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从石油污染环境中分离得到的短杆菌 CH-KOV3——一种新型的蔗果三糖生产菌。

Brachybacterium sp. CH-KOV3 isolated from an oil-polluted environment-a new producer of levan.

机构信息

University of Belgrade, Faculty of Chemistry, Studentski trg 12-16 P.O. Box 158, 11001, Belgrade, Serbia; University of Belgrade, Institute of Chemistry, Technology and Metallurgy, Department of Chemistry, 11001 Belgrade, Njegoševa 12, Serbia.

University of Belgrade, Institute of Chemistry, Technology and Metallurgy, Department of Chemistry, 11001 Belgrade, Njegoševa 12, Serbia.

出版信息

Int J Biol Macromol. 2017 Nov;104(Pt A):311-321. doi: 10.1016/j.ijbiomac.2017.06.034. Epub 2017 Jun 8.

Abstract

Various microorganisms isolated from polluted environments, such as Pseudomonas sp. and Micrococcus sp. can synthesize exopolysaccharides (EPSs) which are natural, non-toxic and biodegradable polymers. EPSs play a key role in protection of microbial cells under various external influences. For humans, these substances have potential use in many industries. EPSs can be applied as a flavor or a fragrance carrier, an emulsifier, a stabilizer, a prebiotic, an antioxidant or an antitumor agent. In this study, we characterized an environmental microorganism that produces EPS, optimized EPS production by this strain and characterized the EPS produced. Isolate CH-KOV3 was identified as Brachybacterium paraconglomeratum. The sucrose level in the growth medium greatly influenced EPS production, and the highest yield was when the microorganism was incubated in media with 500g/L of sucrose. The optimal temperature and pH were 28°C and 7.0, respectively. The nuclear magnetic resonance (NMR) results and GC-MS analysis confirmed that the residues were d-fructofuranosyl residues with β-configuration, where fructose units are linked by β-2,6-glycosidic bonds, with β-2,1-linked branches. All these data indicate that the investigated EPS is a levan-type polysaccharide. Thus, it was concluded that Brachybacterium sp. CH-KOV3 could constitute a new source for production of the bioactive polysaccharide, levan.

摘要

从污染环境中分离出的各种微生物,如假单胞菌和微球菌,能够合成具有天然、无毒和可生物降解特性的聚合物——胞外多糖(EPS)。EPS 在保护微生物细胞免受各种外部影响方面起着关键作用。对人类而言,这些物质在许多行业中具有潜在的用途。EPS 可以用作风味或香味载体、乳化剂、稳定剂、益生元、抗氧化剂或抗肿瘤剂。在这项研究中,我们对一种产生 EPS 的环境微生物进行了表征,优化了该菌株的 EPS 生产,并对所产生的 EPS 进行了表征。分离株 CH-KOV3 被鉴定为短杆菌属的短杆菌。在生长培养基中的蔗糖水平极大地影响了 EPS 的生产,当微生物在含有 500g/L 蔗糖的培养基中培养时,产量最高。最佳温度和 pH 值分别为 28°C 和 7.0。核磁共振(NMR)结果和 GC-MS 分析证实残留物是具有 β-构型的 d-吡喃果糖残基,其中果糖单元通过 β-2,6-糖苷键连接,β-2,1-键分支。所有这些数据表明,所研究的 EPS 是一种纤维二糖型多糖。因此,可以得出结论,短杆菌属 CH-KOV3 可以成为生产生物活性多糖纤维二糖的新来源。

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