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Methods for genetic optimization of biocatalysts for biofuel production from dairy waste through synthetic biology

机译:通过合成生物学从乳制品中生产生物催化剂的生物催化剂遗传优化方法

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Whey is an abundant by-product of cheese production process and it is considered a special waste due to its high nutritional load and hypertrophic potential. Technologies for whey valorization are available. They can convert such waste into high-value products, like whey proteins. However, the remaining liquid (called permeate) is still considered as a polluting waste due to its high lactose concentration. The alcoholic fermentation of lactose into ethanol will simultaneously achieve two important goals: safe disposal of a pollutant waste and green energy production. This methodology paper illustrates the workflow carried out to design and realize an optimized microorganism that can efficiently perform the lactose-to-ethanol conversion, engineered via synthetic biology experimental and computational approaches.
机译:乳清是奶酪生产过程的丰富副产品,并且由于其高营养负荷和肥大潜力而被认为是一种特殊的废物。提供乳清贪度的技术。它们可以将这些废物转化为高价值产品,如乳清蛋白。然而,由于其高乳糖浓度,剩余的液体(称为渗透物)仍被认为是污染废物。乳糖中的含酒精发酵到乙醇中将同时达到两个重要目标:安全处理污染物污染物和绿色能源生产。该方法纸张说明了设计的工作流程,并实现了优化的微生物,其可以有效地通过合成生物学实验和计算方法设计的乳糖 - 乙醇转化。

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