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Long-Term Records of Continental Diatoms Paleolimnology and Biochronology

Published online by Cambridge University Press:  21 July 2017

Scott W. Starratt*
Affiliation:
U.S. Geological Survey MS 910 Volcanic Hazards Team 345 Middlefield Road Menlo Park, CA 94025
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Abstract

The great abundance and diversity of diatoms in lacustrine sediments and their ability to adjust to rapid changes in physical, chemical, and biological conditions makes them ideal for the study of lake history. Continuous diatom records from long-lived lakes have the potential to answer questions of basin history, climate variability, ecological change, and evolution. Isolated Tertiary outcrops provide a more limited record of environmental conditions, but as the ability to correlate individual exposures improves through the use of techniques such as tephrochronology, it is becoming possible to evaluate the timing of environmental or evolutionary changes on a regional basis.

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Research Article
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Copyright © by the Paleontological Society 

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References

Anderson, N. J., Korsman, J. T., and Renberg, I. 1994. Spatial heterogeneity of diatom stratigraphy in varved and non-varved sediments of a small, boreal-forest lake. Aquatic Sciences, 56:4058.CrossRefGoogle Scholar
Battarbee, R. W., Jones, V. J., Flower, F. J., Cameron, N. G., Bennion, H., Carvalho, L., and Juggins, S. 2001. Diatoms, p. 155202. In Smol, J. P., Birks, H. J. B., and Last, W. M. (eds.), Tracking Environmental Change Using Lake Sediments. Volume 3: Terrestrial, Algal, and Siliceous Indicators. Kluwer Academic Publishers, Dordrecht, The Netherlands.Google Scholar
Bradbury, J. P. 1975. Diatom stratigraphy and human settlement in Minnesota. Geological Society of America Special Paper 171, 74 p.CrossRefGoogle Scholar
Bradbury, J. P. 1984. Fossil Actinocyclus species from freshwater Miocene deposits in China and the United States, p. 157172. In Mann, D. G. (ed.), Proceedings of the Seventh International Diatom Symposium. Koeltz, Koenigstein, Germany.Google Scholar
Bradbury, J. P. 1988a. Fossil diatoms and Neogene paleolimnology. Palaeogeography, Palaeoclimatology, Palaeoecology, 62:299316.CrossRefGoogle Scholar
Bradbury, J. P. 1988b. Diatom biostratigraphy and the paleolimnology of Clear Lake, Lake County, California. Geological Society of America Special Paper, 214:97129.CrossRefGoogle Scholar
Bradbury, J. P. 1991. The late Cenozoic diatom stratigraphy and paleolimnology of Tule Lake, Siskiyou Co. California. Journal of Paleolimnology, 6:205255.Google Scholar
Bradbury, J. P. 1992. Late Cenozoic lacustrine and climatic environments at Tule Lake, northern Great Basin, USA. Climate Dynamics, 6:275285.CrossRefGoogle Scholar
Bradbury, J. P. 1997a. A diatom-based paleohydrologic record of climate change for the past 800 k.y. from Owens Lake, California, p. 99112. In Smith, G. I. and Bischoff, J. L. (eds.). An 800,000-year paleoclimate record from core OL-92, Owens Lake, southeast California. Geological Society of America Special Paper, 317.Google Scholar
Bradbury, J. P. 1997b. A diatom record of climate and hydrology for the past 200 ka from Owens Lake, California with comparison to other Great Basin records. Quaternary Science Reviews, 16:203219.CrossRefGoogle Scholar
Bradbury, J. P. 1999. Continental diatoms as indicators of long-term environmental change. p. 169182. In Stoermer, E.F., and Smol, J. P. (eds.), The Diatoms: Applications for the Environmental and Earth Sciences. Cambridge University Press, Cambridge, England.CrossRefGoogle Scholar
