首页> 美国卫生研究院文献>Biomolecules >Poly-(γ-glutamic acid) Production and Optimization from Agro-Industrial Bioresources as Renewable Substrates by Bacillus sp. FBL-2 through Response Surface Methodology
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Poly-(γ-glutamic acid) Production and Optimization from Agro-Industrial Bioresources as Renewable Substrates by Bacillus sp. FBL-2 through Response Surface Methodology

机译:芽孢杆菌可再生底物从农业工业生物资源生产聚(γ-谷氨酸)和优化。 FBL-2通过响应面方法

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摘要

We optimized culture conditions using sp. FBL-2 as a poly-(γ-glutamic acid) (PGA) producing strain isolated from cheonggukjang. All experiments were performed under aerobic conditions using a laboratory scale 2.5 L fermentor. We investigated the effects of fermentation parameters (temperature, pH, agitation, and aeration) and medium components (glutamic acid, citric acid, and yeast extract) on poly-(γ-glutamic acid) production, viscosity, and dry cell mass. A non-optimized fermentation method (1.5 vvm, 350 rpm, and 37 °C) yielded PGA, viscosity, and dry cell mass at levels of 100.7 g/L, 483.2 cP, and 3.4 g/L, respectively. L-glutamic acid, citric acid, and yeast extract supplementation enhanced poly-(γ-glutamic acid) production to 175.9 g/L. Additionally, the production of poly-(γ-glutamic acid) from rice bran and wheat bran was assessed using response surface methodology (central composite rotatable design). Agricultural byproducts (rice bran and wheat bran) and H SO were selected as factors, and experiments were performed by combining various component concentrations to determine optimal component concentrations. Our experimentally-derived optimal parameters included 38.6 g/L of rice bran, 0.42% of H SO , 28.0 g/L of wheat bran, and 0.32% of H SO . Under optimum conditions, rice bran medium facilitated poly-(γ-glutamic acid) production of up to 22.64 g/L, and the use of wheat bran medium yielded up to 14.6 g/L. Based on a validity test using the optimized culture conditions, poly-(γ-glutamic acid) was produced at 47.6 g/L and 36.4 g/L from these respective mediums, and both results were higher than statistically predicted. This study suggests that rice bran can be used as a potential alternative substrate for poly-(γ-glutamic acid) production.
机译:我们使用sp优化培养条件。从清国寺分离的作为聚(γ-谷氨酸)(PGA)生产菌株的FBL-2。所有实验均在有氧条件下使用实验室规模的2.5 L发酵罐进行。我们研究了发酵参数(温度,pH,搅拌和通气)和培养基成分(谷氨酸,柠檬酸和酵母提取物)对聚(γ-谷氨酸)产量,粘度和干细胞质量的影响。一种非优化的发酵方法(1.5 vvm,350 rpm和37°C)分别产生的PGA,粘度和干细胞质量分别为100.7 g / L,483.2 cP和3.4 g / L。 L-谷氨酸,柠檬酸和酵母提取物补充剂可将聚-(γ-谷氨酸)产量提高至175.9 g / L。另外,使用响应面方法(中央复合可旋转设计)评估了米糠和麦麸中聚(γ-谷氨酸)的生产。选择农业副产品(米糠和麦麸)和H SO作为因素,并通过组合各种组分浓度进行实验以确定最佳组分浓度。我们的实验得出的最佳参数包括38.6 g / L的米糠,0.42%的HSO,28.0 g / L的麦麸和0.32%的HSO。在最佳条件下,米糠培养基可促进高达22.64 g / L的聚(γ-谷氨酸)生产,而使用麦麸培养基的产量可达14.6 g / L。根据使用优化培养条件的有效性测试,从这些各自的培养基中分别产生了47.6 g / L和36.4 g / L的聚(γ-谷氨酸),这两个结果均高于统计学预期。这项研究表明,米糠可用作聚(γ-谷氨酸)生产的潜在替代基质。

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