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Metabolic characterization and transformation of the non-dairy Lactococcus lactis strain KF147, for production of ethanol from xylose

机译:非乳制乳酸乳球菌菌株KF147的代谢表征和转化,用于从木糖生产乙醇

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摘要

The non-dairy lactic acid bacterium Lactococcus lactis KF147 can utilize xylose as the sole energy source. To assess whether KF147 could serve as a platform organism for converting second generation sugars into useful chemicals, we characterized growth and product formation for KF147 when grown on xylose. In a defined medium KF147 was found to co-metabolize xylose and arginine, resulting in bi-phasic growth. Especially at low xylose concentrations, arginine significantly improved growth rate. To facilitate further studies of the xylose metabolism, we eliminated arginine catabolism by deleting the arcA gene encoding the arginine deiminase. The fermentation product profile suggested two routes for xylose degradation, the phosphoketolase pathway and the pentose phosphate pathway. Inactivation of the phosphoketolase pathway redirected the entire flux through the pentose phosphate pathway whereas over-expression of phosphoketolase increased the flux through the phosphoketolase pathway. In general, significant amounts of the mixed-acid products, including lactate, formate, acetate and ethanol, were formed irrespective of xylose concentrations. To demonstrate the potential of KF147 for converting xylose into useful chemicals we chose to redirect metabolism towards ethanol production. A synthetic promoter library was used to drive the expression of codon-optimized versions of the Zymomonas mobilis genes encoding pyruvate decarboxylase and alcohol dehydrogenase, and the outcome was a strain producing ethanol as the sole fermentation product with a high yield corresponding to 83% of the theoretical maximum. The results clearly indicate the great potential of using the more metabolically diverse non-dairy L. lactis strains for bio-production based on xylose containing feedstocks.
机译:非乳制品乳酸菌乳酸乳球菌KF147可以利用木糖作为唯一能源。为了评估KF147是否可以用作将第二代糖转化为有用化学物质的平台生物,我们表征了在木糖上生长时KF147的生长和产物形成。在确定的培养基中,发现KF147共同代谢木糖和精氨酸,导致两相生长。特别是在低木糖浓度下,精氨酸可显着提高生长速度。为了促进对木糖代谢的进一步研究,我们通过删除编码精氨酸脱亚氨酶的arCA基因消除了精氨酸分解代谢。发酵产物概况表明木糖降解的两种途径,磷酸酮醇酶途径和戊糖磷酸途径。磷酸酮醇酶途径的失活将整个通量重定向通过戊糖磷酸途径,而磷酸酮醇酶的过表达增加了通过磷酸酮醇酶途径的通量。通常,无论木糖浓度如何,都会形成大量的混合酸产物,包括乳酸盐,甲酸盐,乙酸盐和乙醇。为了证明KF147将木糖转化为有用化学物质的潜力,我们选择将代谢重新定向为乙醇生产。合成的启动子文库用于驱动编码丙酮酸脱羧酶和乙醇脱氢酶的运动发酵单胞菌基因的密码子优化版本的表达,其结果是产生作为唯一发酵产物的乙醇的菌株,其产量高,相当于乙醇的83%。理论最大值。结果清楚地表明,在含木糖原料的基础上,使用更多代谢多样的非乳乳酸乳球菌菌株进行生物生产的巨大潜力。

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