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Production and Characterization of Bacterial Cellulose from Rice Washing Drainage (RWD) by Komagataeibacter nataicola Li1

机译:KomagaTaeibacter Nataicola Li1的水稻洗涤排水(RWD)的细菌纤维素的生产与表征

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Bacterial cellulose (BC), produced by some bacteria has received attention because its high purity and robust characteristics enable its use in medicine and industry. This study aimed to screen bacteria capable of producing BC from fruits, and to optimize the BC production in both traditional YE yeast fermentation and Schramm and Hestrin (SH) media. The rice washing drainage without any pretreatment as the sole carbon source in the yeast medium was also investigated for BC production in both static and agitated cultures. The bacterial strain Lil isolated from apple (Malus pumila) was identified as Komagataeibacter (Gluconacetobacter) nataicola based on 16S rDNA sequence analysis. K. nataicola Lil cultured in a YE medium produced significantly more BC than that in a SH medium in the static culture. Moreover, the weight yields of dry BC films obtained from rice washing drainage and YE media in the static cultures were not significantly different. However, in the agitated culture, the weight yields of dry BC films were more significant in the YE medium than in rice washing drainage medium. In addition, the structure and properties of BC were determined using SEM, FTIR, DSC and XRD. This study shows that rice washing drainage can be used as the carbon source for BC production by K. nataicola Lil.
机译:细菌纤维素(BC),有些细菌产生的受到了关注,因为其纯度高和强大的特性使得其在医药和工业用途。本研究旨在能够从水果产生BC的屏幕的细菌,以及优化生产BC在传统YE酵母发酵和施拉姆和Hestrin(SH)培养基。未经任何预处理在酵母培养基中的唯一碳源洗米引流也在静态和搅拌培养物研究用于生产BC。所述细菌菌株律从苹果(苹果),分离基于16S rDNA序列分析,鉴定为Komagataeibacter(葡)nataicola。 K. nataicola律培养在YE培养基中在静态培养物的SH培养基中产生比显著更BC。此外,在静态培养来自稻洗涤排水和YE媒体得到的干燥BC膜的重量产率是不显著不同。然而,在搅拌培养,干BC片的重量产率在YE培养基比在洗米排水介质更显著。另外,BC的结构和性能使用SEM,FTIR,DSC和XRD进行了测定。这项研究表明,洗米排水可作为由K. nataicola律为BC生产碳源。

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