Sara Cantera, Sergio Bordel, Raquel Lebrero, Juan Gancedo, Pedro A García-Encina, Raúl Muñoz
Journal: World journal of microbiology & biotechnology 2019;35(1):16
PMID: 30617555
Despite the environmental relevance of CH and forthcoming stricter regulations, the development of cost-efficient and environmentally friendly technologies for CH abatement is still limited. To date, one of the most promising solutions for the mitigation of this important GHG consists of the bioconversion of CH into bioproducts with a high profit margin. In this context, methanotrophs have been already proven as cell-factories of some of the most expensive products synthesized by microorganisms. In the case of ectoine (1000 $ kg), already described methanotrophic genera such as Methylomicrobium can accumulate up to 20% (ectoine wt) using methane as the only carbon source. Moreover, α-methanotrophs, such as Methylosynus and Methylocystis, are able to store bioplastic concentrations up to 50-60% of their total cell content. More than that, methanotrophs are one of the greatest potential producers of methanol and exopolysaccharides. Although this methanotrophic factory could be enhanced throughout metabolic engineering, the valorization of CH into valuable metabolites has been already consistently demonstrated under continuous and discontinuous mode, producing more than one compound in the same bioprocess, and using both, single strains and specific consortia. This review states the state-of-the-art of this innovative biotechnological platform by assessing its potential and current limitations.
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