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Published on: September 14, 2013
Aerobic carboxydobacteria.
G A Zavarzin1, A N Nozhevnikova
1Institute of Microbiology, Academy of Sciences USSR, Profsojusnaya 7a, Moscow, USSR.
This study isolated and characterized aerobic carbon monoxide (CO) utilizing bacteria, termed carboxydobacteria, from various environments. These bacteria play a role in CO metabolism and have specific ecological niches.
Area of Science:
- Microbiology
- Environmental Science
- Biochemistry
Background:
- Bacterial consumption of atmospheric carbon monoxide (CO), a pollutant, has been documented but with inconsistent findings.
- Understanding the ecology of aerobic CO-oxidizing bacteria is crucial for environmental remediation and microbial metabolism studies.
Purpose of the Study:
- To isolate and characterize a broader spectrum of aerobic CO-utilizing bacteria.
- To elucidate the ecological roles and metabolic pathways of these bacteria, identified as carboxydobacteria.
Main Methods:
- Enrichment cultures from diverse environmental samples (soil, mud, water) under an atmosphere of 80% CO and 20% O2.
- Isolation and detailed characterization of seven carboxydobacteria strains.
- Spectroscopic analysis (cytochromes), isotope tracing (14C assimilation), and growth studies on various substrates (CO, H2, organic compounds).
Main Results:
- Isolation of multiple aerobic CO-utilizing bacterial strains, primarily from polluted, moist soil and mud.
- Six of seven characterized carboxydobacteria strains also utilized hydrogen; none utilized methane or formate.
- CO assimilation occurred via oxidation to CO2, utilizing the Calvin cycle, with evidence of functional electron transport chains (cytochromes b, c, a).
- Carboxydobacteria exhibited organotrophic growth on diverse organic compounds and were found in the neuston layer.
Conclusions:
- Carboxydobacteria are ecologically significant in environments where facultative anaerobes produce CO and H2.
- These bacteria possess functional electron transport chains for CO oxidation and utilize the Calvin cycle for carbon assimilation.
- The study provides a comprehensive description of carboxydobacteria, their metabolic capabilities, and ecological distribution.
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