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Middle to Upper Cambrian linguliformean brachiopods from the Deadwood Formation of subsurface Alberta and Saskatchewan, Canada

Published online by Cambridge University Press:  20 May 2016

Sean P. Robson
Affiliation:
Department of Geological Sciences, University of Saskatchewan, 114 Science Place, Saskatoon, Saskatchewan S7N 5E2, Canada, ,
Godfrey S. Nowlan
Affiliation:
Geological Survey of Canada, 3303-33rd St. NW, Calgary, Alberta T2L 2A7, Canada,
Brian R. Pratt
Affiliation:
Department of Geological Sciences, University of Saskatchewan, 114 Science Place, Saskatoon, Saskatchewan S7N 5E2, Canada, ,

Abstract

Limestone beds intercalated within a succession of sandstones, siltstones, and shales of the subsurface Deadwood Formation, cored in two wells in Alberta and Saskatchewan, yielded twelve species assigned to eight genera of organophosphatic brachiopods (Subphylum Linguliformea). The nine species recovered from the Alberta well are Marjuman (late Middle to early Late Cambrian) in age. Three of these species, Neotreta davidi Popov, Berg-Madsen, and Holmer, 1994; Picnotreta debilis Henderson and MacKinnon, 1981; and Stilpnotreta magna Henderson and MacKinnon, 1981, are associated with the Mindyallan (early Late Cambrian) of Queensland, and are previously unknown from Laurentia. This brachiopod fauna occurs with a diverse fauna of paraconodont species. The Saskatchewan well yielded three species of Linnarssonella, belonging to the upper Steptoean to the lower Sunwaptan (middle Late Cambrian). One new subfamily, Neotretinae, is erected, and two new species, Rhondellina albertensis, and Linnarssonella tubicula are described. Linnarssonella elongata Bell, 1941, is reinstated as a valid species. This fauna occurs with a diverse fauna of paraconodont species and is overlain, 226 feet higher, by conodonts of the Early Sunwaptan Proconodontus Zone.

