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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Isolation, characterization and evolution of a new thermophilic Bacillus licheniformis for lactic acid production in mineral salts medium
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Isolation, characterization and evolution of a new thermophilic Bacillus licheniformis for lactic acid production in mineral salts medium

机译:新型嗜热地衣芽孢杆菌在矿物盐培养基中生产乳酸的分离,鉴定和进化

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摘要

The high fermentation cost of lactic acid is a barrier for polylactic acid (PLA) to compete with the petrochemical derived plastics. In order to lower the cost of lactic acid, the industry needs a microorganism that can ferment various sugars at high temperature (50°C) and at the same time using low cost mineral salts (MS) medium. One such bacterium, BL1, was isolated at 50°C and identified as Bacillus licheniformis. BL1 can ferment glucose to optically pure l-lactate with a maximum specific productivity of 7.8 g/h l in LB medium and 0.7 g/h l in MS medium at 50°C. BL1 can also consume 10% and 15% glucose in 20 and 48 h, respectively. After serial transfer of BL1 and BL2 in different concentrations of xylose and MS medium respectively, the final mutant BL3 could efficiently ferment glucose and xylose with specific productivity of 1.9 g/h l and 1.2 g/h l in strict MS medium.
机译:乳酸的高发酵成本是聚乳酸(PLA)与石油化学衍生塑料竞争的障碍。为了降低乳酸的成本,工业上需要一种能够在高温(50°C)并同时使用低成本矿物盐(MS)培养基发酵各种糖的微生物。在50℃下分离出一种这样的细菌BL1,并将其鉴定为地衣芽孢杆菌。 BL1可以将葡萄糖发酵成光学纯的l-乳酸,在50℃下于LB培养基中的最大比生产率为7.8 g / h l,在MS培养基中的最大比生产率为0.7 g / h l。 BL1还可以在20和48小时内分别消耗10%和15%的葡萄糖。在分别在不同浓度的木糖和MS培养基中连续转移BL1和BL2之后,最终的突变体BL3在严格的MS培养基中可以以1.9 g / h l和1.2 g / h l的比生产率有效地发酵葡萄糖和木糖。

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