References
- Trends Biotechnol. v.10 A perspective on the biotechnological potential of extremophiles Herbert, R. A.
- Trends Biotechnol. v.10 Biotechnology of the archaea Cowan, D. A.
- Biotechnol. Prog. v.4 Extremely thermophilic archaebacteria: biological and engineering considerations Kelly, R. M.;J. W. Deming
- CHEMTECH v.20 Hot bacteria Clark, D;R. Kelly
- Can. J. Microbiol. v.35 Central metabolism of the archaebacteria: an overview Danson, M. J.
- ASM News. v.61 Microbial life in hyperthermal environments Stetter, K. O.
- Arch. Mikrobiol. v.84 Sulfolobus: a new genus of sulfur-oxidizing bacteria living at low pH and high temperature Brock, T. D.;K. M. Brock;R. T. Belly;R. L. Weiss
- Ann. N. Y. Acad. Sci. v.225 The genus Thermoplasma Belly, R. T.;B. B. Bohloo;T. D. Brock
- J. Gen. Microbiol. v.86 Extremely thermophilic acidophlilc bacteria convergent with Sulfolobus acidocaldarius de Rosa, M.;A. Gambacorta;J. D. Bu'Lock
- J. Bacteriol. v.177 Picrophilus gen. nov., fam. nov.: a novel aerobic, heterotrophic thermoacidophilic genus and family comprising archea capable of growth around pH 0 Schleper, C.;G. Puehler;I. Holz;A. Gambacorta;D. Janekovic;U. Santarius;H.-P. Klenk;W. Zillig
- Kor. J. Biotechnol. Bioeng. v.12 Optimization of culture conditions for hyperthermophilic archaeon Sulfolobus solfataricus Kan, E. S.;C. B. Park;S. B. Lee
- Biotechnol. Techniq. v.11 Constant-volume fed-batch operation for high density cultivation of hyperthermophilic aerobes Park, C. B.;S. B. Lee
- Anal. Chem. v.39 Phenol-hypochlorite reaction for determination of ammonia Weatherburn, M. W.