Type
Research Article
Copyright
Copyright © The Paleontological Society

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References

Bell, W. C. 1941. Cambrian Brachiopoda from Montana. Journal of Paleontology, 15:193255.Google Scholar
Bell, W. C. 1944. Early Upper Cambrian Brachiopods, p. 144155. In Lochman, C. and Duncan, D. (eds.), Early Upper Cambrian Faunas. Geological Society of America Special Paper 54.Google Scholar
Bell, W. C., and Ellinwood, H. L. 1962. Upper Franconian and Lower Trempealeauan Cambrian trilobites and brachiopods, Wilberns Formation, central Texas. Journal of Paleontology, 36:385423.Google Scholar
Geyer, G., and Shergold, J. 2000. The quest for internationally recognized divisions of Cambrian time. Episodes, 23(3):188195.CrossRefGoogle Scholar
Gorjansky, V. Yu., and Popov, L. E. 1985. The morphology, systematic position, and origin of inarticulate brachiopods with carbonate shells. Paleontological Journal, 3:111.Google Scholar
Grant, R. E. 1965. Faunas and stratigraphy of the Snowy Range Formation (Upper Cambrian) in southwestern Montana and northwestern Wyoming. Geological Society of America Memoir, 96, 171 p.Google Scholar
Hein, F. J., and Nowlan, G. S. 1998. Regional sedimentology, conodont biostratigraphy and correlation of Middle Cambrian-lower Ordovician(?) strata of the “Finnegan” and Deadwood Formations, Alberta subsurface, Western Canada Sedimentary Basin. Bulletin of Canadian Petroleum Geology, 46:166188.Google Scholar
Henderson, R. A., and MacKinnon, D. I. 1981. New Cambrian inarticulate Brachiopoda from Australasia and the age of the Tasman Formation. Alcheringa, 5:289309.CrossRefGoogle Scholar
Holmer, L. E., and Popov, L. E. 2000. Lingulata, p. H30H146. In Kaesler, R. L. (ed.), Treatise on Invertebrate Paleontology, Pt. H, Brachiopoda Revised 2. Geological Society of America and University of Kansas Press, Lawrence, Kansas.Google Scholar
Holmer, L. E., Popov, L. E., and Lehnert, O. 1999. Cambrian phosphatic brachiopods from the Precordillera of western Argentina. Geologiska Föreningens i Stockholm Förhandlingar, 121:227242.Google Scholar
Holmer, L. E., Popov, L. E., Koneva, S. P., and Basset, M. G. 2001. Cambrian—early Ordovician brachiopods from Malyi Karatau, the western Balkhash region, and Tien Shan, Central Asia. Special Papers in Palaeontology, 65, 180 p.Google Scholar
Koneva, S. P. 1992. Novye lingulaty srednego-nizov verkhenego kembriia razreza po r. Kyrshabakty v Malom Karatau (New lingulates from the Middle and lower Upper Cambrian section of the Kyrshabakty River in the Malyi Karatau Range), p. 8899. In Repina, L. N. and Rozanov, A. Yu. (eds.), Drevneishye brakhiopody territorii Severnoi Evrazii. Russian Academy of Sciences, Novosibirsk, 145 p. (In Russian)Google Scholar
Kuhn, O. 1949. Lehrbuch der Paläozoologie. E. Schweizerbart, Stuttgart, 326 p.Google Scholar
Kurtz, V. E. 1971. Upper Cambrian Acrotretidae from Missouri. Journal of Paleontology, 45:470476.Google Scholar
de Lacaze-Duthiers, F. J. H. 1861. Histoire naturelle des Brachiopodes vivantes de la Méditerranée. Iie Monographic Histoire naturelle de la Thécide (Thecidium mediterraneium). Annales des sciences naturelles Zoologie (série 4), 15:259330.Google Scholar
Laurie, J. R. 2000. Pateninata, p. H147H157. In Kaesler, R. L. (ed.), Treatise on Invertebrate Paleontology, Pt. H, Brachiopoda Revised 2. Geological Society of America and University of Kansas Press, Lawrence, Kansas.Google Scholar
Lochman, C. 1940. Fauna of the basal Bonneterre Dolomite (Upper Cambrian) of southeastern Missouri. Journal of Paleontology, 14:153.Google Scholar
Lochman, C. 1964a. Upper Cambrian faunas from the subsurface Deadwood Formation, Williston Basin, Montana. Journal of Paleontology, 38:3360.Google Scholar
Lochman, C. 1964b. Basal Ordovician faunas from the Williston Basin, Montana. Journal of Paleontology, 38:453477.Google Scholar
Ludvigsen, R., and Westrop, S. R. 1985. Three new Upper Cambrian stages for North America. Geology, 13:139143.2.0.CO;2>CrossRefGoogle Scholar
Meek, F. B. 1873. Preliminary palaeontological report, p. 429518. 6th Annual Report of the U.S. Geological Survey of Montana, Idaho, Wyoming, and Utah; being a report of progress of the explorations for the year 1872.Google Scholar
Miller, J. F. 1969. Conodont fauna of the Notch Peak Limestone (Cambro-Ordovician) House Range, Utah. Journal of Paleontology, 43:413439.Google Scholar
Miller, J. F. 1980. Taxonomic revisions of some Upper Cambrian and Lower Ordovician conodonts with comments on their evolution. Paleontological Contributions, University of Kansas, 99:139.Google Scholar
Miller, J. F. 1984. Cambrian and earliest Ordovician conodont evolution, biofacies and provincialism. Geological Society of America Special Paper, 196:4368.CrossRefGoogle Scholar
Miller, J. F. 1988. Conodonts as biostratigraphic tools for redefinition and correlation of the Cambrian–Ordovician boundary. Geological Magazine, 125:349362.CrossRefGoogle Scholar
Müller, K. J. 1959. Kambrische conodonten. Zeithschrift der Deutschen Geologischen Gesellschaft, 111:434485.CrossRefGoogle Scholar
Müller, K. J., and Hinz, I. 1991. Upper Cambrian conodonts from Sweden. Fossils and Strata, 28:1153.Google Scholar
Nowlan, G. S. 1999. Report on 21 samples from Cambrian (Deadwood Formation) and Ordovician (Red River Formation) strata in the Ceepee Keppel Forest Well 8-3-40-14W3 and the Ceepee Reward Well 4-28-38-24W3 in the subsurface of Saskatchewan. Geological Survey of Canada Paleontological Report No. 11-GSN-1999, 13 p.Google Scholar
Palmer, A. R. 1954. The faunas of the Riley Formation in central Texas. Journal of Paleontology, 28:709786.Google Scholar
Palmer, A. R. 1998. A proposed nomenclature for stages and series for the Cambrian of Laurentia. Canadian Journal of Earth Science, 35:323328.CrossRefGoogle Scholar
Popov, L. E., Berg-Madsen, V., and Holmer, L. E. 1994. Review of the Cambrian acrotretid brachiopod Neotreta . Alcheringa, 18:345357.CrossRefGoogle Scholar
Robson, S. P., and Pratt, B. R. 2001. Cambrian and Ordovician linguliform brachiopods from the Shallow Bay Formation (Cow Head Group), western Newfoundland. Journal of Paleontology, 75:241260.2.0.CO;2>CrossRefGoogle Scholar
Rowell, A. J. 1965. Inarticulata, p. H260H296. In Moore, R. C. (ed.), Treatise on Invertebrate Paleontology, Pt. H, Brachiopoda 1. Geological Society of America and University of Kansas Press, Lawrence.Google Scholar
Rowell, A. J. 1966. Revision of some Cambrian and Ordovician inarticulate brachiopods. The University of Kansas Paleontological Contributions, Paper 7, 36 p.Google Scholar
Rowell, A. J. 1986. The distribution and inferred larval dispersion of Rhondellina dorei: a new Cambrian brachiopod (Acrotretida). Journal of Paleontology, 60:10561065.CrossRefGoogle Scholar
Schuchert, C. 1893. A classification of the Brachiopoda. American Geologist, 11:141167.Google Scholar
Sobolev, L. P. 1976. Novyy rod bezzamkovykh brachiopod iz verkhnego kembriya khrebta Dzhagdy (Khabarovskiy Kray). Paleontologicheskiy Zhurnal 2:131133.Google Scholar
Stitt, J. H., and Perfetta, P. J. 2000. Trilobites, biostratigraphy, and lithostratigraphy of the Crepicephalus and Aphelaspis zones, lower Deadwood Formation (Marjuman and Steptoean Stages, Upper Cambrian), Black Hills, South Dakota. Journal of Paleontology, 74:199223.2.0.CO;2>CrossRefGoogle Scholar
Szaniawski, H. 1971. New species of Upper Cambrian conodonts from Poland. Acta Palaeontologica Polonica, 16:101121.Google Scholar
Walcott, C. D. 1902. Cambrian Brachiopoda: Acrotreta; Linnarssonella; Obolus; with descriptions of new species. U.S. National Museum Proceedings, 25:577612.Google Scholar
Walcott, C. D. 1912. Cambrian Brachiopoda. U.S. Geological Survey Monograph, 51:part I, 812 p.; part II, 363 p.Google Scholar
Williams, A., Carlson, S. J., Brunton, C. H. C., Holmer, L. E., and Popov, L. E. 1996. A supraordinal classification of the Brachiopoda. Philosophical Transactions of the Royal Society of London, Series B, 351:11711193.Google Scholar