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首页> 外文期刊>Journal of King Saud University >Antibiotics production in optimized culture condition using low cost substrates from Streptomyces sp. AS4 isolated from mangrove soil sediment
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Antibiotics production in optimized culture condition using low cost substrates from Streptomyces sp. AS4 isolated from mangrove soil sediment

机译:抗生素在优化的培养条件下生产使用来自链霉菌的低成本基材 sp。从红树林沉积物中孤立的as4

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The development of novel antibiotics with desirable properties from naturally available organisms is an on-going process in the field of microbial biotechnology. Mangroves are not extensively exploited for the isolation and screening of antimicrobial agents of the genusStreptomyces. The emergence of multidrug-resistant pathogens necessitates continuous search for novel antimicrobial agents. Also, searching of novel strains from pristine environments is an important approach for obtaining novel bioactive molecules.Streptomycessp. AS4 was isolated from the mangroves. Antibiotic production was performed using substrates such as, apple pomace, pine apple peel, orange peel, rice bran, wheat bran, green gram husk, banana peel, pomegranate peel and black gram husk in solid state fermentation. Antibacterial activity was performed using Gram positive bacterial pathogen. The nutrient sources (carbon, nitrogen and ion) were optimized initially by one-variable-at-a-time approach and two level full factorial designs. In this study 129 actinomycetes were isolated from the mangroves. The isolates were assessed for their antibacterial activity. Among these isolates,Streptomycessp. AS4 showed very strong antibacterial activity. Among these substrates, wheat bran showed enhanced production of antibiotics (209?U/g), whereas pomegranate peel supported very less quantity of antibiotics production (43?U/g) in a two level full factorial design. The process parameters were screened using traditional methods and statistical approach. Among the tested factors, moisture, yeast extract and CaCl2significantly influenced the antibiotics production. Central composite design and response surface methodology enhanced antibiotics production byStreptomycessp. AS4 by 10 fold than non-optimized medium.Streptomycessp. AS4, a mangrove isolate showed hyper production of antibiotics. The strain AS4 utilized various agro-wastes including wheat bran for antibiotics production. Wheat bran proved to be a potent solid substrate for the production of antibiotics in an industrial scale. The actinomycetes strain,Streptomycessp. AS4 and its antibiotics may have great application against various drug resistant organisms.
机译:新型抗生素的开发具有自然有机体的理想性质是微生物生物技术领域的正在进行的过程。红树林未被广泛利用,用于分离和筛选Genusstrestomyces的抗微生物剂。多药物抗性病原体的出现需要连续寻找新的抗微生物剂。此外,从原始环境中搜索新型菌株是获得新型生物活性分子的重要方法.Strextomycessp。 AS4与红树林隔离。使用苹果渣,松苹果果皮,橙皮,米糠,小麦麸皮,绿革氏壳,香蕉皮,石榴果皮和黑革兰克,在固态发酵等抗生素生产进行抗生素生产。使用革兰氏阳性细菌病原体进行抗菌活性。最初通过一次可变的AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-AT-IMPERIAL IMPERIAL IFERIAL设计优化营养源(碳,氮和离子)。在本研究中,从红树林中分离了129个放线菌。评估分离物的抗菌活性。在这些分离物中,链霉菌。 AS4显示出非常强烈的抗菌活性。在这些底物中,小麦麸皮显示出增强的抗生素(209μl)的生产(209?U / g),而石榴果皮在两级全面设计中负载非常少量的抗生素生产(43 u / g)。使用传统方法和统计方法进行筛选过程参数。在测试的因素,水分,酵母提取物和CaCl2中显着影响抗生素生产。中央复合设计与响应面方法增强抗生素生产BystreStromycessp。 AS4比未优化的培养基倍数为10倍.STRETOMYCESSP。 AS4,红树林分离物显示出高产抗生素。菌株AS4利用各种农业废物,包括小麦麸皮抗生素生产。小麦麸皮被证明是一种有效的固体基质,用于生产工业规模的抗生素。放线菌菌株,链霉菌。 AS4及其抗生素可能适用于各种耐药生物。

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