uchimurae葡萄糖杆菌GYS15对生物纤维素的特性研究

Young Sun Lee, J. Y. Kim, M. Cha, Hee-Cheol Kang
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引用次数: 4

摘要

为了选择一种形成生物纤维素(BC)的菌株,从市售的康普茶中选择了一种产醋酸的菌株。通过SM肉汤,通过相差显微镜证实该菌株为革兰氏阴性菌,呈棒状,无运动。基于16S rDNA序列分析对该菌株进行系统发育推断,鉴定结果与乌chimurae葡萄球菌(g.u chimurae)亲缘关系最密切,命名为乌chimurae葡萄球菌GYS15菌株。菌株在pH 5、25℃条件下培养14 d,生长程度最高。另外,以蔗糖和果糖为最佳碳源的二糖的生长程度最高。同时,添加0.5% NaCl时,麦芽提取物的生长程度最高。通过对最佳生长条件的研究,确定了培养乌氏杆菌GYS15菌株获得的BC的物理特性。通过扫描电子显微镜(SEM)观察其表面结构为高网状结构。直到8.6±0.38倍时再吸水,再吸水持油量可达6.6±0.51倍。综上所述,利用这些材料特性,可以确认各种化妆品材料和面膜包装材料的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characteristics of Biocellulose by Gluconobacter uchimurae GYS15
In order to select a strain that forms a Biocellulose (BC), strain producing acetic acid was selected from commercially available kombucha. Through SM broth it was confirmed that the strain is a gram negative bacteria in the form of rods having no motility through a phase contrast microscope. The result of phylogenetic inference analysis based on 16S rDNA sequence analysis for the identification of strains was most closely related to Gluconobacter uchimurae (G. uchimurae) and was named G. uchimurae GYS15 strain. The strain showed the highest degree of growth when cultured for 14 days under the conditions of pH 5 and 25 °C. Moreover, it showed the highest degree of growth in a Glucose addition disaccharide as the optimum carbon source sucrose and fructose. Also, 0.5% NaCl, upon the addition of Malto extract, showed the highest degree of growth. Based on investigation by the optimum growth conditions to confirm the physical properties of BC obtained by culturing G. uchimurae GYS15 strains. The surface structure was observed through an scanning electron microscope (SEM) showed a high networks structure. It until 8.6 ± 0.38 times when the water holding capacity is re-absorbed and re-absorbed holding oil up to 6.6 ± 0.51 times confirmed. In conclusion, using these material properties, it was possible to confirm the possibility of a variety of cosmetic materials and mask pack materials.
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