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铜绿假单胞菌ATCC 10145在十六烷发酵过程中依次合成聚羟基脂肪酸酯和鼠李糖脂。

Polyhydroxyalkanoic acids and rhamnolipids are synthesized sequentially in hexadecane fermentation by Pseudomonas aeruginosa ATCC 10145.

作者信息

Chayabutra C, Ju L K

机构信息

Department of Chemical Engineering, The University of Akron, Akron, Ohio 44325-3906, USA.

出版信息

Biotechnol Prog. 2001 May-Jun;17(3):419-23. doi: 10.1021/bp010036a.

Abstract

Rhamnolipids and poly(beta-hydroxyalkanoic acids) (PHAs) are important fermentation products of Pseudomonas aeruginosa. Both contain beta-hydroxyalkanoic acids as main constituents. To investigate the possible relationship between their syntheses, we studied the n-hexadecane fermentation by P. aeruginosa (ATCC 10145). PHA synthesis was found to occur only during active cell growth, while substantial rhamnolipid production began at the onset of the stationary phase. The specific synthesis rate of beta-hydroxyalkanoic acids was estimated as 12.6 mg HA/(g dry cells.h) from the PHA formation during the exponential-growth phase. A similar rate was obtained from the beta-hydroxyalkanoic acid incorporation in the rhamnolipids produced during the early stationary phase. A regulatory switch of the flow of beta-hydroxyalkanoic acids from PHA polymerization to rhamnolipid synthesis is clearly indicated to occur when the culture reaches the stationary phase. Five rhamnolipid structures were identified using HPLC-MS. Three are monorhamnolipids, two dirhamnolipids. All have a chain of two beta-hydroxyalkanoic acids. The two major components contain only beta-hydroxydecanoic acids; the three minors also have a beta-hydroxydecanoic acid linked to the sugar but a beta-hydroxydodecanoic acid or beta-hydroxydodecenoic acid as the second acid. The PHA accumulation reached about 7.5% of the cell dry weight. The monomer composition was relatively constant at different stages of production: in weight fractions, beta-hydroxyoctanoic acid, 0.25 (+/-0.05); beta-hydroxydecanoic acid, 0.41 (+/-0.06); beta-hydroxydodecanoic acid, 0.11 (+/-0.05), beta-hydroxytetradecanoic acid, 0.11 (+/-0.06), and beta-hydroxyhexadecanoic acid, 0.12 (+/-0.06). beta-Hydroxydecanoic acid was clearly the primary monomer.

摘要

鼠李糖脂和聚(β-羟基链烷酸)(PHA)是铜绿假单胞菌重要的发酵产物。两者都以β-羟基链烷酸作为主要成分。为了研究它们合成之间可能存在的关系,我们研究了铜绿假单胞菌(ATCC 10145)对正十六烷的发酵。发现PHA合成仅在细胞活跃生长期间发生,而大量鼠李糖脂的产生始于稳定期开始时。根据指数生长期PHA的形成,β-羟基链烷酸的比合成速率估计为12.6 mg HA/(g干细胞·h)。从稳定期早期产生的鼠李糖脂中β-羟基链烷酸的掺入也获得了类似的速率。当培养物达到稳定期时,明显表明发生了β-羟基链烷酸从PHA聚合流向鼠李糖脂合成的调节转换。使用HPLC-MS鉴定了五种鼠李糖脂结构。三种是单鼠李糖脂,两种是双鼠李糖脂。所有都有一条由两个β-羟基链烷酸组成的链。两种主要成分仅含有β-羟基癸酸;三种次要成分还具有与糖相连的β-羟基癸酸,但第二种酸为β-羟基十二烷酸或β-羟基十二碳烯酸。PHA积累量达到细胞干重的约7.5%。在生产的不同阶段,单体组成相对恒定:以重量分数计,β-羟基辛酸为0.25(±0.05);β-羟基癸酸为0.41(±0.06);β-羟基十二烷酸为0.11(±0.05),β-羟基十四烷酸为0.11(±0.06),β-羟基十六烷酸为0.12(±0.06)。β-羟基癸酸显然是主要单体。

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