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Middle Pennsylvanian rugose corals from the Baird Formation, Klamath Mountains, northwestern California

Published online by Cambridge University Press:  20 May 2016

Toshio Kawamura
Affiliation:
Miyagi University of Education, Aramaki 149, Aoba-ku, Sendai 980-0845, Japan,
Calvin H. Stevens
Affiliation:
Department of Geology, San Jose State University, San Jose, California 95192, USA,

Abstract

Four new species of colonial corals, one previously described coral, and two other unidentified species of coral have been recovered from the Baird Formation in the Klamath Mountains of northwestern California. The newly erected species are Heritschioides armstrongi n. sp., Pararachnastraea klamathensis n. sp., P. watkinsi n. sp., and P. kabyaiensis n. sp. These corals are associated with the fusulinids Millerella marblensis Thompson, 1944, Paramillerella Thompson, 1951, and Pseudostaffella Thompson, 1942, emend Groves, 1984, suggesting an early Atokan (Bashkirian) age. Both the coral and foraminiferal faunas bear a resemblance to those of similar age in the Brooks Range, Alaska, which could suggest geographic proximity between the two terranes at that time. These corals also represent the earliest known occurrence of the Family Durhamididae.

Type
Research Article
Copyright
Copyright © The Paleontological Society 

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References

Armstrong, A. K. 1972. Pennsylvanian carbonates, paleoecology, and rugose colonial corals, north flank, eastern Brooks Range, arctic Alaska. U.S. Geological Survey Professional Paper 747, 19 p.Google Scholar
Colpron, M. and Nelson, J. L. 2011. A Palaeozoic NW passage and the Timanian, Caledonian and Uralian connections of some exotic terranes in the North American Cordillera, p. 463484. InSpencer, A. M., Embry, A. F., Gautier, D. L., Stroupakova, A., and Sorensen, K.(eds.), Arctic Petroleum Geology. Geological Society, London, Memoirs, 35.Google Scholar
Diller, J. S. 1906. Description of the Redding quadrangle. U.S. Geological Survey Geologic Atlas Folio 38, 14 p.Google Scholar
Dybowski, W. H. 1873. Monographie der Zoantharia Sclerodermata Rugosa aus der Silurformation Estlands, Nord-Livlands und der Insel Gotland: Archiv Naturkunde, Liv-Ehst-Kurlands, ser. 1, 5:257414.Google Scholar
Fairbanks, H. W. 1894. Localities of Mesozoic and Paleozoic in Shasta County, California. American Geologist, 14:2531.Google Scholar
Fedorowski, J., Bamber, E. W., and Stevens, C. H. 2007. Lower Permian colonial rugose corals, western and northwestern Pangaea: Taxonomy and distribution. NRC Research Press, Ottawa, Ontario, Canada, 231 p.CrossRefGoogle Scholar
Groves, J. R. 1984. Taxonomic nomenclatural and stratigraphic notes on the primitive fusulinid Pseudostaffella Thompson, 1942. Journal of Foraminiferal Research, 14:6976.CrossRefGoogle Scholar
Hill, D. 1981. Supplement 1. Rugosa and Tabulata, p. F1F762. InTeichert, C.(ed.), Treatise on Invertebrate Paleontology, Pt. F. Coelenterata. Geological Society of America and University of Kansas Press, Boulder, Colorado and Lawrence, Kansas.Google Scholar
Maslov, V. P. 1956. Algues calcaires fossiles de l'URSS. Trudy Instituta Geologii Akademiya Nauk, S.S.S.R., 160:301.Google Scholar
Miller, M. M. 1987. Dispersed remnants of a northeast Pacific fringing arc: upper Paleozoic terranes of Permian McCloud faunal affinity, western U.S. Tectonics, 6:807830.Google Scholar
Minato, M. and Kato, M. 1965. Durhaminidae (Tetracoral). Journal of the Faculty of Science. Hokkaido University Series, 4, Geology and Mineralogy, 13:1386.Google Scholar
Sando, W. J. 1985. Paraheritschioides, a new rugose coral genus from the Upper Pennsylvanian of Idaho. Journal of Paleontology, 59:979985.Google Scholar
Sato, K., Kawamura, T., and Stevens, C. H. 2001. Carboniferous corals from the Eastern Klamath Terrane, North American Cordillera. Preliminary report, 150th Regular Meeting, Palaeontological Society of Japan, Abstracts and Programs, 38 p. (In Japanese)Google Scholar
Smith, S. 1935. Two anthracolithic corals from British Columbia and related species from the Tethys. Journal of Paleontology, 9:3042.Google Scholar
Smith, D. and Ryder, T. A. 1926. The genus Corwenia, gen. nov. Annals and Magazine of Natural History, ser. 9, 17:149159.Google Scholar
Soshkina, E. D., Dobrolyubova, T. A., and Porfiriev, G. S. 1941. Permian Rugosa of the European part of the U.S.S.R. InLicharev, B. K.(ed.), Paleontology of the U.S.S.R. Akademiya Nauk SSSR, Paleontologicheski Institut, Moscow/Leningrad, 5 (3):304. (In Russian)Google Scholar
Stevens, C. H. 1995. New species of the early Permian cerioid coral Kleopatrina from northwest Chihuahua, Mexico. Journal of Paleontology, 69:11761179.Google Scholar
Stevens, C. H. and Rycerski, B. 1989. Early Permian colonial rugose corals from the Stikine River area, British Columbia, Canada. Journal of Paleontology, 63:158181.CrossRefGoogle Scholar
Stevens, C. H. and Stone, P. 2009. New Permian durhaminid cerioid corals from east-central California. Journal of Paleontology, 83:946953.CrossRefGoogle Scholar
Stevens, C. H., Fedorowski, J., and Kawamura, T. 2012. New unusual skeletal structure in an upper Carboniferous rugose coral, northern California. Journal of Paleontology, 86:11401145.Google Scholar
Thompson, M. L. 1942. New genera of Pennsylvanian fusulinids. American Journal of Science, 20:403420.Google Scholar
Thompson, M. L. 1944. Pennsylvanian Morowan rocks and fusulinids of Kansas. University of Kansas Publications, State Geological Survey of Kansas, Bulletin, 52:409431.Google Scholar
Thompson, M. L. 1951. New genera of fusulinid Foraminifera. Cushman Foundation for Foraminiferal Research, Contributions, 2:115119.Google Scholar
Watkins, R. 1973. Carboniferous faunal associations and stratigraphy, Shasta County, northern California. American Association of Petroleum Geologists Bulletin, 57:17431764.Google Scholar
Watkins, R. 1993. Carbonate sedimentation in a volcaniclastic arc setting: lower Carboniferous limestones of the eastern Klamath terrane, California. Journal of Sedimentary Petrology, 63:966973.Google Scholar
Watkins, R. 1999. Upper Paleozoic bioherms in island-arc carbonates of the Eastern Klamath Terrane, California. Paleontological Research, 3:151161.Google Scholar
Yabe, H. 1950. Permian corals resembling Waagenophyllum and Corwenia. Japan Academy Proceedings, 26:7479.Google Scholar