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Medium Chain Length Polyhydroxyalkanoate Production by Engineered Pseudomonas gessardii Using Acetate-formate as Carbon Sources.
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Medium Chain Length Polyhydroxyalkanoate Production by Engineered Pseudomonas gessardii Using Acetate-formate as Carbon Sources.
Woo Young Kim1, Seung-Jin Kim1, Hye-Rin Seo2, Yoonyong Yang3, Jong Seok Lee3, Moonsuk Hur3, Byoung-Hee Lee3, Jong-Geol Kim2, Min-Kyu Oh1
Journal of Microbiology 2024;62(7):569-579
DOI: https://doi.org/10.1007/s12275-024-00136-x
Published online: May 3, 2024
1Department of Chemical and Biological Engineering, Korea University, Seoul, 02841, Republic of Korea.
2Department of Biological Science, Wonkwang University, Iksan, 54538, Republic of Korea.
3Biological and Genetic Resources Assessment Division, National Institute of Biological Resources, Incheon, 22689, Republic of Korea.
Corresponding author:  Min-Kyu Oh,
Email: mkoh@korea.ac.kr
Received: 6 February 2024   • Revised: 1 April 2024   • Accepted: 7 April 2024
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Production of medium chain length polyhydroxyalkanoate (mcl-PHA) was attempted using Pseudomonas gessardii NIBRBAC000509957, which was isolated from Sunchang, Jeollabuk-do, Republic of Korea (35°24'27.7"N, 127°09'13.0"E) and effectively utilized acetate and formate as carbon sources. We first evaluated the utilization of acetate as a carbon source, revealing optimal growth at 5 g/L acetate. Then, formate was supplied to the acetate minimal medium as a carbon source to enhance cell growth. After overexpressing the acetate and formate assimilation pathway enzymes, this strain grew at a significantly higher rate in the medium. As this strain naturally produces PHA, it was further engineered metabolically to enhance mcl-PHA production. The engineered strain produced 0.40 g/L of mcl-PHA with a biomass content of 30.43% in fed-batch fermentation. Overall, this strain can be further developed to convert acetate and formate into valuable products.

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    Medium Chain Length Polyhydroxyalkanoate Production by Engineered Pseudomonas gessardii Using Acetate-formate as Carbon Sources.
    J. Microbiol. 2024;62(7):569-579.   Published online May 3, 2024
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