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通过在矿物质盐培养基中对代谢工程改造的产酸克雷伯菌中的乙醇脱氢酶、乙酸激酶-磷酸转乙酰酶和乳酸脱氢酶基因进行联合缺失,有效减少副产物的形成并提高2,3-丁二醇的生产产量。

Efficient reduction of the formation of by-products and improvement of production yield of 2,3-butanediol by a combined deletion of alcohol dehydrogenase, acetate kinase-phosphotransacetylase, and lactate dehydrogenase genes in metabolically engineered Klebsiella oxytoca in mineral salts medium.

作者信息

Jantama Kaemwich, Polyiam Pattharasedthi, Khunnonkwao Panwana, Chan Sitha, Sangproo Maytawadee, Khor Kirin, Jantama Sirima Suvarnakuta, Kanchanatawee Sunthorn

机构信息

Metabolic Engineering Research Unit, School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, 111 University Avenue, Suranaree Sub-District, Muang District, 30000 Nakhon Ratchasima, Thailand.

Metabolic Engineering Research Unit, School of Biotechnology, Institute of Agricultural Technology, Suranaree University of Technology, 111 University Avenue, Suranaree Sub-District, Muang District, 30000 Nakhon Ratchasima, Thailand.

出版信息

Metab Eng. 2015 Jul;30:16-26. doi: 10.1016/j.ymben.2015.04.004. Epub 2015 Apr 17.

Abstract

Klebsiella oxytoca KMS005 (∆adhE∆ackA-pta∆ldhA) was metabolically engineered to improve 2,3-butanediol (BDO) yield. Elimination of alcohol dehydrogenase E (adhE), acetate kinase A-phosphotransacetylase (ackA-pta), and lactate dehydrogenase A (ldhA) enzymes allowed BDO production as a primary pathway for NADH re-oxidation, and significantly reduced by-products. KMS005 was screened for the efficient glucose utilization by metabolic evolution. KMS005-73T improved BDO production at a concentration of 23.5±0.5 g/L with yield of 0.46±0.02 g/g in mineral salts medium containing 50 g/L glucose in a shake flask. KMS005-73T also exhibited BDO yields of about 0.40-0.42 g/g from sugarcane molasses, cassava starch, and maltodextrin. During fed-batch fermentation, KMS005-73T produced BDO at a concentration, yield, and overall and specific productivities of 117.4±4.5 g/L, 0.49±0.02 g/g, 1.20±0.05 g/Lh, and 27.2±1.1 g/gCDW, respectively. No acetoin, lactate, and formate were detected, and only trace amounts of acetate and ethanol were formed. The strain also produced the least by-products and the highest BDO yield among other Klebsiella strains previously developed.

摘要

对产酸克雷伯菌KMS005(ΔadhEΔackA - ptaΔldhA)进行代谢工程改造以提高2,3 - 丁二醇(BDO)产量。消除乙醇脱氢酶E(adhE)、乙酸激酶A - 磷酸转乙酰酶(ackA - pta)和乳酸脱氢酶A(ldhA),使BDO生产成为NADH再氧化的主要途径,并显著减少了副产物。通过代谢进化筛选出高效利用葡萄糖的KMS005。在含有50 g/L葡萄糖的摇瓶中的矿物盐培养基中,KMS005 - 73T的BDO产量提高到23.5±0.5 g/L,产率为0.46±0.02 g/g。KMS005 - 73T从甘蔗 molasses、木薯淀粉和麦芽糊精中也表现出约0.40 - 0.42 g/g的BDO产率。在分批补料发酵过程中,KMS005 - 73T产生的BDO浓度、产率、总生产率和比生产率分别为117.4±4.5 g/L、0.49±0.02 g/g、1.20±0.05 g/Lh和27.2±1.1 g/gCDW。未检测到乙偶姻、乳酸和甲酸,仅形成痕量的乙酸和乙醇。该菌株在先前开发的其他克雷伯菌菌株中产生的副产物最少,BDO产率最高。

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