Evaluation of medium-chain-length polyhydroxyalkanoate production byPseudomonas putidaLS46 using biodiesel by-product streams

Author:

Fu Jilagamazhi1,Sharma Umesh1,Sparling Richard2,Cicek Nazim1,Levin David B.1

Affiliation:

1. Department of Biosystems Engineering, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.

2. Department of Microbiology, University of Manitoba, Winnipeg, MB R3T 2N2, Canada.

Abstract

Medium-chain-length polyhydroxyalkanoate (mcl-PHA) production by Pseudomonas putida LS46 was analyzed in shake-flask-based batch reactions, using pure chemical-grade glycerol (PG), biodiesel-derived “waste” glycerol (WG), and biodiesel-derived “waste” free fatty acids (WFA). Cell growth, substrate consumption, mcl-PHA accumulation within the cells, and the monomer composition of the synthesized biopolymers were monitored. The patterns of mcl-PHA synthesis in P. putida LS46 cells grown on PG and WG were similar but differed from that of cells grown with WFA. Polymer accumulation in glycerol-based cultures was stimulated by nitrogen limitation and plateaued after 48 h in both PG and WG cultures, with a total accumulation of 17.9% cell dry mass and 16.3% cell dry mass, respectively. In contrast, mcl-PHA synthesis was independent of nitrogen concentration in P. putida LS46 cells cultured with WFA, which accumulated to 29% cell dry mass. In all cases, the mcl-PHAs synthesized consisted primarily of 3-hydroxyoctanoate (C8) and 3-hydroxydecanoate (C10). WG and WFA supported similar or greater cell growth and mcl-PHA accumulation than PG under the experimental conditions used. These results suggest that biodiesel by-product streams could be used as low-cost carbon sources for sustainable mcl-PHA production.

Publisher

Canadian Science Publishing

Subject

Genetics,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Immunology,Microbiology

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