Institute of Microbiology, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
Z Naturforsch C J Biosci. 2011 Jul-Aug;66(7-8):394-402. doi: 10.1515/znc-2011-7-811.
Pseudomonas aeruginosa BN10 isolated from hydrocarbon-polluted soil was found to produce rhamnolipids when cultivated on 2% glycerol, glucose, n-hexadecane, and n-alkanes. The rhamnolipids were partially purified on silica gel columns and their chemical structures elucidated by combination of one- and two-dimensional 1H and 13C NMR techniques and ESI-MS analysis. Eight structural rhamnolipid homologues were identified: Rha-C10-C8, Rha-C10-C10, Rha-C10-C12:1, Rha-C10-C12, Rha2-C10-C8, Rha2-C10-C10, Rha2-C10-C12:1, and Rha2-C10-C12. The chemical composition of the rhamnolipid mixtures produced on different carbon sources did not vary with the type of carbon source used. The rhamnolipid mixture produced by Pseudomonas aeruginosa BN10 on glycerol reduced the surface tension of pure water from 72 to 29 mN m(-1) at a critical micellar concentration of 40 mg 1(-1), and the interfacial tension was 0.9 mN m(-1). The new surfactant product formed stable emulsions with hydrocarbons and showed high antimicrobial activity against Gram-positive bacteria. The present study shows that the new strain Pseudomonas aeruginosa BN10 demonstrates enhanced production of the di-rhamnolipid Rha2-C10-C10 on all carbon sources used. Due to its excellent surface and good antimicrobial activities the rhamnolipid homologue mixture from Pseudomonas aeruginosa BN10 can be exploited for use in bioremediation, petroleum and pharmaceutical industries.
从烃污染土壤中分离到的铜绿假单胞菌 BN10 在 2%甘油、葡萄糖、正十六烷和正烷烃上培养时,会产生鼠李糖脂。鼠李糖脂在硅胶柱上部分纯化,并通过一维和二维 1H 和 13C NMR 技术和 ESI-MS 分析相结合来阐明其化学结构。鉴定了 8 种结构类似的鼠李糖脂同系物:Rha-C10-C8、Rha-C10-C10、Rha-C10-C12:1、Rha-C10-C12、Rha2-C10-C8、Rha2-C10-C10、Rha2-C10-C12:1 和 Rha2-C10-C12。在不同碳源上产生的鼠李糖脂混合物的化学组成不因所用碳源的类型而改变。铜绿假单胞菌 BN10 在甘油上产生的鼠李糖脂混合物在临界胶束浓度为 40mg 1(-1)时,将纯水的表面张力从 72 降至 29 mN m(-1),界面张力为 0.9 mN m(-1)。新形成的表面活性剂产品与碳氢化合物形成稳定的乳液,并对革兰氏阳性菌表现出高抗菌活性。本研究表明,新菌株铜绿假单胞菌 BN10 在所有使用的碳源上都表现出增强的二鼠李糖脂 Rha2-C10-C10 的产生。由于其出色的表面性能和良好的抗菌活性,铜绿假单胞菌 BN10 的鼠李糖脂同系物混合物可用于生物修复、石油和制药行业。