Microbiological fractionation of stable sulfur isotopes: A review and critique
- 28 January 1979
- journal article
- review article
- Published by Taylor & Francis in Geomicrobiology Journal
- Vol. 1 (3) , 249-293
- https://doi.org/10.1080/01490457909377735
Abstract
Microbiological transformations of sulfur compounds discriminate to various degrees between the stable sulfur isotopes 32S and 34S. Comparatively little is known on isotopic effects associated with sulfur‐oxidizing organisms, and the interpretation of results is complicated since the sulfur pathways are poorly defined and compounds containing two or more sulfur atoms at different oxidation states may be involved. Dissimilatory reduction of sulfate, and sulfite reduction by certain assimilatory microorganisms, causes particularly marked isotopic effects, the expression of which depends on the extent of reaction and other incompletely defined environmental conditions. Models have been proposed to account for these effects based on current knowledge of the reduction pathways. Many of the trends observed during dissimilatory sulfate reduction in the laboratory can also be found in the modern environment leaving little doubt that microbiological factors play a significant role in determining sulfur isotope distributions in nature. However, unusually large isotopic effects, rarely approached in the laboratory, are often observed in nature. The reasons for this are not entirely clear, but in sediments it is possible that diffusional isotopic effects are imposed on biological effects.Keywords
This publication has 83 references indexed in Scilit:
- biochemical reaction mechanisms in sulfur oxidation by chemosynthetic bacteriaPlant and Soil, 1975
- Colourless sulfur bacteria and their role in the sulfur cyclePlant and Soil, 1975
- The phototrophic bacteria and their role in the sulfur cyclePlant and Soil, 1975
- Studies of sulfate utilization by algae 14. Distribution of adenosine-3′-phosphate-5′-phosphosulfate (PAPS) and adenosine-5′-phosphosulfate (APS) sulfotransferases in assimilatory sulfate reducersPlant Science Letters, 1975
- OCCURRENCE AND TYPES OF THIOBACILLUS‐LIKE BACTERIA IN THE SEA1Limnology and Oceanography, 1972
- Purification of the enzyme reducing bisulfite to trithionate from Desulfovibrio gigas and its identification as desulfoviridinBiochemical and Biophysical Research Communications, 1971
- δ34S-Werte in rezenten Meeressedimenten und ihre Deutung am Beispiel einiger Sedimentprofile aus der westlichen OstseeInternational Journal of Earth Sciences, 1968
- Schwefelisotope im marinen Kreislauf und das δ34 S der früheren MeereInternational Journal of Earth Sciences, 1966
- Fractionation of Sulfur and Carbon Isotopes in a Meromictic LakeScience, 1963
- Fractionation of Stable Isotopes of Sulfur by ThiobacilliScience, 1958