| Literature DB >> 30072960 |
Jorge A Zaldívar Carrillo1, Lisa Y Stein2, Dominic Sauvageau1.
Abstract
Methane and methanol are common industrial by-products that can be used as feedstocks for the production of value-added products by methylotrophic bacteria. Alphaproteobacterial methanotrophs are known to produce and accumulate the biopolymer polyhydroxybutyrate (PHB) under conditions of nutrient starvation. The present study determined optimal production of biomass and PHB by Methylosinus trichosporium OB3b as a function of carbon source (methane or methanol), nitrogen source (ammonium or nitrate), and nitrogen-to-carbon ratio during growth. Statistical regression analysis with interactions was performed to assess the importance of each factor, and their respective interactions, on biomass and PHB production. Higher biomass concentrations were obtained with methane as carbon source and with ammonium as nitrogen source. The nitrogen source that favored PHB production was ammonium for methane-grown cells and nitrate for methanol-grown cells. Response surface methodology (RSM) was used to determine conditions leading to optimal biomass and PHB production. As an example, the optimal PHB concentration was predicted to occur when a mixture of 30% methane and 70% methanol (molar basis) was used as carbon source with nitrate as nitrogen source and a nitrogen-to-carbon molar ratio of 0.017. This was confirmed experimentally, with a PHB concentration of 48.7 ± 8.3 mg/L culture, corresponding to a cell content of 52.5 ± 6.3% (cell dry weight basis). Using RSM to simultaneously interrogate multiple variables toward optimized growth and production of biopolymer serves as a guide for establishing more efficient industrial conditions to convert single-carbon feedstocks into value-added products.Entities:
Keywords: Methylosinus trichosporium; methanotroph growth; optimization of biopolymer production; polyhydroxybutyrate (PHB); response surface methodology
Year: 2018 PMID: 30072960 PMCID: PMC6058025 DOI: 10.3389/fmicb.2018.01513
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Factors and levels used in the second-order statistical regression analysis.
| Factors investigated | Design levels | |
|---|---|---|
| Carbon source | Methane (CH4) | +1 |
| Methanol (CH3OH) | -1 | |
| Nitrogen source | Ammonium (NH4+) | +1 |
| Nitrate (NO3-) | -1 | |
| Nitrogen-to-Carbon ratio (N:C) | Low1 | +1 |
| High2 | -1 | |
| Inoculum history3 | Fresh methane-grown | +1 |
| Aged methane-grown | -1 | |
| Fresh methanol-grown | +1 | |
| Aged methanol-grown | -1 | |
Factors and levels used in the response surface methodology experiments.
| Factors investigated | Design levels |
|---|---|
| Carbon source (molar basis) | 100% methane |
| 50% methane, 50% methanol | |
| 100% methanol | |
| Nitrogen source (molar basis) | 100% ammonium |
| 50% ammonium, 50% nitrate | |
| 100% nitrate | |
| Nitrogen-to-Carbon ratio (molar basis) | 0.005 |
| 0.025 | |
| 0.045 | |
Final OD540 for Methylosinus trichosporium OB3b growth experiments.
| C-source | N-source | N:C ratio | CH4-grown inoculum | CH3OH-grown inoculum | ||
|---|---|---|---|---|---|---|
| Fresh | Aged | Fresh | Aged | |||
| CH4 | NH4+ | Low | 0.346 @ 0.009 | 0.354 @ 0.006 | – | – |
| CH4 | NH4+ | High | 0.336 @ 0.013 | 0.331 @ 0.020 | – | – |
| CH4 | NO3- | Low | 0.270 @ 0.030 | 0.291 @ 0.007 | – | – |
| CH4 | NO3- | High | 0.275 @ 0.018 | 0.291 @ 0.008 | – | – |
| CH3OH | NH4+ | Low | 0.225 @ 0.012 | 0.193 @ 0.007 | 0.240 @ 0.016 | 0.190 @ 0.014 |
| CH3OH | NH4+ | High | 0.183 @ 0.010 | 0.193 @ 0.014 | 0.223 @ 0.009 | 0.174 @ 0.015 |
| CH3OH | NO3- | Low | 0.197 @ 0.017 | 0.173 @ 0.016 | 0.208 @ 0.000 | 0.170 @ 0.005 |
| CH3OH | NO3- | High | 0.156 @ 0.021 | 0.160 @ 0.007 | 0.182 @ 0.014 | 0.163 @ 0.007 |
Lag phase (days) for M. trichosporium OB3b growth experiments.
| C-source | N-source | N:C ratio | CH4-grown inoculum | CH3OH-grown inoculum | ||
|---|---|---|---|---|---|---|
| Fresh | Aged | Fresh | Aged | |||
| CH4 | NH4+ | Low | 1 | 2.5 | – | – |
| CH4 | NH4+ | High | 1.5 | 2.5 | – | – |
| CH4 | NO3- | Low | 1.5 | 2.5 | – | – |
| CH4 | NO3- | High | 1.5 | 2.5 | – | – |
| CH3OH | NH4+ | Low | 12–14 | 9 | 5–5.5 | 9.5–10.5 |
| CH3OH | NH4+ | High | 10–13 | 12–13 | 5.5 | 9–11 |
| CH3OH | NO3- | Low | 12–14 | 10.5 | 4.5–5 | 9–11.5 |
| CH3OH | NO3- | High | 10.5–11 | 9 | 4.5 | 8.5 |