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暹罗假丝酵母CBS 9960产糖脂生物表面活性剂甘露糖赤藓糖醇脂及其界面性质

Production of glycolipid biosurfactants, mannosylerythritol lipids, by Pseudozyma siamensis CBS 9960 and their interfacial properties.

作者信息

Morita Tomotake, Konishi Masaaki, Fukuoka Tokuma, Imura Tomohiro, Kitamoto Dai

机构信息

Research Institute for Innovations in Sustainable Chemistry, National Institute of Advanced Industrial Science and Technology, Tsukuba Central 5-2, Tsukuba, Ibaraki, Japan.

出版信息

J Biosci Bioeng. 2008 May;105(5):493-502. doi: 10.1263/jbb.105.493.

Abstract

The search for a novel producer of glycolipid biosurfactants, mannosylerythritol lipids (MELs), was undertaken on the basis of the analysis of ribosomal DNA sequences of yeast strains of the genus Pseudozyma. In the course of the investigation, Pseudozyma siamensis CBS 9960, which is closely related to Pseudozyma shanxiensis, a known MEL-C producer but with a different morphology, was found to accumulate a large amount of glycolipids. On thin layer chromatography, the extracellular glycolipids showed nearly the same spots as those of the MELs produced by P. shanxiensis. However, the result of high-performance liquid chromatography analysis revealed that the present strain has a much higher glycolipid production yield than P. shanxiensis. From the structural characterization by (1)H and (13)C NMR, the major glycolipid (more than 84% of the total) was identified as a mixture of 4-O-[(2',4'-di-O-acetyl-3'-O-alka(e)noyl)-beta-D-mannopyranosyl]-D-erythritol and 4-O-[(4'-O-acetyl-3'-O-alka(e)noyl-2'-O-butanoyl)-beta-D-mannopyranosyl]-D-erythritol, both of which are types of MEL-C. The present MEL-C possessed a short-chain acid (C(2) or C(4)) at the C-2' position and a long-chain acid (C(16)) at the C-3' position of the mannose moiety, and thus, the hydrophobic part was considerably different from that of conventional MELs, which mainly possess two medium-chain acids (C(10)) at the C-2' and C-3' positions. Under optimal growth conditions with safflower oil in a shake culture, the total amount of MELs reached approximately 19 g/l after 9 d at 25 degrees C. We further investigated the interfacial properties of the present MEL-C, considering its unique hydrophobic structure. The observed critical micelle concentration (CMC) and the surface tension at the CMC of the MEL were 4.5 x 10(-6) M and 30.7 mN/m, respectively. In addition, on a water penetration scan, the MEL efficiently formed the liquid crystal phases such as hexagonal (H) and lamella (L(a)) at a wide range of concentrations. These results demonstrated that the newly identified MEL-C produced by P. siamensis exhibits not only high surface activity but also excellent self-assembling properties, and should facilitate the development of promising yeast biosurfactants.

摘要

基于对假丝酵母属酵母菌株核糖体DNA序列的分析,开展了对新型糖脂生物表面活性剂甘露糖赤藓糖醇脂(MELs)产生菌的筛选。在研究过程中,发现与已知MEL-C产生菌山西假丝酵母密切相关但形态不同的暹罗假丝酵母CBS 9960能积累大量糖脂。在薄层层析中,细胞外糖脂显示出与山西假丝酵母产生的MELs几乎相同的斑点。然而,高效液相色谱分析结果表明,该菌株的糖脂产量比山西假丝酵母高得多。通过(1)H和(13)C NMR进行结构表征,确定主要糖脂(占总量的84%以上)为4-O-[(2',4'-二-O-乙酰基-3'-O-链烯(酸)酰基)-β-D-甘露吡喃糖基]-D-赤藓糖醇和4-O-[(4'-O-乙酰基-3'-O-链烯(酸)酰基-2'-O-丁酰基)-β-D-甘露吡喃糖基]-D-赤藓糖醇的混合物,二者均为MEL-C类型。目前的MEL-C在甘露糖部分的C-2'位具有短链酸(C(2)或C(4)),在C-3'位具有长链酸(C(16)),因此,其疏水部分与主要在C-2'和C-3'位具有两个中链酸(C(10))的传统MELs有很大不同。在25℃摇瓶培养中以红花油为最佳生长条件,9天后MELs总量达到约19 g/l。考虑到其独特的疏水结构,我们进一步研究了目前的MEL-C的界面性质。观察到的MEL的临界胶束浓度(CMC)和CMC时的表面张力分别为4.5×10(-6) M和30.7 mN/m。此外,在水渗透扫描中,MEL在很宽的浓度范围内能有效形成液晶相,如六方相(H)和层状相(L(a))。这些结果表明,新鉴定的暹罗假丝酵母产生的MEL-C不仅具有高表面活性,还具有优异的自组装性能,应有助于开发有前景的酵母生物表面活性剂。

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