Environmental Engineering Reference
In-Depth Information
[37]
Orphan V. J., Hinrichs K. -U., Ussler III W., Paull C. K., Tayer L. T., Sylva S. P.,
Hayes, J. M. and DeLong E. F. Comparative analysis of methane-oxidizing archaea and
sulfate-reducing bacteria in anoxic marine sediments. Appl Environ Microbiol 2001a;
67:1922-34.
[38]
Orphan V. J., House C. H., Hinrichs K. -U., McKeegan K. D. and DeLong E. F. Methane-
consuming archaea revealed by directory coupled isotopic and phylogenetic analysis.
Science 2001b; 293:484-87.
[39]
Parkes R. J., Cragg B. A. and Wellsbury P. Recent studies on bacterial populations and
progresses in subseafloor sediments. Hydrogeol J 2000; 8:11-28.
[40]
Pedersen K. Microbial life in deep granitic rock. FEMS Microbiol Rev 1997; 20:399-414.
[41]
Schlanger S. O. and Jenkyns H. C. Cretaceous oceanic anoxic sediments: Causes and
consequences. Geol Mijnbouw 1976; 66:3798-3806.
[42]
Shipboard scientific party. Explanatory Notes. In D'Hondt S. L., Jorgensen B. B., Miller
D. J., et al., Proc ODP Init Repts, 2003; 201:1-103 [CD-ROM]. Available from: Ocean
Drilling Program, Texas A&M University, Colleague Station TX 77845-9547, USA.
[43]
Smith D. C., Spivack A. J., Fisk M. R., Haveman S. A. and Staudigel H., ODP Leg 185
Shipboard Scientific Party. Tracer-based estimates of drilling-induced microbial contam-
ination of deep sea crust. Geomicrobiol J 2000; 17:207-19.
[44]
Takai K. and Horikoshi K. Genetic diversity of Archaea in deep-sea hydrothermal vent
environments. Genetics 1999; 152:1285-97.
[45]
Takai K., Komatsu T., Inagaki F. and Horikoshi K. Distribution of Archaea in a black
smoker chimney structures. Appl Environ Microbiol 2001a; 67:3618-29.
[46]
Takai K., Moser D. P., DeFlaun M., Onstott T. C. and Fredrickson J. K. Archaeal diversity
in waters from deep South African gold mines. Appl Environ Microbiol 2001b; 67:5750-
60.
[47]
Takai K., Moser D. P., Onstott T. C., Spoelstra N., Pfiffner S. M., Dohnalkova A. and
Fredrickson J. K. Alkaliphilus transvaalensis gen. nov., sp. nov., an extremely alkaliphilic
bacterium isolated from a deep South Africa gold mine. Int J Syst vol Microbiol 2001c;
51:1245-56.
[48]
Takai K., Hirayama H., Sakihama Y., Inagaki F., Yamato Y. and Horikoshi K. Isolation
and metabolic characteristics of previously uncultured members of the orders Aquificales
in a subsurface gold mine. Appl Environ Microbiol 2002; 68:3046-54.
[49]
Takai K., Kobayashi H., Nealson K. H. and Horikoshi K. Sulfurihydrogenobium subter-
raneum gen. nov., sp. nov., from a subsurface hot aquifer. Int J Syst Evol Microbiol 2003;
53:823-27.
[50]
Takai K., Oida H., Suzuki Y., Hirayama H., Nakagawa S., Nunoura T., Inagaki F., Nealson
K. H. and Horikoshi K. Spatial distribution of marine Crenarchaeota I in the vicinity of
deep-sea hydrothermal systems. Appl Environ Microbiol 2004; 70:2404-13.
[51]
Wilson P. A. and Norris R. Warm tropical surface and global anoxia during the mid-
Cretaceous period. Nature 2001; 412:425-29.
[52]
Whitman W. B., Coleman D. C. and Wiebe W. J. Prokaryotes: the unseen majority. Proc
Natl Acad Sci USA 1998; 95:6578-83.
Search WWH ::




Custom Search