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Isolation, Identification and Partial Optimization of Novel Xylanolytic Bacterial Isolates from Bhilai-Durg Region, Chhattisgarh, India

机译:印度Chhattisgarh Bhilai-Durg地区新型木聚糖分解细菌的分离,鉴定和部分优化

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Background: Plant biomass and agricultural waste products disposal is a serious problem in agriculture based countries. These wastes, usually rich in xylan can be satisfactorily converted to industrially important and useful products by efficient biotechnological application of potent xylanase producing bacteria which generally have high temperature and pH optima.Objective: The aim was to isolate and identify xylanolytic bacterial isolates from Bhilai-Durg region of Chhattisgarh, India which was otherwise unexplored for isolation of thermoalkalophilic xylanase producing bacteria. Partial scale up of process development was performed.Materials and Methods: Xyalanse producing bacteria were isolated from probable samples following three stages of screening procedures. The potent isolates were identified and various parameters affecting xylanase production were optimized using the conventional one-factor-at-a-time approach.Results: Two potent indigenous bacterial isolates belonged to genus Bacillus and designated as Bacillus sp. MCC2728 and Bacillus sp. MCC2727 were isolated from forest soils with the ability to degrade xylan. Significant differences were observed in their morphology and phenotypic characters amongst themselves and with its closest type strains implying the novelty of the two isolates. After optimization, maximum xylanase levels were obtained at pH 9.0, 55 °C for Bacillus sp. MCC2728 and 50 °C for Bacillus sp. MCC2727, 5% inoculum, agitation speed (150 rpm). Yeast extract and peptone are best nitrogen sources and wheat bran, the best carbon source. The GenBank/EMBL/DDBJ accession numbers of strains Bacillus sp. MCC2728 and Bacillus sp. MCC2727 are KP742971 and KT444621 respectively. Wheat bran, Yeast extract and peptone proved to be the best carbon and nitrogen sources respectively and xylose as an additive was found to be contributing to maximize the xylanase yields.Conclusion: Two potent thermoalkalophilic novel bacterial isolates were successfully isolated with xylan degrading ability which may be used as promising xylanase producing candidates for various industrial purposes using agricultural based waste residues.
机译:背景:在以农业为基础的国家中,植物生物质和农业废物的处理是一个严重的问题。这些通常富含木聚糖的废物可以通过有效的生物技术有效地应用强效的木聚糖酶生产细菌而令人满意地转化为工业上重要且有用的产品,这些细菌通常具有较高的高温和pH值。印度恰蒂斯加尔邦的杜尔格地区,否则尚未进行过分离以分离产生嗜热木糖酶的细菌。材料和方法:按照筛选程序的三个阶段,从可能的样品中分离出产生木聚糖酶的细菌。鉴定出有效的菌株,并使用传统的一次一因素方法优化了影响木聚糖酶生产的各种参数。结果:两个有效的原生细菌菌株属于芽孢杆菌属,命名为芽孢杆菌。 MCC2728和芽孢杆菌MCC2727从具有降解木聚糖能力的森林土壤中分离出来。观察到它们之间的形态和表型特征存在显着差异,其最接近的菌株表明这两种分离物的新颖性。优化后,芽孢杆菌的最大木聚糖酶水平在pH 9.0、55°C下获得。 Bacillus sp。的MCC2728和50°C。 MCC2727,5%接种量,搅拌速度(150 rpm)。酵母提取物和蛋白ept是最好的氮源,麦麸是最好的碳源。 Bacillus sp。的GenBank / EMBL / DDBJ登录号。 MCC2728和芽孢杆菌MCC2727分别是KP742971和KT444621。麦麸,酵母提取物和蛋白one分别被证明是最佳的碳源和氮源,木糖作为添加剂有助于最大程度地提高木聚糖酶的产量。结论:成功分离了两种具有木聚糖降解能力的强嗜热性新型细菌菌株。可以用作利用农业废渣用于各种工业用途的有希望的木聚糖酶生产候选物。

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