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通过同源重组破坏乳酸脱氢酶以提高热厌氧菌Thermoanaerobacterium aotearoense 中的生物乙醇产量。

Disruption of lactate dehydrogenase through homologous recombination to improve bioethanol production in Thermoanaerobacterium aotearoense.

机构信息

School of Bioscience and Bioengineering, South China University of Technology, Guangzhou 510006, PR China.

出版信息

Enzyme Microb Technol. 2011 Feb 8;48(2):155-61. doi: 10.1016/j.enzmictec.2010.10.006. Epub 2010 Oct 30.

Abstract

To enhance ethanol production in Thermoanaerobacterium aotearoense, the lactate dehydrogenase (ldh) gene, which is responsible for lactic acid production in a key branch pathway, was successfully disrupted via homologous recombination. ldh-up and ldh-down were designed and amplified based on JW/SL-YS485-AY 278026, and they were subsequently used as homologous fragments with an inserted erythromycin resistance gene to construct the targeted vector based on pBLUESCRIPT II SK(+). Southern hybridization and PCR-based assay definitely confirmed that the ldh gene in the Δldh mutant was disrupted by the insertion of the erythromycin resistance gene. Compared with the wild type, the Δldh mutant exhibited increases of 31.0% and 31.4% in cell yield under glucose and xylose cultivation, respectively, probably because knocking out the ldh gene results in increased acetate and ATP levels. Knockout of lactate dehydrogenase produced 2.37- and 2.1-fold increases in the yield of ethanol (mole/mole substrate) under glucose and xylose cultivation, respectively. Moreover, no lactic acid was detected in Δldh mutant fermentation mixtures (detection limit of HPLC: 0.5 mM), but lactic acid was readily detected for growth of the wild-type strain on both glucose and xylose, with final concentrations up to 59.24 mM and 56.06 mM, respectively. The success of this process thoroughly demonstrates the methodological possibility of gene knockout through homologous recombination in Thermoanaerobacterium.

摘要

为了提高热厌氧菌(Thermoanaerobacterium aotearoense)的乙醇产量,成功地通过同源重组破坏了负责乳酸生成的关键分支途径的乳酸脱氢酶(ldh)基因。基于 JW/SL-YS485-AY 278026,设计和扩增了 ldh-up 和 ldh-down,并将其作为带有插入的红霉素抗性基因的同源片段,基于 pBLUESCRIPT II SK(+)构建了靶向载体。Southern 杂交和基于 PCR 的检测明确证实了Δldh 突变体中的 ldh 基因被插入的红霉素抗性基因所破坏。与野生型相比,Δldh 突变体在葡萄糖和木糖培养下的细胞产量分别增加了 31.0%和 31.4%,这可能是因为敲除 ldh 基因导致乙酸和 ATP 水平增加。敲除乳酸脱氢酶使在葡萄糖和木糖培养下乙醇(摩尔/摩尔底物)的产率分别增加了 2.37 倍和 2.1 倍。此外,在Δldh 突变体发酵混合物中未检测到乳酸(HPLC 检测限:0.5 mM),但在葡萄糖和木糖上野生型菌株的生长很容易检测到乳酸,最终浓度分别达到 59.24 mM 和 56.06 mM。该过程的成功充分证明了通过同源重组在热厌氧菌中进行基因敲除的方法学可能性。

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