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新型 Pseudomonas sp. S1WB 产生的二鼠李糖脂生物表面活性剂的评价:优化、表征及其对石油烃降解的影响。

Evaluation of di-rhamnolipid biosurfactants production by a novel Pseudomonas sp. S1WB: Optimization, characterization and effect on petroleum-hydrocarbon degradation.

机构信息

College of Resources and Environment, University of Chinese Academy of Sciences, 19 A Yuquan Road, Beijing 100049, PR China; Institute of Microbiology, Faculty of Natural Science, Shah Abdul Latif University, Khairpur Mir's 66020, Sindh, Pakistan.

College of Resources and Environment, University of Chinese Academy of Sciences, 19 A Yuquan Road, Beijing 100049, PR China; RCEES-IMCAS-UCAS Joint-Lab of Microbial Technology for Environmental Science, Beijing 100085, PR China.

出版信息

Ecotoxicol Environ Saf. 2022 Sep 1;242:113892. doi: 10.1016/j.ecoenv.2022.113892. Epub 2022 Jul 18.

Abstract

Rhamnolipid biosurfactants are multifunctional compounds that can play an indispensable role in biotechnological, biomedical, and environmental bioremediation-related fields, and have attracted significant attention in recent years. Herein, a novel strain Pseudomonas sp. S1WB was isolated from an oil-contaminated water sample. The biosurfactants produced by this strain have capabilities to reduce surface tension (SFT) at 32.75 ± 1.63 mN/m and emulsified 50.2 ± 1.13 % in liquid media containing 1 % used engine oil (UEO) as the sole carbon source. However, the lowest SFT reduction (28.25 ± 0.21), highest emulsification index (60.15 ± 0.07), and the maximum yields (900 mg/L) were achieved under optimized conditions; where, the glucose/urea and glycerol/urea combinations were found efficient carbon and nitrogen substrates for improved biosurfactants production. Biosurfactants product was characterized using ultra-high performance liquid chromatography-mass spectrometry (UHPLC- MS) and detected various di- rhamnolipids congeners. In addition, the di-rhamnolipids produced by S1WB strain was found highly stable in terms of surface activity and EI indices at different environmental factors i.e. temperature, pH and various NaCl concentrations, where, emulsifying property was found high stable till 30 days of incubation. Moreover, the stain was capable to degrade hydrocarbon at 42.2 ± 0.04 %, and the Gas chromatography- mass spectrometry (GC-MS) profile showed the majority of peak intensities of hydrocarbons have been completely degraded compared to control.

摘要

鼠李糖脂生物表面活性剂是多功能化合物,在生物技术、生物医学和环境生物修复相关领域发挥着不可或缺的作用,近年来引起了广泛关注。本研究从含油污水样品中分离到一株新的假单胞菌 S1WB,该菌株产生的生物表面活性剂在含有 1%废机油(UEO)的液体培养基中具有降低表面张力(SFT)的能力,其值为 32.75±1.63 mN/m,乳化率为 50.2±1.13%。然而,在优化条件下,SFT 降低值最低(28.25±0.21)、乳化指数最高(60.15±0.07)、产量最大(900mg/L);其中,葡萄糖/尿素和甘油/尿素组合是提高生物表面活性剂产量的有效碳氮源。采用超高效液相色谱-质谱联用(UHPLC-MS)对生物表面活性剂产品进行了表征,检测到各种二鼠李糖脂同系物。此外,S1WB 菌株产生的二鼠李糖脂在不同环境因素(如温度、pH 和不同 NaCl 浓度)下的表面活性和 EI 指数方面表现出高度稳定性,在 30 天的孵育过程中,其乳化性能保持高度稳定。此外,该菌株能够降解 42.2±0.04%的烃类,气相色谱-质谱联用(GC-MS)图谱显示与对照相比,烃类的大部分峰强度已完全降解。

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