School of Biosciences, Mahatma Gandhi University, Kottayam, India.
School of Environmental Sciences, Mahatma Gandhi University, Kottayam, India.
Pest Manag Sci. 2021 Feb;77(2):1035-1041. doi: 10.1002/ps.6118. Epub 2020 Oct 31.
Lipopeptides from the Bacillus spp. possess an excellent spectrum of antimicrobial properties which make them suitable candidates to be explored for the food, agricultural, pharmaceutical and biotechnological applications. As the low yield of the lipopeptides limits their applications, methods to enhance their production are highly significant.
In this study, extracts prepared from endophytic Bacillus sp. Fcl1 cultured in the presence of various supplements were screened for antifungal activity against Pythium aphanidermatum. From the results, the supplementation of carbon sources and zinc oxide nanoparticles (ZnONPs) was found to have an enhancement effect on the antifungal activity of Bacillus sp. Fcl1. Among these, the highest antifungal activity (73.2%) could be observed for the Fcl1 sample cultured with 5 mg L of ZnONP supplementation. The growth of Fcl1 in the presence of ZnONPs also indicated its compatibility with the nano-supplement in the concentration range used. By liquid chromatography quadrupole time-of-flight mass spectrometry (LC-Q-TOF-MS) analysis, the synthesis of increased numbers of lipopeptide surfactin derivatives could be identified from the extracts of Fcl1 prepared from the carbon sources and ZnONP-supplemented cultures. In addition to the surfactin derivatives, the presence of another lipopeptide iturin was also detected from the extracts of Fcl1 cultured with ZnONPs.
ZnONP supplementation was found to enhance antifungal activity and lipopeptide production in the Bacillus sp. Fcl1. The use of nanoparticles to enhance the antifungal mechanisms of Fcl1 as observed in the study provides novel insights to explore its applications for sustainable agricultural productivity.
芽孢杆菌属的脂肽具有出色的抗菌谱,使其成为探索食品、农业、制药和生物技术应用的候选物。由于脂肽的产量低限制了其应用,因此提高其产量的方法非常重要。
在这项研究中,从含有各种添加剂的培养物中提取的内生芽孢杆菌 Fcl1 提取物被筛选出对腐霉病菌具有抗真菌活性。结果表明,碳源和氧化锌纳米粒子(ZnONPs)的添加对芽孢杆菌 Fcl1 的抗真菌活性具有增强作用。在这些添加剂中,添加 5mg/L 的 ZnONP 时,Fcl1 的抗真菌活性最高(73.2%)。在 ZnONPs 存在下,Fcl1 的生长也表明其在使用的浓度范围内与纳米添加剂相容。通过液相色谱四极杆飞行时间质谱(LC-Q-TOF-MS)分析,从含有碳源和 ZnONP 添加剂的培养物中提取的 Fcl1 提取物中可以鉴定出数量增加的脂肽表面活性素衍生物的合成。除了表面活性素衍生物外,还从含有 ZnONP 的 Fcl1 培养物的提取物中检测到另一种脂肽伊枯草菌素。
ZnONP 的添加被发现可以增强芽孢杆菌 Fcl1 的抗真菌活性和脂肽的产生。本研究中观察到的纳米粒子增强 Fcl1 抗真菌机制的使用为探索其在可持续农业生产力中的应用提供了新的思路。