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Avoiding amino acid depletion in a complex medium results in improved Escherichia coli BW25113 growth

机译:避免复杂培养基中的氨基酸耗竭可改善大肠杆菌BW25113生长

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We studied Escherichia coli BW25113 growth in a complex medium with emphasis on amino acid consumption. The aim was to profile amino acid utilization in acid-hydrolysed casein and a defined nutrient-rich medium and based on these measurements modify the medium for better growth performance. Amino acid depletions in both media caused apparent biomass growth stops that prolonged growth duration. Obtained amino acid consumption values enabled a new defined medium to be formulated, where no growth stops were observed, the specific growth rate was constant, and the provided substrates were fully utilized. Similarly, we modified the acid-hydrolysed casein medium by adding pure amino acids that removed the apparent biomass growth stops. Key to our results was the combination of growth medium analysis and process monitoring data, specifically oxygen partial pressure and produced carbon dioxide that were used to track growth changes. Our findings showed the deficiencies of the nutrient-rich medium and how rational medium design, based on consumption values, removed these shortcomings. The resulting balanced medium gives a high specific growth rate and is suitable for studying E. coli physiology at fast growth.
机译:我们研究了大肠杆菌在复杂培养基中的生长BW25113重点是氨基酸消耗。目的是分析酸水解酪蛋白和确定的营养丰富的培养基中的氨基酸利用情况,并基于这些测量结果修改培养基以获得更好的生长性能。两种培养基中的氨基酸消耗导致明显的生物量生长停止,从而延长了生长持续时间。获得的氨基酸消耗值可以配制一种新的定义培养基,其中没有观察到生长停止,比生长速率恒定,并且充分利用提供的底物。类似地,我们通过添加纯氨基酸来改性酸水解酪蛋白培养基,这些氨基酸消除了表观的生物量生长停止。我们结果的关键是生长培养基分析和过程监测数据的结合,特别是用于跟踪生长变化的氧分压和产生的二氧化碳。我们的研究结果显示了营养丰富的培养基的不足,以及基于消费值的合理培养基设计如何消除这些缺点。由此产生的平衡培养基具有较高的比生长速率,适用于快速生长时研究大肠杆菌的生理学。

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