Oxidation of propionate in Pseudomonas sp. LFM046: Relevance to the synthesis of polyhydroxyalkanoates containing odd-chain length monomers and 2-methylisocitrate

Pseudomonas sp. LFM046 produces polyhydroxyalkanoates of medium-chain length. When carbohydrates are used, only monomers of even-length chains (3HA ) are generated. Propionate, when used as a co-substrate, enabled the synthesis of odd-chain length monomers, albeit with poor yields (Y ) of approx. 10...

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Veröffentlicht in:Bioresource technology 2024-01, Vol.391, p.129944, Article 129944
Hauptverfasser: Santos-Oliveira, Pedro Henrique, Machado, Nathália Fernandes Gonçalves, de Oliveira, Rafael David, Velasco-Yépez, Eric André, da Silva, Sonia Regina, Santos Rocha, Rafael Costa, Blank, Lars Mathias, da Silva, Luiziana Ferreira, Le Roux, Galo Antonio Carrillo, Gomez, José Gregório Cabrera
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Sprache:eng
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Zusammenfassung:Pseudomonas sp. LFM046 produces polyhydroxyalkanoates of medium-chain length. When carbohydrates are used, only monomers of even-length chains (3HA ) are generated. Propionate, when used as a co-substrate, enabled the synthesis of odd-chain length monomers, albeit with poor yields (Y ) of approx. 10 % A mini-Tn5 mutant (LFM693) was generated by interrupting the prpB gene, which encodes the 2-methylisocitrate lyase responsible for one step in propionate oxidation via 2-methylcitrate cycle. At low propionate concentrations of 0.1-0.3 g.L , LFM693 showed higher Y . In contrast, the propionyl incorporation into the polymer was less efficient at high propionate concentrations. The excretion of 2-methylisocitrate partially explained this reduced efficiency. However, mass balances and C isotopomer analysis revealed significant propionate oxidation in LFM693 of 21 % and 46 % for propionate concentrations of 0.5 and 1.0 g.L , respectively. Experiments using C1-labeled ( C) propionate revealed an alternative propionate oxidation pathway (α-oxidation, β-oxidation, or 3-methylmalate) whose genes are yet to be revealed.
ISSN:0960-8524
1873-2976
1873-2976
DOI:10.1016/j.biortech.2023.129944