Archaeal and Bacterial Glycerol Dialkyl Glycerol Tetraether Lipids in Hot Springs of Yellowstone National Park
- 1 October 2007
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 73 (19) , 6181-6191
- https://doi.org/10.1128/aem.00630-07
Abstract
Glycerol dialkyl glycerol tetraethers (GDGTs) are core membrane lipids originally thought to be produced mainly by (hyper)thermophilic archaea. Environmental screening of low-temperature environments showed, however, the abundant presence of structurally diverse GDGTs from both bacterial and archaeal sources. In this study, we examined the occurrences and distribution of GDGTs in hot spring environments in Yellowstone National Park with high temperatures (47 to 83°C) and mostly neutral to alkaline pHs. GDGTs with 0 to 4 cyclopentane moieties were dominant in all samples and are likely derived from both (hyper)thermophilic Crenarchaeota and Euryarchaeota . GDGTs with 4 to 8 cyclopentane moieties, likely derived from the crenarchaeotal order Sulfolobales and the euryarchaeotal order Thermoplasmatales , are usually present in much lower abundance, consistent with the relatively high pH values of the hot springs. The relative abundances of cyclopentane-containing GDGTs did not correlate with in situ temperature and pH, suggesting that other environmental and possibly genetic factors play a role as well. Crenarchaeol, a biomarker thought to be specific for nonthermophilic group I Crenarchaeota , was also found in most hot springs, though in relatively low concentrations, i.e., <5% of total GDGTs. Its abundance did not correlate with temperature, as has been reported previously. Instead, the cooccurrence of relatively abundant nonisoprenoid GDGTs thought to be derived from soil bacteria suggests a predominantly allochthonous source for crenarchaeol in these hot spring environments. Finally, the distribution of bacterial branched GDGTs suggests that they may be derived from the geothermally heated soils surrounding the hot springs.Keywords
This publication has 70 references indexed in Scilit:
- Thermophilic Temperature Optimum for Crenarchaeol Synthesis and Its Implication for Archaeal EvolutionApplied and Environmental Microbiology, 2006
- Temporal and spatial variation in tetraether membrane lipids of marine Crenarchaeota in particulate organic matter: Implications for TEX86 paleothermometryPaleoceanography and Paleoclimatology, 2005
- Caldisphaera lagunensis gen. nov., sp. nov., a novel thermoacidophilic crenarchaeote isolated from a hot spring at Mt Maquiling, PhilippinesInternational Journal of Systematic and Evolutionary Microbiology, 2003
- Thermococcus barophilus sp. nov., a new barophilic and hyperthermophilic archaeon isolated under high hydrostatic pressure from a deep-sea hydrothermal ventInternational Journal of Systematic and Evolutionary Microbiology, 1999
- Thermococcus guaymasensis sp. nov. and Thermococcus aggregans sp. nov., two novel thermophilic archaea isolated from the Guaymas Basin hydrothermal vent siteInternational Journal of Systematic and Evolutionary Microbiology, 1998
- Pyrolobus fumarii , gen. and sp. nov., represents a novel group of archaea, extending the upper temperature limit for life to 113 CExtremophiles, 1997
- Tetraether lipids of Methanospirillum hungatei with head groups consisting of phospho-N,N-dimethylaminopentanetetrol, phospho-N,N,N-trimethylaminopentanetetrol, and carbohydratesBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1994
- Complex lipids of Pyrococcus and AN1, thermophilic members of archaebcteria belonging to ThermococcalesBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1989
- Complex lipids from Desulfurococcus mobilis, a sulfur-reducing archaebacteriumBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1987
- Archaebacterial lipids in hot-spring microbial matsNature, 1985