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Enhanced production of xylanase from locally isolated fungal strain using agro-industrial residues under solid-state fermentation

机译:在固态发酵条件下,利用农用工业残渣提高了从局部分离的真菌菌株中木聚糖酶的产量

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This study is related to the isolation of fungal strain for xylanase production using agro-industrial residues. Forty fungal strains with xylanolytic potential were isolated by using xylan agar plates and quantitatively screened in solid-state fermentation. Of all the tested isolates, the strain showing highest ability to produce xylanase was assigned the code Aspergillus niger LCBT-14. For the enhanced production of the enzyme, five different fermentation media were evaluated. Out of all media, M4 containing wheat bran gave maximum enzyme production. Effect of different variables including incubation time, temperature, pH, carbon and nitrogen sources has been investigated. The optimum enzyme production was obtained after 72h at 30 degrees C and pH 4. Glucose as a carbon source while ammonium sulphate and yeast extract as nitrogen sources gave maximum xylanase production (946U/mL/min). This study was successful in producing xylanase by A. niger LCBT-14 economically by utilising cheap indigenous substrate.
机译:这项研究与使用农用工业残渣分离用于生产木聚糖酶的真菌菌株有关。使用木聚糖琼脂平板分离出具有木聚糖分解潜力的40个真菌菌株,并在固态发酵中进行定量筛选。在所有测试的分离物中,表现出最高的木聚糖酶生产能力的菌株被指定为黑曲霉LCBT-14。为了提高酶的产量,评估了五种不同的发酵培养基。在所有培养基中,含M4的麦麸可产生最大的酶。研究了不同变量的影响,包括孵育时间,温度,pH,碳和氮源。在30摄氏度和pH 4下72小时后,可获得最佳的酶产生。葡萄糖作为碳源,而硫酸铵和酵母提取物作为氮源提供最大的木聚糖酶产量(946U / mL / min)。这项研究成功地利用廉价的本地底物经济地生产了黑曲霉LCBT-14的木聚糖酶。

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