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首页> 外文期刊>Applied and Environmental Microbiology >Structure and Characterization of Flavolipids, a Novel Class of Biosurfactants Produced by Flavobacterium sp. Strain MTN11
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Structure and Characterization of Flavolipids, a Novel Class of Biosurfactants Produced by Flavobacterium sp. Strain MTN11

机译:黄藻脂类的结构和表征,黄藻属杆菌是一种新型的表面活性剂。菌株MTN11

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Herein we report the structure and selected properties of a new class of biosurfactants that we have named the flavolipids. The flavolipids exhibit a unique polar moiety that features citric acid and two cadaverine molecules. Flavolipids were produced by a soil isolate, Flavobacterium sp. strain MTN11 (accession number AY162137), during growth in mineral salts medium, with 2% glucose as the sole carbon and energy source. MTN11 produced a mixture of at least 37 flavolipids ranging from 584 to 686 in molecular weight (MW). The structure of the major component (23%; MW = 668) was determined to be 4-[[5-(7-methyl-(E)-2-octenoylhydroxyamino)pentyl]amino]-2-[2-[[5-(7-methyl-(E)-2-octenoylhydroxyamino)pentyl]amino]-2-oxoethyl]-2-hydroxy-4-oxobutanoic acid. The partially purified flavolipid mixture isolated from strain MTN11 exhibited a critical micelle concentration of 300 mg/liter and reduced surface tension to 26.0 mN/m, indicating strong surfactant activity. The flavolipid mixture was a strong and stable emulsifier even at concentrations as low as 19 mg/liter. It was also an effective solubilizing agent, and in a biodegradation study, it enhanced hexadecane mineralization by two isolates, MTN11 (100-fold) and Pseudomonas aeruginosa ATCC 9027 (2.5-fold), over an 8-day period. The flavolipid-cadmium stability constant was measured to be 3.61, which is comparable to that for organic ligands such as oxalic acid and acetic acid. In summary, the flavolipids represent a new class of biosurfactants that have potential for use in a variety of biotechnological and industrial applications.
机译:在本文中,我们报告了一种新的生物表面活性剂的结构和选定的特性,我们将其命名为黄素类脂。黄酮类脂具有独特的极性部分,该部分具有柠檬酸和两个尸胺分子。黄土脂由土壤分离物 Flavobacterium sp。产生。菌株MTN11(登录号AY162137)在矿物盐培养基中生长期间,以2%的葡萄糖为唯一碳和能源。 MTN11产生了至少37种黄酮类脂的混合物,分子量为584至686。确定主要成分的结构(23%; MW = 668)为4-[[[5-(7-甲基-( E )-2-辛烯基羟基氨基)戊基]氨基] -2 -[2-[[5-(7-甲基-( E )-2-辛烯基羟基氨基)戊基]氨基] -2-氧代乙基] -2-羟基-4-氧代丁酸。从菌株MTN11分离出的部分纯化的黄酮脂质混合物的临界胶束浓度为300 mg / L,表面张力降低至26.0 mN / m,表明表面活性剂活性强。即使在低至19mg /升的浓度下,黄酮类脂混合物也是强而稳定的乳化剂。它也是一种有效的增溶剂,在一项生物降解研究中,它通过两种分离物MTN11(100倍)和铜绿假单胞菌ATCC 9027(2.5倍)”增强了十六烷的矿化作用,超过了8-日期间。黄酮-镉的稳定常数经测量为3.61,与草酸和乙酸等有机配体的稳定常数相当。总之,黄酮类脂代表了一类新的生物表面活性剂,具有在多种生物技术和工业应用中使用的潜力。

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