Biosynthetic enhancement of single-stage Poly(3-hydroxybutyrate-co-4-hydroxybutyrate) production by manipulating the substrate mixtures

Author:

Huong Kai-Hee1,Kannusamy Shantini2,Lim Sumithda Yeong Hui3,Amirul A A124

Affiliation:

1. grid.454125.3 Malaysian Institute of Pharmaceuticals and Nutraceuticals, NIBM 11700 Gelugor Penang Malaysia

2. grid.11875.3a 0000000122943534 School of Biological Sciences Universiti Sains Malaysia 11800 Minden Penang Malaysia

3. grid.11875.3a 0000000122943534 School of Chemical Sciences Universiti Sains Malaysia 11800 Minden Penang Malaysia

4. grid.11875.3a 0000000122943534 Centre for Chemical Biology Universiti Sains Malaysia 11900 Bayan Lepas Penang Malaysia

Abstract

Abstract Two-stage fermentation was normally employed to achieve a high poly(3-hydroxybutyrate-co-4-hydroxybutyrate) [P(3HB-co-4HB)] productivity with higher 4HB molar fraction. Here, we demonstrated single-stage fermentation method which is more industrial feasible by implementing mixed-substrate cultivation strategy. Studies on bioreactor scale show a remarkably high PHA accumulation of 73 wt%, contributing to a high PHA concentration and product yield of 8.6 g/L and 2.7 g/g, respectively. This fermentation strategy has resulted in copolymers with wider range of 4HB monomer composition, which ranges from 12 to 55 mol%. These copolymers show a broad range of weight average molecular weight (M  w) from 119.5 to 407.0 kDa. The copolymer characteristics were found to be predominantly affected by the nature of the substrates and the mixture strategies, regardless of the 4HB monomer compositions. This was supported by the determination of copolymer randomness using 13C-NMR analysis. The study warrants significantly in the copolymer scale-up and modeling at industrial level.

Funder

Kementerian Sains, Teknologi dan Inovasi (MY)

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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