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从海洋海绵相关链霉菌MAPS15中优化生产吡咯烷酮抗菌剂。

Optimization and production of pyrrolidone antimicrobial agent from marine sponge-associated Streptomyces sp. MAPS15.

作者信息

Sathiyanarayanan G, Gandhimathi R, Sabarathnam B, Seghal Kiran G, Selvin Joseph

机构信息

School of Life Sciences, Bharathidasan University, Tiruchirappalli, 620024, Tamil Nadu, India.

出版信息

Bioprocess Biosyst Eng. 2014 Mar;37(3):561-73. doi: 10.1007/s00449-013-1023-2. Epub 2013 Aug 6.

Abstract

Twenty-nine actinobacterial strains were isolated from marine sponge Spongia officinalis and screened for antagonistic activity against various bacterial and fungal pathogens. The active antibiotic producer MAPS15 was identified as Streptomyces sp. using 16S rRNA phylogenetic analysis. The critical control factors were selected from Plackett-Burman (PB) factorial design and the bioprocess medium was optimized by central composite design (CCD) for the production of bioactive metabolite from Streptomyces sp. MAPS15. The maximum biomass and active compound production obtained with optimized medium was 6.13 g/L and 62.41 mg/L, respectively. The economical carbon source, paddy straw was applied for the enhanced production of bioactive compound. The purified active fraction was characterized and predicted as pyrrolidone derivative which showed broad spectrum of bioactivity towards indicator organisms. The predicted antimicrobial spectra suggested that the Streptomyces sp. MAPS15 can produce a suite of novel antimicrobial drugs.

摘要

从海洋海绵 Spongia officinalis 中分离出 29 株放线菌菌株,并筛选其对各种细菌和真菌病原体的拮抗活性。通过 16S rRNA 系统发育分析,将具有活性的抗生素产生菌 MAPS15 鉴定为链霉菌属。从 Plackett-Burman(PB)析因设计中选择关键控制因素,并通过中心复合设计(CCD)对链霉菌属 MAPS15 生产生物活性代谢物的生物工艺培养基进行优化。优化培养基获得的最大生物量和活性化合物产量分别为 6.13 g/L 和 62.41 mg/L。应用经济的碳源稻草来提高生物活性化合物的产量。对纯化的活性组分进行了表征,并预测为吡咯烷酮衍生物,其对指示生物显示出广谱的生物活性。预测的抗菌谱表明链霉菌属 MAPS15 可以产生一系列新型抗菌药物。

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