首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Statistical Optimization for Coproduction of Chitinase and Beta 1, 4-Endoglucanase by Chitinolytic Paenibacillus elgii PB1 Having Antifungal Activity
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Statistical Optimization for Coproduction of Chitinase and Beta 1, 4-Endoglucanase by Chitinolytic Paenibacillus elgii PB1 Having Antifungal Activity

机译:用胰蛋白酶磷酸钠PB1丁蛋白酶和β1,4-内葡聚糖酶的统计优化

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摘要

A bacterial strain PB1 with antagonistic activity against pathogenic fungi was isolated from marine soil and was identified as Paenibacillus elgii based on phenotypic and genotypic characterization. The isolate showed good antifungal activity against "Aspergillus niger (MTCC 282), Trichophyton rubrum (MTCC 791), Microsporum gypseum (MTCC 2819), Candida albicans (MTCC 227), and Saccharomyces cerevisiae (MTCC 170)". Chitinase and beta 1, 4-endoglucanase are known for their capability to degrade fungal cell wall, thus we analyzed its productivity in PB1 strain using Plackett-Burman and Central Composite Design. The factors that affect the productivity of chitinase and beta 1, 4-endoglucanase were identified and optimized. A 7.77-fold increase (3.157 to 24.53 +/- 1.33 U/mL) in chitinase and 7.422-fold increase (6.476 to 48.066 +/- 0.676 U/mL) in beta 1, 4-endoglucanase versus basal medium was achieved. Chitinase and beta 1, 4-endoglucanase produced by Paenibacillus elgii strain PB1 represents the new source for biotechnological, medical, and agricultural applications.
机译:从海洋土壤中分离出对致病性真菌的拮抗活性的细菌菌株PB1,并根据表型和基因型表征鉴定为Paenibacillus Elgii。该分离物向“Aspergillus尼日尔(MTCC 282),Trichophyton rubrum(MTCC 791),微孢子粉(MTCC 2819),念珠菌(MTCC 227),和Saccharomyces Cerevisiae(MTCC 170)”的良好的抗真菌活性显示出良好的抗真菌活性。逐胰酶和β1,4-内葡聚糖酶已知其降解真菌细胞壁的能力,因此我们使用Phackett-Burman和中央复合设计分析了PB1菌株的生产率。鉴定并优化影响几丁质酶和β1,4-内葡聚糖酶的生产率的因素。逐渐增加7.77倍的增加(3.157至24.53 +/- 1.33 U / ml),达到β1,4-内葡聚糖酶与基础培养基的7.422倍增加(6.476至48.066 +/- 0.676 u / ml)。 Chitinase和Beta 1,4-内葡聚糖酶PB1产生的PB1代表生物技术,医疗和农业应用的新来源。

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