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首页> 外文期刊>Fermentation >Production of d -Lactate from Avocado Seed Hydrolysates by Metabolically Engineered Escherichia coli JU15
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Production of d -Lactate from Avocado Seed Hydrolysates by Metabolically Engineered Escherichia coli JU15

机译:代谢工程化的大肠杆菌JU15由鳄梨种子水解产物生产d-乳酸

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Agroindustry residues can be used to produce valuable chemicals such as lactic acid, which is a primary chemical platform with many industrial applications. Biotechnological processes are the main approach of lactic acid production; however, culture media has an important impact on their costs. As a result, researchers are exploring various methods of production that use residual or waste biomass as raw materials, most of which are rich in lignocellulose. Nevertheless, starch and micronutrients such as those contained in avocado seeds stand out as promising feedstock for the bioprocess as well. In this study, the lactogenic Escherichia coli strain JU15 was evaluated for producing d -lactate using an avocado seed hydrolysate medium in a controlled stirred-tank bioreactor. The highest lactic acid concentration achieved was 37.8 g L ?1 using 120 g L ?1 as the content of initial reducing sugars. The results showed that d -lactate can be produced from avocado seed, which hydrolysates to 0.52 g L ?1 h ?1 using the engineered E. coli JU15. This study may serve as a starting point to further develop bioprocesses for producing metabolites using avocado seed hydrolysates.
机译:农药残留可用于生产有价值的化学品,例如乳酸,这是许多工业应用中的主要化学平台。生物技术过程是乳酸生产的主要方法。但是,文化媒体对其成本具有重要影响。结果,研究人员正在探索各种以剩余或废弃生物质为原料的生产方法,其中大多数都富含木质纤维素。然而,淀粉和微量营养素,例如鳄梨种子中所含的淀粉和微量营养素,也是生物工艺中很有希望的原料。在这项研究中,使用鳄梨种子水解产物培养基在受控的搅拌罐式生物反应器中评估了产乳酸大肠杆菌JU15产生d-乳酸的能力。使用120 g L?1作为初始还原糖的含量,可达到的最高乳酸浓度为37.8 g L?1。结果表明,可以从鳄梨种子中产生d-乳酸,使用工程化的大肠杆菌JU15将其水解为0.52 g L?1 h?1。这项研究可以作为进一步发展使用鳄梨种子水解产物生产代谢物的生物过程的起点。

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