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Response surface methodology: A non-conventional statistical tool to maximize the throughput of Streptomyces species biomass and their bioactive metabolites

期刊

CRITICAL REVIEWS IN MICROBIOLOGY
卷 43, 期 5, 页码 567-582

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/1040841X.2016.1271308

关键词

Streptomyces; bioactive metabolites; bioprocess optimization; response surface methodology; yield improvement

资金

  1. DST-INSPIRE (Department of Science and Technology-Innovation in Science Pursuit for Inspired Research), New Delhi, India [IF110317/DST/INSPIRE Fellowship/2011]
  2. UGC, New Delhi [5-29/2016(IC)]

向作者/读者索取更多资源

Among diverse actinobacteria, Streptomyces is a renowned ongoing source for the production of a large number of secondary metabolites, furnishing immeasurable pharmacological and biological activities. Hence, to meet the demand of new lead compounds for human and animal use, research is constantly targeting the bioprospecting of Streptomyces. Optimization of media components and physicochemical parameters is a plausible approach for the exploration of intensified production of novel as well as existing bioactive metabolites from various microbes, which is usually achieved by a range of classical techniques including one factor at a time (OFAT). However, the major drawbacks of conventional optimization methods have directed the use of statistical optimization approaches in fermentation process development. Response surface methodology (RSM) is one of the empirical techniques extensively used for modeling, optimization and analysis of fermentation processes. To date, several researchers have implemented RSM in different bioprocess optimization accountable for the production of assorted natural substances from Streptomyces in which the results are very promising. This review summarizes some of the recent RSM adopted studies for the enhanced production of antibiotics, enzymes and probiotics using Streptomyces with the intention to highlight the significance of Streptomyces as well as RSM to the research community and industries.

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