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首页> 外文期刊>Applied biochemistry and microbiology >Microbial degradation of chitin waste for production of chitosanase and food related bioactive compounds.
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Microbial degradation of chitin waste for production of chitosanase and food related bioactive compounds.

机译:用于生产壳聚糖酶和食品相关生物活性化合物的几丁质废物的微生物降解。

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摘要

Ecological samples rich in microbial diversity like cow dung, legume rhizosphere, fish waste and garden soil were used for isolation of chitosan-degrading microorganisms. Selected isolates were used for production of chitosanase and food related bioactive compounds by conversion of biowaste. Production of glucosamine (Gln), N-acetylglucosamine (NAG), chitooligosaccharides (COS), antioxidants, antibacterial compounds and prebiotics was carried out by microbial fermentation of biowaste. The highest chitosanase activity (8 U/mL) was observed in Aspergillus sp. isolated from fish market waste and it could produce Gln and NAG while Streptomyces sp. isolated from garden soil was able to produce COS along with Gln and NAG. Radical scavenging activity was observed in culture supernatants of 35% of studied isolates, and 20% isolates secreted compounds which showed positive effect on growth of Bifidobacterium. Antibacterial compounds were produced by 40% of selected isolates and culture supernatants of two microbial isolates, Streptomyces zaomyceticus C6 and one of garden soil isolates, were effective against both gram positive and negative bacteria. copyright Pleiades Publishing, Inc. 2014.
机译:使用富含微生物多样性的生态样品,如牛粪,豆类根际,鱼粪和花园土壤,来分离降解壳聚糖的微生物。选定的分离物用于通过生物废物的转化生产脱乙酰壳多糖酶和食品相关的生物活性化合物。通过对生物废料进行微生物发酵来生产氨基葡萄糖(Gln),N-乙酰氨基葡萄糖(NAG),壳寡糖(COS),抗氧化剂,抗菌化合物和益生元。在曲霉菌中观察到最高的壳聚糖酶活性(8 U / mL)。分离自鱼类市场废物,它可能产生链霉菌属时的Gln和NAG。从花园土壤中分离出来的植物能够与Gln和NAG一起产生COS。在研究的35%分离株的培养上清液中观察到自由基清除活性,而20%分离株分泌的化合物对双歧杆菌的生长具有积极作用。抗菌化合物由40%的选定菌株产生,两种微生物菌株zaomyomysticus C6和花园土壤菌株之一的培养上清液均对革兰氏阳性菌和阴性菌均有效。版权所有Pleiades Publishing,Inc. 2014。

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