首页> 外文期刊>Journal of microbiology and biotechnology >Cellulosic Nanomaterial Production Via Fermentation by Komagataeibacter sp. SFCB22-18 Isolated from Ripened Persimmons
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Cellulosic Nanomaterial Production Via Fermentation by Komagataeibacter sp. SFCB22-18 Isolated from Ripened Persimmons

机译:通过Komagataeibacter SP通过发酵纤维素纳米材料生产。 从成熟的柿子孤立的SFCB22-18

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Bacterial nanocellulose (BNC) which is generally synthesized by several species of bacteria has a wide variety of industrial uses, particularly in the food and material industries. However, the low levels of BNC production during the fermentation process should be overcome to reduce its production cost. Therefore, in this study, we screened and identified a new cellulose-producing bacterium, optimized production of the cellulose, and investigated the morphological properties of the cellulosic materials. Out of 147 bacterial isolates from ripened fruits and traditional vinegars, strain SFCB22-18 showed the highest capacity for BNC production and was identified as Komagataeibacter sp. based on 16S rRNA sequence analysis. During 6-week fermentation of the strain using an optimized medium containing 3.0% glucose, 2.5% yeast extract, 0.24% acetic acid, 0.27% Na2HPO4, and 0.5% ethanol at 30 degrees C, about 5 g/l of cellulosic material was produced. Both imaging and IR analysis proved that the produced cellulose would be nanoscale bacterial cellulose.
机译:通常由几种细菌合成的细菌纳米纤维素(BNC)具有各种工业用途,特别是在食品和物质工业中。然而,应克服发酵过程中的低水平的BNC生产,以降低其生产成本。因此,在本研究中,我们筛选并确定了一种新的纤维素产生的细菌,优化的纤维素生产,并研究了纤维素材料的形态学性质。在成熟的水果和传统醋中的147个细菌分离物中,菌株SFCB22-18显示了BNC生产的最高能力,并被鉴定为Komagataeibacter SP。基于16S rRNA序列分析。在使用含有3.0%葡萄糖的优化培养基的菌株的6周发酵期间,在30℃下含有3.0%葡萄糖的优化培养基,0.24%乙酸,0.27%Na 2 HPO 4和0.5%乙醇,产生约5g / L的纤维素材料。成像和红外分析证明,产生的纤维素是纳米级细菌纤维素。

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