Bradbury, J. P., and Blair, W. N. 1979. Paleoecology of the upper Miocene Hualapai Limestone Member of the Muddy Creek Formation, northwestern Arizona, p. 293303. In Rocky Mountain Association of Geologists and Utah Geological Association, Basin and Range Symposium, Ely, Nevada.Google Scholar
Bradbury, J. P., and Krebs, W. N. 1982. Neogene and Quaternary lacustrine diatoms of the western Snake River Basin, Idaho-Oregon, USA. Acta Geologica Academiae Scientiarum Hungaricae, 25:97122.Google Scholar
Bradbury, J. P., and Krebs, W. N. 1995a. Fossil continental diatoms: Paleolimnology, evolution, and biochronology, p. 119138, In Blome, C. D., Whalen, P. M., and Reed, K. M. (eds.), Siliceous Microfossils. The Paleontological Society Short Courses in Paleontology, 8.Google Scholar
Bradbury, J. P., and Krebs, W. N. 1995b. Actinocyclus (Bacillariophyta) species from lacustrine Miocene deposits of the western United States. U.S. Geological Survey Professional Paper, 1543-A:152.Google Scholar
Bradbury, J. P., Dieterich, K. V., and Williams, J. L. 1985. Diatom flora of the Miocene lake beds near Clarkia in northern Idaho, p. 3359. In Smiley, C. J. (ed.), Late Cenozoic History of the Pacific Northwest. American Association for the Advancement of Science, San Francisco.Google Scholar
Bradbury, J. P., Bezrukova, Y. V., Chernyaeva, G. P., Colman, S. M., Khursevich, G., King, J. W., and Likoshway, Y. V. 1994. A synthesis of post-glacial diatom records from Lake Baikal. Journal of Paleolimnology, 10:213252.CrossRefGoogle Scholar
Chacón-Baca, E., Beraldi-Campesi, H., Cevallos-Ferriz, S. R. S., Knoll, A. H., Golubic, S. 2002. 70 Ma nonmarine diatoms from Mexico. Geology, 30:279281.2.0.CO;2>CrossRefGoogle Scholar
Coplen, T. B., Winograd, I. J., Landwehr, J. M., and Riggs, A. C. 1994. 500,000 year stable carbon isotope record from Devils Hole, Nevada. Science, 263:361365.CrossRefGoogle Scholar
Imbrie, J., Hays, J. D., Martinson, D. G., McIntyre, A., Mix, A. C., Morley, J. J., Pisias, N. G., Prell, W. L., and Shackleton, N. J. 1984. The orbital theory of Pleistocene climate support from a revised chronology of the marine δ18O record, p. 269305. In Berger, A. L., Imbrie, J., Hays, J., Kukla, G., and Saltzman, B., (eds.), Milankovitch and Climate. D. R. Reidel, Boston.Google Scholar
Kaczmarska, I. 1985. The diatom flora of Miocene lacustrine diatomites from the Harper Basin, Oregon, U.S.A. Acta Palaeobotanica, 25:33100.Google Scholar
Karabanov, E. B., Kuzmin, M. I., Prokopenko, A. A., Williams, D. F., Khursevich, G. K., Bezrukova, E. V., Kerber, E. V., Gvozdkov, A. N., Gelety, V. F., Weil, D., and Schwab, M. 2000. Glaciations of central Asia in the late Cenozoic according to the sedimentary record form Lake Baikal, p. 7184. In Minoura, K., (ed.), Lake Baikal: A Mirror in Time and Space for Understanding Global Change Processes. Elsevier, Amsterdam.CrossRefGoogle Scholar
Khursevich, G. K. Karabanov, E. B., Williams, D. F., Kuzmin, M. I., and Prokopenko, A. A. 2000. Evolution of freshwater centric diatoms within the Baikal rift zone during the late Cenozoic, p. 146154. In Minoura, K., (ed.), Lake Baikal: A Mirror in Time and Space for Understanding Global Change Processes. Elsevier, Amsterdam.CrossRefGoogle Scholar
Kidder, D. L., and Gierlowskikordesch, E. H. 2005. Impact of grassland radiation on the nonmarine silica cycle and Miocene diatomite. Palaios, 20:198206.CrossRefGoogle Scholar
Kociolek, J. P., and Stoermer, E. F. Phylogenetic relationships and evolutionary history of the diatom genus Gomphoneis . Phycologia, 28:438454.CrossRefGoogle Scholar
Kociolek, J. P., and Stoermer, E. F. 1990. Diatoms from the upper Miocene Hot Springs Limestone, Snake River Plain, Idaho (U.S.A.). Micropaleontology, 36:331352.CrossRefGoogle Scholar
