Sulfur isotope insights into microbial sulfate reduction: When microbes meet models
暂无分享,去创建一个
[1] D. Canfield,et al. Evolution of the oceanic sulfur cycle at the end of the Paleoproterozoic , 2006 .
[2] D. Canfield,et al. Non-commercial Research and Educational Use including without Limitation Use in Instruction at Your Institution, Sending It to Specific Colleagues That You Know, and Providing a Copy to Your Institution's Administrator. All Other Uses, Reproduction and Distribution, including without Limitation Comm , 2022 .
[3] Shuhei Ono,et al. Mass-dependent fractionation of quadruple stable sulfur isotope system as a new tracer of sulfur biogeochemical cycles , 2006 .
[4] D. Canfield,et al. Temperature and its control of isotope fractionation by a sulfate-reducing bacterium , 2006 .
[5] T. Fuchs,et al. Life at Low Temperatures , 2006 .
[6] Linda C. Kah,et al. Active Microbial Sulfur Disproportionation in the Mesoproterozoic , 2005, Science.
[7] S. Bernasconi,et al. A revised isotope fractionation model for dissimilatory sulfate reduction in sulfate reducing bacteria , 2005 .
[8] A. J. Kaufman,et al. Multiple sulfur isotope fractionations in biological systems: A case study with sulfate reducers and sulfur disproportionators , 2005 .
[9] J. Farquhar,et al. The terrestrial record of stable sulphur isotopes: a review of the implications for evolution of Earth’s sulphur cycle , 2005, Geological Society, London, Special Publications.
[10] H. Cypionka,et al. Formation of thiosulfate and trithionate during sulfite reduction by washed cells of Desulfovibrio desulfuricans , 1990, Archives of Microbiology.
[11] J. Farquhar,et al. Multiple sulfur isotopes and the evolution of the atmosphere , 2003 .
[12] S. Fitz-Gibbon,et al. Geobiological analysis using whole genome‐based tree building applied to the Bacteria, Archaea, and Eukarya , 2003 .
[13] Donald E. Canfield,et al. Multiple sulphur isotopic interpretations of biosynthetic pathways: implications for biological signatures in the sulphur isotope record , 2003 .
[14] D. Canfield,et al. Calibration of Sulfate Levels in the Archean Ocean , 2002, Science.
[15] M. Könneke,et al. Physiological response to temperature changes of the marine, sulfate-reducing bacterium Desulfobacterium autotrophicum. , 2002, FEMS microbiology ecology.
[16] M. F. Miller. Isotopic fractionation and the quantification of 17O anomalies in the oxygen three-isotope system: an appraisal and geochemical significance , 2002 .
[17] A. Galy,et al. Kinetic and equilibrium mass-dependent isotope fractionation laws in nature and their geochemical and cosmochemical significance , 2002 .
[18] D. Kelly,et al. The prokaryotes: an evolving electronic resource for the microbiological community - , 2002 .
[19] P. Wilson,et al. Numerical models of diagenesis, sediment properties, and pore fluid chemistry on a paleoceanographic transect: Blake Nose, Ocean Drilling Program Leg 171B , 2001 .
[20] M. Böttcher,et al. Hypersulfidic deep biosphere indicates extreme sulfur isotope fractionation during single-step microbial sulfate reduction , 2001 .
[21] D. Canfield,et al. Isotope fractionation by sulfate-reducing natural populations and the isotopic composition of sulfide in marine sediments , 2001 .
[22] D. Canfield. Isotope fractionation by natural populations of sulfate-reducing bacteria , 2001 .
[23] Donald E. Canfield,et al. Isotopic evidence for microbial sulphate reduction in the early Archaean era , 2001, Nature.
[24] J. Kuever,et al. Diversity of Sulfur Isotope Fractionations by Sulfate-Reducing Prokaryotes , 2001, Applied and Environmental Microbiology.
[25] J. Hayes. Fractionation of Carbon and Hydrogen Isotopes in Biosynthetic Processes , 2001 .
[26] D. Canfield. Biogeochemistry of Sulfur Isotopes , 2001 .
[27] A. Ogram,et al. Phylogeny of sulfate‐reducing bacteria , 2000 .
[28] D. Canfield. A new model for Proterozoic ocean chemistry , 1998, Nature.
[29] D. Canfield,et al. Sulfur isotope fractionation during bacterial reduction and disproportionation of thiosulfate and sulfite , 1998 .
[30] D. Canfield,et al. Isotope fractionation and sulfur metabolism by pure and enrichment cultures of elemental sulfur‐disproportionating bacteria , 1998 .
[31] Donald E. Canfield,et al. Late Proterozoic rise in atmospheric oxygen concentration inferred from phylogenetic and sulphur-isotope studies , 1996, Nature.
[32] N. Nicholls. An incriminating fingerprint , 1996, Nature.
[33] J. Akagi. Respiratory Sulfate Reduction , 1995 .
[34] H. Cypionka. Solute Transport and Cell Energetics , 1995 .
[35] Robert A. Berner,et al. A model for atmospheric CO 2 over Phanerozoic time , 1991 .
[36] H. Craig,et al. Gravitational Separation of Gases and Isotopes in Polar Ice Caps , 1988, Science.
[37] H. Sakai,et al. The age curves of sulfur and oxygen isotopes in marine sulfate and their mutual interpretation , 1980 .
[38] L. Newman,et al. Silver-110 microgram sulfate analysis for the short time resolution of ambient levels of sulfur aerosol. , 1977, Analytical chemistry.
[39] L. A. Chambers,et al. A possible boundary condition in bacterial sulfur isotope fractionation , 1976 .
[40] I. R. Kaplan. Stable isotopes as a guide to biogeochemical processes , 1975, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[41] C. Rees. A steady-state model for sulphur isotope fractionation in bacterial reduction processes , 1973 .
[42] E. Takahashi,et al. Biochemical studies on sulfate-reducing bacteria. XI. Purification and some properties of sulfite reductase, desulfoviridin. , 1972, Journal of biochemistry.
[43] P. R. Bevington,et al. Data Reduction and Error Analysis for the Physical Sciences , 1969 .
[44] Joel D. Cline,et al. SPECTROPHOTOMETRIC DETERMINATION OF HYDROGEN SULFIDE IN NATURAL WATERS1 , 1969 .
[45] H. Thode,et al. The mechanism of the bacterial reduction of sulphate and of sulphite from isotope fractionation studies , 1968 .
[46] H. Thode,et al. Cosmic‐ray‐produced S36 and S33 in the metallic phase of iron meteorites , 1965 .
[47] S. Rittenberg,et al. MICROBIOLOGICAL FRACTIONATION OF SULPHUR ISOTOPES. , 1964, Journal of general microbiology.
[48] H. Dunford,et al. Sulphur isotope geochemistry , 1961 .
[49] H. D. Peck. Evidence for the reversibility of the reaction catalyzed by adenosine 5'-phosphosulfate reductase. , 1961, Biochimica et biophysica acta.
[50] H. D. Peck. THE ATP-DEPENDENT REDUCTION OF SULFATE WITH HYDROGEN IN EXTRACTS OF DESULFOVIBRIO DESULFURICANS. , 1959, Proceedings of the National Academy of Sciences of the United States of America.
[51] A. G. Harrison,et al. Mechanism of the bacterial reduction of sulphate from isotope fractionation studies , 1958 .
[52] Kunihiko Kobayashi,et al. Biochemical Studies on Sulfate-reducing Bacteria , 1957 .