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Optimization of Culture Conditions for 1,3-Propanediol Production from Glycerol Using a Mutant Strain of <Emphasis Type="Italic">Klebsiella pneumoniae</Emphasis>
Authors:Baek-Rock Oh  Jeong-Woo Seo  Sun-Yeon Heo  Won-Kyung Hong  Lian Hua Luo  Seonghun Kim  Don-Hee Park  Chul Ho Kim
Institution:(1) Microbe-based Fusion Technology Research Center, Jeonbuk Branch Institute, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Jeongeup, Jeonbuk, 580-185, South Korea;(2) Interdisciplinary Program of the Graduate School for Bioenergy & Biomaterials, Chonnam National University, Gwangju, 500-757, South Korea;(3) Institute for Molecular Biology and Genetics, Research Center of Bioactive Materials, Chonbuk National University, Jeonju, Chonbuk, 561-756, South Korea;
Abstract:In the present work, mutant strains of Klebsiella pneumoniae with deletions of the als gene encoding acetolactate synthase involved in synthesis of 2,3-butanediol, the ldhA gene encoding lactate dehydrogenase required for lactate synthesis, or both genes, were prepared. Production of 1,3-propanediol (1,3-PD) from glycerol was enhanced in the ldhA mutant strain (ΔldhA), but lower in Δals or Δals ΔldhA mutant strains compared to the parent strain, concomitant with a reduction in the glycerol consumption rate, indicating that deletion of ldhA alone was useful to improve 1,3-PD production. Fed-batch fermentation analysis revealed that, in the ΔldhA mutant strain, 1,3-PD production was higher at low pH than at neutral pH; the reverse was true for the parent strain. Further optimization of culture conditions, by variation of aeration and glycerol feed rates, dramatically improved the production of 1,3-PD by the mutant strain. The maximum level attained was 102.7 g l−1 of 1,3-PD from glycerol.
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