Metabolic modeling of Halomonas campaniensis improves polyhydroxybutyrate production under nitrogen limitation

Deantas-Jahn, Carolina; Mendoza, Sebastian Nelson; Licona-Cassani, Cuauhtemoc; Orellana, Camila A.; Saa, Pedro A.

Abstract

Poly-hydroxybutyrate (PHB) is an environmentally friendly alternative for conventional fossil fuel-based plastics that is produced by various microorganisms. Large-scale PHB production is challenging due to the comparatively higher biomanufacturing costs. A PHB overproducer is the haloalkaliphilic bacterium Halomonas campaniensis, which has low nutritional requirements and can grow in cultures with high salt concentrations, rendering it resistant to contamination. Despite its virtues, the metabolic capabilities of H. campaniensis as well as the limitations hindering higher PHB production remain poorly studied. To address this limitation, we present HaloGEM, the first high-quality genome-scale metabolic network reconstruction, which encompasses 888 genes, 1528 reactions (1257 gene-associated), and 1274 metabolites. HaloGEM not only displays excellent agreement with previous growth data and experiments from this study, but it also revealed nitrogen as a limiting nutrient when growing aerobically under high salt concentrations using glucose as carbon source. Among different nitrogen source mixtures for optimal growth, HaloGEM predicted glutamate and arginine as a promising mixture producing increases of 54.2% and 153.4% in the biomass yield and PHB titer, respectively. Furthermore, the model was used to predict genetic interventions for increasing PHB yield, which were consistent with the rationale of previously reported strategies. Overall, the presented reconstruction advances our understanding of the metabolic capabilities of H. campaniensis for rationally engineering this next-generation industrial biotechnology platform.

Más información

Título de la Revista: Applied Microbiology and Biotechnology
Volumen: 108
Número: 310
Editorial: Springer
Fecha de publicación: 2024
Página de inicio: 1
Página final: 16
URL: https://link.springer.com/article/10.1007/s00253-024-13111-8
DOI:

10.1007/s00253-024-13111-8

Notas: Paper WoS