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从腐烂的绿葡萄中分离出的嗜糖 Komagataeibacter 菌株 BC1 生产细菌纤维素。

Production of bacterial cellulose from Komagataeibacter saccharivorans strain BC1 isolated from rotten green grapes.

作者信息

Gopu Gayathri, Govindan Srinikethan

机构信息

a Department of Chemical Engineering , National Institute of Technology , Surathkal , Karnataka , India.

出版信息

Prep Biochem Biotechnol. 2018;48(9):842-852. doi: 10.1080/10826068.2018.1513032. Epub 2018 Oct 10.

Abstract

Bacterial cellulose (BC) is one of the prominent biopolymers that has been acquiring attention currently due to its distinctive properties and applications in various fields. The current work presents the isolation of Komagataeibacter saccharivorans strain BC1 isolated from rotten green grapes, followed by biochemical and genotypic characterization, which confirmed that the strain is capable of synthesizing cellulose. Further, production media was designed and certain variables such as carbon, nitrogen sources, pH, and temperature were optimized in order to obtain the maximum concentration of cellulose production. We found mannitol to be the ideal carbon source and yeast extract as the ideal nitrogen source with a highest BC dry yield of 1.81 ± 0.25 g/100 mL at pH 5.76 for a week at 30 °C.The charcterization of pellicles by FTIR spectrum depicted similar functional groups present in synthesized BC as that of the commercial cellulose. X-ray diffraction revealed that BC showed 82% crystallinity. Surface morphology of the dried pellicle was studied by SEM image which showed that the BC surface was tightly packed with thin fibers with less porosity. Hence the study demonstrates that the isolates of K.saccharivorans could be used to produce a biopolymer in a short period of time using a modified production medium.

摘要

细菌纤维素(BC)是一种重要的生物聚合物,由于其独特的性质和在各个领域的应用,目前受到了广泛关注。当前的研究工作展示了从腐烂的绿葡萄中分离出的食糖科马加塔埃氏菌BC1菌株,随后进行了生化和基因特征分析,证实该菌株能够合成纤维素。此外,设计了生产培养基,并对碳源、氮源、pH值和温度等变量进行了优化,以获得纤维素生产的最大浓度。我们发现甘露醇是理想的碳源,酵母提取物是理想的氮源,在30℃下,pH值为5.76时培养一周,BC的最高干产量为1.81±0.25 g/100 mL。通过FTIR光谱对菌膜进行表征,结果表明合成的BC中存在的官能团与商业纤维素中的相似。X射线衍射显示BC的结晶度为82%。通过SEM图像研究了干燥菌膜的表面形态,结果表明BC表面由紧密排列的细纤维组成,孔隙率较低。因此,该研究表明,利用改良的生产培养基,食糖科马加塔埃氏菌的分离株可在短时间内用于生产生物聚合物。

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