Krebs, W. N. 1994. The biochronology of freshwater planktonic diatom communities in western North America, p. 485499. In Kociolek, J. P. (ed.), Proceedings of the 11th International Diatom Symposium, San Francisco. Memoirs of the California Academy of Sciences, 17.Google Scholar
Krebs, W. N., and Bradbury, J. P. 1995. Geologic ranges of lacustrine Actinocyclus species, western United States. U.S. Geological Survey Professional Paper, 1543-B:5373.Google Scholar
Krebs, W. N., Bradbury, J. P., and Theriot, E. 1987. Neogene and Quaternary lacustrine diatom biochronology, western USA. Palaios, 2:505513.CrossRefGoogle Scholar
Laws, R. A. 1988. Diatoms (Bacillariophyceae) from surface sediments in the San Francisco Bay estuary. Proceedings of the California Academy of Sciences, 45:133254.Google Scholar
Lohman, K. E. 1961. Geologic ranges of Cenozoic nonmarine diatoms. U.S. Geological Survey Professional Paper, 424-D:234236.Google Scholar
Partick, R., and Reimer, C. W. 1966. The Diatoms of the United States, Exclusive of Alaska and Hawaii, Vol. 1. Academy of Natural Science of Philadelphia Monograph, 13, 688 p.Google Scholar
Perkins, M. E., Brown, F. H., Nash, W. P., McIntosh, W., Williams, S. K. 1998. Sequence, age, and source of silicic fallout in middle to late Miocene basins of the northern Basin and Range province. GSA Bulletin, 110:344360.2.3.CO;2>CrossRefGoogle Scholar
Sovereign, H. E. 1963. New and rare diatoms from Oregon and Washington. Proceedings of the California Academy of Science, 4th Series, 31:349368.Google Scholar
Starratt, S. W. 2004. Diatoms as indicators of late Holocene freshwater flow variation in the San Francisco Bay estuary, central California, U.S.A., p. 371397. In Poulin, M. (ed.) Seventeenth International Diatom Symposium. Biopress Limited, Bristol, England.Google Scholar
Starratt, S. W. 2005. Tephra … breakfast of diatoms. Geological Society of American Abstracts with Programs, 37:37.Google Scholar
Stoermer, E. F., and Ladewski, T. B. 1976. Apparent optimal temperatures for occurrence of some common phytoplankton species in southern Lake Michigan. The University of Michigan, Great Lakes Research Division, Publication 18, 49 p.Google Scholar
Theriot, E. 1992. Clusters, species concepts and morphological evolution of diatoms. Systematic Biology, 41:141157.CrossRefGoogle Scholar
Vanlandingham, S. L. 1964. Miocene non-marine diatoms from the Yakima region in south central Washington. Nova Hedwigia, 14:178.Google Scholar
Vanlandingham, S. L. 1967. Paleoecology and microfloristics of Miocene diatomites from the Otis-Juntura region of Harney and Malheur Counties, Oregon. Nova Hedwigia, 26:177.Google Scholar
Vanlandingham, S. L. 1970. Origin of an early non-marine diatomaceous deposit in Broadwater County, Montana, U.S.A. Nova Hedwigia, 31:449484.Google Scholar
Vanlandingham, S. L. 1972. Micropaleontology and paleoecology of Miocene non-marine diatoms from the Harper District, Malheur County, Oregon. Nova Hedwigia, 23:847906.Google Scholar
Vanlandingham, S. L. 1985. Potential Neogene diagnostic diatoms from the western Snake River Basin, Idaho and Oregon. Micropaleontology, 31:167174.CrossRefGoogle Scholar
Vanlandingham, S. L. 1988. Comment on “Late Miocene reactivation of ancestral Rocky Mountain structures in Texas panhandle: A response to Basin and Range extension. Geology, 16:283284.2.3.CO;2>CrossRefGoogle Scholar
Vanlandingham, S. L. 1990. Observations on the biostratigraphy of Pliocene and Pleistocene diatomites from the Terrebonne district, Deschutes County, Oregon. Micropaleontology, 36:182196.CrossRefGoogle Scholar
Vanlandingham, S. L. 1991. Precision dating by means of traditional biostratigraphic methods for the middle Miocene diatomaceous interbeds within the middle Yakima (Wanapum) Basalt of south-central Washington (U.S.A.). Nova Hedwigia, 53:349368.Google Scholar
Werner, D. (ed.). 1977. The Biology of Diatoms. Botanical Monographs, 13, 498 p.Google Scholar