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Multi-Response Optimization of Granaticinic Acid Production by Endophytic Streptomyces thermoviolaceus NT1, Using Response Surface Methodology

机译:响应面法对内生热链霉菌NT1生产谷氨酸的多反应优化

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Streptomyces thermoviolaceus NT1, an endophytic isolate, was studied for optimization of granaticinic acid production. It is an antimicrobial metabolite active against even drug resistant bacteria. Different media, optimum glucose concentration, initial media pH, incubation temperature, incubation period, and inoculum size were among the selected parameters optimized in the one-variable-at-a-time (OVAT) approach, where glucose concentration, pH, and temperature were found to play a critical role in antibiotic production by this strain. Finally, the Box–Behnken experimental design (BBD) was employed with three key factors (selected after OVAT studies) for response surface methodological (RSM) analysis of this optimization study.RSM analysis revealed a multifactorial combination; glucose 0.38%, pH 7.02, and temperature 36.53 °C as the optimum conditions for maximum antimicrobial yield. Experimental verification of model analysis led to 3.30-fold (61.35 mg/L as compared to 18.64 mg/L produced in un-optimized condition) enhanced granaticinic acid production in ISP2 medium with 5% inoculum and a suitable incubation period of 10 days. So, the conjugated optimization study for maximum antibiotic production from Streptomyces thermoviolaceus NT1 was found to result in significantly higher yield, which might be exploited in industrial applications.
机译:研究了内生分离物嗜热链霉菌NT1,以优化谷氨酸的生产。它是一种即使对抗药性细菌也具有活性的抗微生物代谢产物。选择不同参数的培养基,最佳葡萄糖浓度,初始培养基pH,孵育温度,孵育时间和接种量是一次一次可变(OVAT)方法优化的选定参数,其中葡萄糖浓度,pH和温度被发现在该菌株的抗生素生产中起关键作用。最后,将Box–Behnken实验设计(BBD)与三个关键因素(在OVAT研究后选择)一起用于该优化研究的响应面方法(RSM)分析。葡萄糖0.38%,pH 7.02和温度36.53°C是获得最大抗菌素产量的最佳条件。模型分析的实验验证导致在5%接种量和10天合适孵育时间的ISP2培养基中提高了3.30倍(61.35 mg / L,而未优化条件下为18.64 mg / L)。因此,共轭优化研究可以使嗜热链霉菌NT1产生最大量的抗生素,从而显着提高产量,可在工业应用中加以利用。

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