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Characterization of an Exopolymeric Flocculant Produced by a Brachybacterium sp.

机译:短杆菌属产生的外聚合絮凝剂的表征。

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摘要

We evaluated the bioflocculant production potential of an Actinobacteria, which was isolated from a freshwater environment in the Eastern Cape province of South Africa. 16S rDNA nucleotide sequencing analyses revealed that the actinobacteria belongs to the Brachybacterium genus, and the sequences were deposited in the GenBank as Brachybacterium sp. UFH, with accession number . Optimum fermentation conditions for bioflocculant production by the bacteria include an initial medium pH of 7.2, incubation temperature of 30 °C, agitation speed of 160 rpm and an inoculum size of 2% (vol/vol) of cell density 3.0 × 108 CFU/mL. The carbon, nitrogen and cation sources for optimum bioflocculant production were maltose (83% flocculating activity), urea (91.17% flocculating activity) and MgCl2 (91.16% flocculating activity). Optimum bioflocculant production coincided with the logarithmic growth phase of the bacteria, and chemical analyses of the bioflocculant showed 39.4% carbohydrate and 43.7% protein (wt/wt). The mass ratio of neutral sugar, amino sugar and uronic acids was 1.3:0.7:2.2. Fourier transform infrared spectroscopy (FTIR) indicated the presence of carboxyl, hydroxyl and amino groups, amongst others, typical for heteropolysaccharide and glycosaminoglycan polysaccharides. Bioflocculant pyrolysis showed thermal stability at over 600 °C, while scanning electron microscope (SEM) imaging revealed a maze-like structure of interlaced flakes. Its high flocculation activity suggests its suitability for industrial applicability.
机译:我们评估了放线菌的生物絮凝剂生产潜力,该放线菌是从南非东开普省的淡水环境中分离出来的。 16S rDNA核苷酸测序分析表明,放线菌属于短杆菌属,其序列以短杆菌属种在GenBank中保存。 UFH,保藏号为。细菌生产生物絮凝剂的最佳发酵条件包括初始培养基pH值为7.2,孵育温度为30°C,搅拌速度为160 rpm和接种密度为2%(vol / vol)的细胞密度3.0×10 8 CFU / mL。最佳生物絮凝剂生产的碳,氮和阳离子来源是麦芽糖(絮凝活性为83%),尿素(絮凝活性为91.17%)和MgCl2(絮凝活性为91.16%)。最佳的生物絮凝剂产量与细菌的对数生长期相吻合,生物絮凝剂的化学分析显示,其碳水化合物含量为39.4%,蛋白质(wt / wt)为43.7%。中性糖,氨基糖和糖醛酸的质量比为1.3:0.7:2.2。傅里叶变换红外光谱法(FTIR)指出存在羧基,羟基和氨基,尤其是杂多糖和糖胺聚糖多糖的典型特征。生物絮凝剂的热解在超过600°C的温度下显示出热稳定性,而扫描电子显微镜(SEM)成像则显示了交错薄片的迷宫状结构。其高絮凝活性表明其适用于工业应用。

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