Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species
An anaerobic thermophilic strain (strain PCO) was isolated from a syngas-converting enrichment culture. Syngas components cannot be used by strain PCO, but the new strain is very tolerant to carbon monoxide (pCO = 1.7 × 105 Pa, 100% CO). 16S rRNA gene analysis and DNA-DNA hybridization revealed that strain PCO is a strain of Thermoanaerobacter thermohydrosulfuricus. The physiology of strain PCO and other Thermoanaerobacter species was compared, focusing on their tolerance to carbon monoxide. T. thermohydrosulfuricus, T. brockii subsp. finnii, T. pseudethanolicus, and T. wiegelii were exposed to increased CO concentrations in the headspace, while growth, glucose consumption and product formation were monitored. Remarkably, glucose conversion rates by Thermoanaerobacter species were not affected by CO. All the tested strains fermented glucose to mainly lactate, ethanol, acetate, and hydrogen, but final product concentrations differed. In the presence of CO, ethanol production was generally less affected, but H2 production decreased with increasing CO partial pressure. This study highlights the CO resistance of Thermoanaerobacter species.
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Format: | Article/Letter to editor biblioteca |
Language: | English |
Subjects: | Carbon monoxide, Ethanol, Hydrogen, Sugar fermentation, Syngas, Thermoanaerobacter, |
Online Access: | https://research.wur.nl/en/publications/comparative-analysis-of-carbon-monoxide-tolerance-among-thermoana |
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dig-wur-nl-wurpubs-5085362024-10-01 Alves, J.I. Alves, M.M. Plugge, Caroline M. Stams, A.J.M. Sousa, D.Z. Article/Letter to editor Frontiers in Microbiology 7 (2016) ISSN: 1664-302X Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species 2016 An anaerobic thermophilic strain (strain PCO) was isolated from a syngas-converting enrichment culture. Syngas components cannot be used by strain PCO, but the new strain is very tolerant to carbon monoxide (pCO = 1.7 × 105 Pa, 100% CO). 16S rRNA gene analysis and DNA-DNA hybridization revealed that strain PCO is a strain of Thermoanaerobacter thermohydrosulfuricus. The physiology of strain PCO and other Thermoanaerobacter species was compared, focusing on their tolerance to carbon monoxide. T. thermohydrosulfuricus, T. brockii subsp. finnii, T. pseudethanolicus, and T. wiegelii were exposed to increased CO concentrations in the headspace, while growth, glucose consumption and product formation were monitored. Remarkably, glucose conversion rates by Thermoanaerobacter species were not affected by CO. All the tested strains fermented glucose to mainly lactate, ethanol, acetate, and hydrogen, but final product concentrations differed. In the presence of CO, ethanol production was generally less affected, but H2 production decreased with increasing CO partial pressure. This study highlights the CO resistance of Thermoanaerobacter species. en application/pdf https://research.wur.nl/en/publications/comparative-analysis-of-carbon-monoxide-tolerance-among-thermoana 10.3389/fmicb.2016.01330 https://edepot.wur.nl/393007 Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research |
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Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter |
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Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter Alves, J.I. Alves, M.M. Plugge, Caroline M. Stams, A.J.M. Sousa, D.Z. Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
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An anaerobic thermophilic strain (strain PCO) was isolated from a syngas-converting enrichment culture. Syngas components cannot be used by strain PCO, but the new strain is very tolerant to carbon monoxide (pCO = 1.7 × 105 Pa, 100% CO). 16S rRNA gene analysis and DNA-DNA hybridization revealed that strain PCO is a strain of Thermoanaerobacter thermohydrosulfuricus. The physiology of strain PCO and other Thermoanaerobacter species was compared, focusing on their tolerance to carbon monoxide. T. thermohydrosulfuricus, T. brockii subsp. finnii, T. pseudethanolicus, and T. wiegelii were exposed to increased CO concentrations in the headspace, while growth, glucose consumption and product formation were monitored. Remarkably, glucose conversion rates by Thermoanaerobacter species were not affected by CO. All the tested strains fermented glucose to mainly lactate, ethanol, acetate, and hydrogen, but final product concentrations differed. In the presence of CO, ethanol production was generally less affected, but H2 production decreased with increasing CO partial pressure. This study highlights the CO resistance of Thermoanaerobacter species. |
format |
Article/Letter to editor |
topic_facet |
Carbon monoxide Ethanol Hydrogen Sugar fermentation Syngas Thermoanaerobacter |
author |
Alves, J.I. Alves, M.M. Plugge, Caroline M. Stams, A.J.M. Sousa, D.Z. |
author_facet |
Alves, J.I. Alves, M.M. Plugge, Caroline M. Stams, A.J.M. Sousa, D.Z. |
author_sort |
Alves, J.I. |
title |
Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
title_short |
Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
title_full |
Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
title_fullStr |
Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
title_full_unstemmed |
Comparative analysis of carbon monoxide tolerance among Thermoanaerobacter species |
title_sort |
comparative analysis of carbon monoxide tolerance among thermoanaerobacter species |
url |
https://research.wur.nl/en/publications/comparative-analysis-of-carbon-monoxide-tolerance-among-thermoana |
work_keys_str_mv |
AT alvesji comparativeanalysisofcarbonmonoxidetoleranceamongthermoanaerobacterspecies AT alvesmm comparativeanalysisofcarbonmonoxidetoleranceamongthermoanaerobacterspecies AT pluggecarolinem comparativeanalysisofcarbonmonoxidetoleranceamongthermoanaerobacterspecies AT stamsajm comparativeanalysisofcarbonmonoxidetoleranceamongthermoanaerobacterspecies AT sousadz comparativeanalysisofcarbonmonoxidetoleranceamongthermoanaerobacterspecies |
_version_ |
1816158477240762368 |