研究疏水性对来自原油暴露环境的枯草芽孢杆菌生产生物表面活性剂的影响

Seyedeh Zahra Hashemi, J. Fooladi, Maliheh Vahidinasab, Philipp Hubel, J. Pfannstiel, Evelina Pillai, Holger Hrenn, Rudolf Hausmann, Lars Lilge
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引用次数: 0

摘要

背景:生物表面活性剂因其结构特征而显示出良好的物理化学特性,使其在食品、化妆品、农业和生物修复等不同领域的各种应用变得十分有趣。表面活性剂是微生物合成的最有效的生物表面活性剂分子之一,其生物生产尤其引人关注。本研究旨在发现疏水性与枯草芽孢杆菌从受原油污染的土壤和水中生产生物表面活性剂表面活性剂之间的相关性。研究方法使用高效薄层液相色谱法(HPTLC)对适应性批量培养的表面活性剂产量进行表征。通过添加十六烷或聚苯乙烯珠子来实现确定的疏水环境条件,并测量其对生物表面活性剂产量的影响。质谱测量分析了蛋白质水平的适应性。结果显示利用从受原油污染的土壤和水中分离出的枯草芽孢杆菌 ZH1 和 P7 菌株,研究了疏水性与表面活性剂产量之间的相关性。由于这些分离菌株分别以原油和十六烷为疏水性底物进行生物降解,因此首次使用了聚苯乙烯珠来提供疏水环境。有趣的是,与普遍的看法相反,生物表面活性剂的产量减少了。利用质谱方法研究了共培养的生理效应和蛋白质水平上的细胞反应,结果发现,与聚苯乙烯珠相对应的应激蛋白和参与碳代谢的蛋白数量发生了变化。结论与一般观点相反,增加疏水性并不会产生刺激作用,甚至会降低使用选定的枯草杆菌菌株生物生产作为主要生物表面活性剂的表面活性素的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Toward Effects of Hydrophobicity on Biosurfactant Production by Bacillus subtilis Isolates from Crude-Oil-Exposed Environments
Background: Due to their structural features, biosurfactants reveal promising physicochemical properties, making them interesting for various applications in different fields, such as the food, cosmetics, agriculture, and bioremediation sectors. In particular, the bioproduction of surfactin, one of the most potent microbially synthesized biosurfactant molecules, is of great interest. However, since the wild-type productivities are comparably low, stimulatory environmental conditions have to be identified for improved bioproduction This study aims to find a correlation between the hydrophobicity and production of the biosurfactant surfactin by B. subtilis isolates from crude-oil-contaminated soil and water. Methods: The surfactin production yield was characterized in adapted batch cultivations using high-performance thin-layer liquid chromatography (HPTLC). Defined hydrophobic environmental conditions were achieved by supplementation with hexadecane or polystyrene beads, and the effects on biosurfactant production were measured. Adaptations at the protein level were analyzed using mass spectrometry measurements. Results: The correlation between hydrophobicity and surfactin production was characterized using Bacillus subtilis strains ZH1 and P7 isolated from crude-oil-contaminated soil and water. Since these isolates show the biodegradation of crude oil and hexadecane as hydrophobic substrates, respectively, a first-time approach, using polystyrene beads, was applied to provide a hydrophobic environment. Interestingly, contrary to popular opinion, reduced biosurfactant production was determined. Using mass spectrometric approaches, the physiological effects of co-cultivation and the cellular response at the protein level were investigated, resulting in altered quantities of stress proteins and proteins involved in the carbon metabolism counter to polystyrene beads. Conclusions: Contrary to common opinion, increasing hydrophobicity does not have a stimulating effect, and even reduces the effect on the bioproduction of surfactin as the main biosurfactant using selected B. subtilis strains.
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