首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Optimization of Biomass and 5-Aminolevulinic Acid Production by Rhodobacter sphaeroides ATCC17023 via Response Surface Methodology
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Optimization of Biomass and 5-Aminolevulinic Acid Production by Rhodobacter sphaeroides ATCC17023 via Response Surface Methodology

机译:球形红细菌ATCC17023通过响应面法优化生物质和5-氨基乙酰丙酸的生产

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摘要

Microbial 5-aminolevulinic acid (ALA) produced from wastewater is considered as potential renewable energy. However, many hurdles are needed to be overcome such as the regulation of key influencing factors on ALA yield. Biomass and ALA production by Rhodobacter sphaeroides was optimized using response surface methodology. The culturing medium was artificial volatile fatty acids wastewater. Three additives were optimized, namely succinate and glycine that are precursors of ALA biosynthesis, and D-glucose that is an inhibitor of ALA dehydratase. The optimal conditions were achieved by analyzing the response surface plots. Statistical analysis showed that succinate at 8.56 mmol/L, glycine at 5.06 mmol/L, and D-glucose at 7.82 mmol/L were the best conditions. Under these optimal conditions, the highest biomass production and ALA yield of 3.55 g/L and 5.49 mg/g-biomass were achieved. Subsequent verification experiments at optimal values had the maximum biomass production of 3.41 +/- 0.002 g/L and ALA yield of 5.78 +/- 0.08 mg/g-biomass.
机译:从废水中产生的微生物5-氨基乙酰丙酸(ALA)被认为是潜在的可再生能源。但是,需要克服许多障碍,例如对ALA产量的关键影响因素的调控。球形红细菌细菌的生物质和ALA的生产使用响应面方法进行了优化。培养介质是人造挥发性脂肪酸废水。优化了三种添加剂,分别是ALA生物合成的前体琥珀酸酯和甘氨酸,以及是ALA脱水酶抑制剂的D-葡萄糖。通过分析响应面图获得了最佳条件。统计分析表明,最佳条件为琥珀酸8.56 mmol / L,甘氨酸5.06 mmol / L,D-葡萄糖7.82 mmol / L。在这些最佳条件下,最高生物量生产和ALA产量分别为3.55 g / L和5.49 mg / g生物量。随后以最佳值进行的验证实验最大生物量为3.41 +/- 0.002 g / L,ALA产量为5.78 +/- 0.08 mg / g-生物量。

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