A statistical approach to enhance the productivity of Streptomyces baarensis MH-133 for bioactive compounds

IF 4.4 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Synthetic and Systems Biotechnology Pub Date : 2024-02-08 DOI:10.1016/j.synbio.2024.01.012
Mohamed H. Kalaba , Gamal M. El-Sherbiny , Osama M. Darwesh , Saad A. Moghannem
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Abstract

The goal of this study was to use statistical optimization to change the nutritional and environmental conditions so that Streptomyces baarensis MH-133 could make more active metabolites. Twelve trials were used to screen for critical variables influencing productivity using the Placket-Burman Design method. S. baarensis MH-133 is significantly influenced by elicitation, yeast extract, inoculum size, and incubation period in terms of antibacterial activity. A total of 27 experimental trials with various combinations of these factors were used to carry out the response surface technique using the Box-Behnken design. The analyses revealed that the model was highly significant (p < 0.001), with a lack-of-fit of 0.212 and a coefficient determination (R2) of 0.9224. Additionally, the model predicted that the response as inhibition zone diameter would reach a value of 27 mm. Under optimal conditions, S. baarensis MH-133 produced 18.0 g of crude extract to each 35L and was purified with column chromatography. The active fraction exhibiting antibacterial activity was characterized using spectroscopic analysis. The MIC and MBC values varied between 37.5 and 300 μg/ml and 75 and 300 μg/ml, respectively. In conclusion, the biostatistical optimization of the active fraction critical variables, including environmental and nutritional conditions, enhances the production of bioactive molecules by Streptomyces species.

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提高巴氏链霉菌 MH-133 生物活性化合物生产率的统计方法
本研究的目的是通过统计优化来改变营养和环境条件,从而使巴氏链霉菌 MH-133 产生更多的活性代谢物。采用 "褶皱-伯曼设计法"(Placket-Burman Design method)进行了 12 项试验,以筛选影响生产率的关键变量。在抗菌活性方面,诱导、酵母提取物、接种体大小和培养期对巴氏酵母菌 MH-133 有显著影响。采用箱-贝肯设计法,对上述因素的不同组合共进行了 27 次实验,并进行了响应面技术分析。分析表明,该模型非常显著(p < 0.001),拟合度为 0.212,决定系数(R2)为 0.9224。此外,该模型预测抑制区直径的响应值将达到 27 毫米。在最佳条件下,S. baarensis MH-133 每 35 升产生 18.0 克粗提取物,并通过柱层析进行纯化。利用光谱分析对表现出抗菌活性的活性部分进行了表征。MIC 和 MBC 值分别为 37.5 至 300 μg/ml 和 75 至 300 μg/ml。总之,对活性组分关键变量(包括环境和营养条件)进行生物统计优化,可提高链霉菌生产生物活性分子的能力。
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来源期刊
Synthetic and Systems Biotechnology
Synthetic and Systems Biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
6.90
自引率
12.50%
发文量
90
审稿时长
67 days
期刊介绍: Synthetic and Systems Biotechnology aims to promote the communication of original research in synthetic and systems biology, with strong emphasis on applications towards biotechnology. This journal is a quarterly peer-reviewed journal led by Editor-in-Chief Lixin Zhang. The journal publishes high-quality research; focusing on integrative approaches to enable the understanding and design of biological systems, and research to develop the application of systems and synthetic biology to natural systems. This journal will publish Articles, Short notes, Methods, Mini Reviews, Commentary and Conference reviews.
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