Physiological, Ecological, and Phylogenetic Characterization of Stappia , a Marine CO-Oxidizing Bacterial Genus
Open Access
- 15 February 2007
- journal article
- research article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 73 (4) , 1266-1276
- https://doi.org/10.1128/aem.01724-06
Abstract
Bacteria play a major role in marine CO cycling, yet very little is known about the microbes involved. Thirteen CO-oxidizing Stappia isolates obtained from existing cultures, macroalgae, or surf samples representing geographically and ecologically diverse habitats were characterized using biochemical, physiological, and phylogenetic approaches. All isolates were aerobic chemoorganotrophs that oxidized CO at elevated (1,000 ppm) and ambient-to-subambient concentrations (coxL gene for aerobic CO dehydrogenase and also the form II (BMS) putative coxL gene. In addition, some strains possessed cbbL , the large subunit gene for ribulose-1,5-bisphosphate carboxylase/oxygenase, suggesting the possibility of lithotrophic or mixotrophic metabolism. All isolates used a wide range of sugars, organic acids, amino acids, and aromatics for growth and grew at salinities from 5 to 45 ppt. All but one isolate denitrified or respired nitrate. Phylogenetic analyses based on 16S rRNA gene sequences indicated that several isolates could not be distinguished from Stappia aggregata and contributed to a widely distributed species complex. Four isolates (of strains GA15, HI, MIO, and M4) were phylogenetically distinct from validly described Stappia species and closely related genera (e.g., Ahrensia , Pannonibacter , Pseudovibrio , and Roseibium ). Substrate utilization profiles, enzymatic activity, and membrane lipid composition further distinguished these isolates and supported their designations as new Stappia species. The observed metabolic versatility of Stappia likely accounts for its cosmopolitan distribution and its ability to contribute to CO cycling as well as other important biogeochemical cycles.Keywords
This publication has 42 references indexed in Scilit:
- Nitrate-dependent anaerobic carbon monoxide oxidation by aerobic CO-oxidizing bacteriaFEMS Microbiology Ecology, 2006
- Sodium channel blocking (SCB) activity and transformation of paralytic shellfish toxins (PST) by dinoflagellate-associated bacteriaAquatic Microbial Ecology, 2002
- A preliminary report of phylogenetic diversity of bacterial strains isolated from marine creatures.The Journal of General and Applied Microbiology, 2002
- Enrichment of High-Affinity CO Oxidizers in Maine Forest SoilApplied and Environmental Microbiology, 2001
- Land use impacts on atmospheric carbon monoxide consumption by soilsGlobal Biogeochemical Cycles, 2000
- Roseigium denhamense gen. nov., sp. nov. and Roseibium hemelinense sp. nov., aerobic bacteriochlorophyll-containing bacteria isolated from the east and west coasts of Australia.International Journal of Systematic and Evolutionary Microbiology, 2000
- The Role of Polyphenols from the Tropical Brown Alga Sargassum furcatum on the Feeding by Amphipod HerbivoresBotanica Marina, 1999
- DNA sequence of the cut A, B and C genes, encoding the molybdenum containing hydroxylase carbon monoxide dehydrogenase, from Pseudomonas thermocarboxydovorans strain C2Biochimica et Biophysica Acta (BBA) - Bioenergetics, 1994
- Marine Star-Shaped-Aggregate-Forming Bacteria: Agrobacterium atlanticum sp. nov.; Agrobacterium meteori sp. nov.; Agrobacterium ferrugineum sp. nov., nom. rev.; Agrobacterium gelatinovorum sp. nov., nom. rev.; and Agrobacterium stellulatum sp. nov., nom. rev.International Journal of Systematic and Evolutionary Microbiology, 1992
- Profitable oxidation of carbon monoxide or hydrogen during heterotrophic growth ofPseudomonas carboxydoflavaFEMS Microbiology Letters, 1982