剂、伊枯草菌素和芬枯草菌素)和聚酮(PK)合成(如 difficidin、杆菌素和大环内酯)的次生代谢物基因簇。此外,还观察到芽孢杆菌 velezensis FB2 菌株在体外具有抗真菌活性;对主要真菌病原体如链格孢菌、尖孢镰刀菌和腐皮镰刀菌的生长抑制率分别为 41.64%、40.38%和 26%。通过酸沉淀法获得的其脂肽提取物也对上述真菌病原体有效。ESI-MS/MS 分析表明,表面活性剂和伊枯草菌素-A 的各种同系物负责其抗真菌活性。总的来说,这项研究提供了对芽孢杆菌 velezensis FB2 的更好理解,作为一种有前途的生物防治候选物,以安全和可持续的方式作用于植物病原体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a6f/10645337/c8a9677ef0b7/pone.0291975.g001.jpg

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