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Development of Photobacterium sp. LN01 as a Versatile Halophilic Platform for Tunable Biosynthesis of
Meng-Ru Wang1, Siyan Tao1, Nuo Lin1
1State Key Laboratory of Green Biomanufacturing, National Energy R&D Center for Biorefinery, and Beijing Key Laboratory of Green Chemicals Biomanufacturing, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.
Abstract:
Poly(3-hydroxybutyrate-co-4-hydroxybutyrate) (P34HB) is a biodegradable polyester with tunable properties depending on its 4HB monomer content. Here, we engineered the newly isolated halophilic bacterium, Photobacterium sp. LN01, for efficient P34HB production. The wild-type strain naturally synthesizes poly(3-hydroxybutyrate) (PHB) from carbon sources such as sucrose and glycerol and produces P34HB when supplemented with γ-butyrolactone (GBL) as a cosubstrate. A genetic toolbox comprising conjugation and genome editing was developed for targeted metabolic engineering. Heterologous expression of the CoA transferase gene orfZ from Clostridium kluyveri, first on a low-copy plasmid and then through chromosomal integration at the phaC locus, increased 4HB incorporation from ∼9 to ∼30 mol %. Further replacement of the lactate dehydrogenase gene with the orfZ expression module suppressed lactate formation and yielded up to 16.45 g/L P34HB with 39.79 mol % 4HB in shake flasks. Finally, fine-tuning the expression of orfZ minimized the metabolic burden during bioreactor cultivation, achieving 103.10 g/L P34HB with 13.02 mol % 4HB. The GBL conversion rate was 71.28%, representing the highest level reported to date. This work establishes Photobacterium sp. LN01 as a promising chassis for efficient and tunable P34HB biosynthesis.
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