Amity Institute of Microbial Technology, Amity University Uttar Pradesh, Noida, 201313, India.
Department of Botany, U.S. Ostwal P.G. College, Mangalwad, Chittorgarh, Rajasthan, 312024, India.
Curr Microbiol. 2024 Feb 5;81(3):88. doi: 10.1007/s00284-023-03586-5.
Antimicrobial peptides (AMPs) stand as a promising alternative to conventional pesticides, leveraging a multifaceted approach to combat plant pathogens. This study focuses on identifying and characterizing the AMP produced by Lactiplantibacillus argentoratensis strain IT, demonstrating potent antibacterial activity against various harmful microorganisms. Evaluation of AMPs' antibacterial activity was conducted through an agar well diffusion assay, a reliable method for assessing secondary metabolite antimicrobial efficacy. The study unveils the antimicrobial potential of the purified extract obtained from Lactiplantibacillus argentoratensis IT, isolated from goat milk. Notably, the AMP exhibited robust antibacterial activity against phytopathogens affecting solanaceous crops, including the Gram-negative Ralstonia solanacearum. Expression conditions and purification methods were optimized to identify the peptide's mass and sequence, utilizing LC-MS and SDS-PAGE. This paper underscores the application potential of Lactiplantibacillus spp. IT as a biocontrol agent for managing bacterial infectious diseases in plants. Results indicate optimal AMP production at 37 °C, with a culture broth pH of 5 during fermentation. The obtained peptide sequence corresponded to peaks at 842.5 and 2866.4 m/z ratio, with a molecular weight of approximately 5 kDa according to tricine SDS-PAGE analysis. In conclusion, this study lays the foundation for utilizing Lactiplantibacillus spp. IT derived AMPs in plant biocontrol strategies, showcasing their efficacy against bacterial phytopathogens. These findings contribute valuable insights for advancing sustainable agricultural practices.
抗菌肽 (AMPs) 作为传统农药的替代品具有广阔的前景,它采用了一种多方面的方法来对抗植物病原体。本研究专注于鉴定和描述由Lactiplantibacillus argentoratensis IT 产生的 AMP,该 AMP 对各种有害微生物具有强大的抗菌活性。通过琼脂孔扩散法评估 AMP 的抗菌活性,这是评估次级代谢物抗菌功效的可靠方法。该研究揭示了从山羊奶中分离出的Lactiplantibacillus argentoratensis IT 中纯化提取物的抗菌潜力。值得注意的是,该 AMP 对影响茄科作物的植物病原体具有强大的抗菌活性,包括革兰氏阴性的 Ralstonia solanacearum。通过优化表达条件和纯化方法,利用 LC-MS 和 SDS-PAGE 确定了肽的质量和序列。本文强调了 Lactiplantibacillus spp. IT 作为一种生物防治剂在管理植物细菌性传染病方面的应用潜力。结果表明,在 37°C 下、发酵过程中培养肉汤的 pH 值为 5 时,AMP 的产量最佳。根据 tricine SDS-PAGE 分析,获得的肽序列与 842.5 和 2866.4 m/z 比值的峰相对应,分子量约为 5 kDa。总之,本研究为利用 Lactiplantibacillus spp. IT 衍生的 AMP 进行植物生物防治策略奠定了基础,展示了它们对细菌性植物病原体的功效。这些发现为推进可持续农业实践提供了有价值的见解。