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Oldest shelly fossils from the Taconic Allochthon and late Early Cambrian sea-levels in eastern Laurentia

Published online by Cambridge University Press:  20 May 2016

Ed Landing
Affiliation:
New York State Geological Survey, The State Education Department, Albany 12230
Kenneth E. Bartowski
Affiliation:
New York State Geological Survey, The State Education Department, Albany 12230

Abstract

Continental slope facies in eastern New York have the most diverse small shelly faunas known in Laurentian late Early Cambrian strata. Diversity of a lower Elliptocephala asaphoides assemblage, the oldest body fauna in the Taconic allochthon, reflects turbidity current exhumation, transport, and deposition of phosphatized fossil hash in a proximal facies of the Browns Pond Formation. Phosphatization is linked to the first of two Olenellus Chron intervals with a thickened dysaerobic water mass on the slope. This interval of increased rate of sea-level rise corresponds to development of extensive carbonate belts and onlap of dark shales (e.g., Forteau and lower Kinzers formations) on the east Laurentian shelf.

The assemblage includes two trilobites, archaeocyathan fragments, echinoderm debris, the first edrioasteriod from east Laurentia, and 26 small shelly fossil species. New taxa are Asperconella new genus and Stenotheca taconica new species (helcionellids); Mackinnonia obliqua new species (pararostroconch); Conotheca laurentiensis new species, Insolitotheca new genus, and Petasotheca minuta new genus and species (hyoliths); and Plinthokonion? psamminon new species (agglutinated problematicum).

Type
Research Article
Copyright
Copyright © The Paleontological Society 

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References

Barrande, J. 1867. Systéme Silurien du centre de la Bohěme. Volume 3. Classe des Mollusques. Ordre des Ptéropodes. Prague, 179 p.Google Scholar
Barrande, J. 1881. Systéme Silurien du centre de la Bohěme. Volume 6, Acéphales. Paris and Prague, 342 p.Google Scholar
Bell, B.M., and Sprinkle, J. 1978. Totiglobis, an unusual new edrioasteroid from the Middle Cambrian of Nevada. Journal of Paleontology, 52:243266.Google Scholar
Bengtson, S., Conway Morris, S., Cooper, B.J., Jell, P.A., and Runnegar, B.N. 1990. Early Cambrian fossils from South Australia. Association of Australasian Palaeontologists, Memoir 9, 364 p.Google Scholar
Bengtson, S., Conway Morris, S., Cooper, B.J., Jell, P.A., and Missarzhevsky, V.V. 1981. Coeloscleritophora—a major group of enigmatic Cambrian metazoans, p. 1921. In Taylor, M.E. (ed.), Short Papers for the Second International Symposium on the Cambrian System. U.S. Geological Survey Open-File Report, 81-743.Google Scholar
Billings, E. 1858. On the Cystidea of the Lower SIlurian rocks of Canada. Geological Survey of Canada, Figures and Descriptions of Canadian Organic Remains, 3:974.Google Scholar
Billings, E. 1872a. On some new species of Palaeozoic fossils. The Canadian Naturalist, 6:213222.Google Scholar
Billings, E. 1872b. On some new species of Palaeozoic fossils. American Journal of Science, 3:352360.Google Scholar
Bird, J. M., and Rasetti, F. 1968. Lower, Middle, and Upper Cambrian faunas in the Taconic sequence of eastern New York: stratigraphic and biostratigraphic significance. Geological Society of America Special Paper, 113, 66 p.Google Scholar
Bockelie, T.G., and Fortey, R.A. 1976. An Early Ordovician vertebrate. Nature, 260:3638.Google Scholar
de Bruguière, J.G. 1791. Tableau encyclopédique et méthodologique des Troyes regnes de la Nature. Volume 7. l'Helminthologie. Paris, 785 p.Google Scholar
Cobbold, E.S. 1921. The Cambrian horizons of Comley (Shropshire) and their Brachiopoda, Pteropoda, Gasteropoda, etc. Quarterly Journal of the Geological Society of London, 76:325387.Google Scholar
Cobbold, E.S. 1934. The Cambrian genus Stenotheca. Geological Magazine, 71:473478.CrossRefGoogle Scholar
Cuvier, G. 1797. Tableau élementaire de l'histoire naturelle des animaux. Paris, 710 p.Google Scholar
Dzik, J. 1978. Larval development of hyolithids. Lethaia, 11:293299.Google Scholar
Dzik, J. 1980. Ontogeny of Bactrotheca and related hyoliths. Geologiska Föreningens i Stockholm Förhandlingar, 102:223233.Google Scholar
Dzik, J. 1994. Evolution of ‘small shelly fossils’ assemblages of the Early Paleozoic. Acta Palaeontologica Polonica, 39:247313.Google Scholar
Eichwald, E. 1840. Ueber das silurische Schichtensystem in Esthland. Zeitschrift für Natur-und Heilkunde, St. Petersburg, 1(2), 210 p.Google Scholar
Emmons, E. 1844. The Taconic System; based on observations in New York, Massachusetts, Maine, Vermont, and Rhode Island. Carroll and Cook, Printers, Albany, 68 p.Google Scholar
Fisher, D.W. 1984. Bedrock geology of the Glens Falls-Whitehall region, New York. New York State Museum Map and Chart Series, 35, 40 p.Google Scholar
Fisher, D.W., Isachsen, Y.W., and Rickard, L. V. 1970. Geologic map of New York State-Lower Hudson sheet. New York State Museum Map and Chart Series, 15.Google Scholar
Ford, S.W. 1872. Descriptions of some new species of Primordial fossils. American Journal of Science, 3rd Series, 3:419422.Google Scholar
Ford, S.W. 1873. On some new species of fossils from the Primordial or Potsdam group of Rensselaer County, New York. American Journal of Science, Third Series, 5:211215.Google Scholar
Fritz, W.H. 1991. Lower Cambrian trilobites from the Illtyd Formation, Werneke Mountains, Yukon Territory. Geological Survey of Canada Bulletin, 409.Google Scholar
Geyer, G. 1986. Mittelkambrische Mollusken aus Marokko und Spanien. Senckenbergiana Lethaea, 67:55118.Google Scholar
Geyer, G. 1994. Middle Cambrian mollusks from Idaho and early conchiferan evolution, p. 6986. In Landing, E. (ed.), Studies in stratigraphy and paleontology in honor of Donald W. Fisher. New York State Museum Bulletin, 481.Google Scholar
Grabau, A.W. 1900. Palaeontology of the Cambrian terranes of the Boston Basin. Occassional Papers of the Boston Society of Natural History, 4:601694.Google Scholar
Grabau, A.W., and Shimer, H.W. 1910. North American Index Fossils-Invertebrates, Volume 1. A.G. Seoler & Co., New York, 893 p.Google Scholar
Hall, J. 1847. Palaeontology of New York, Volume 1. Containing descriptions of the remains of the lower division of the New York System. C. Van Benthuysen, Albany, 338 p.Google Scholar
He, T., Pei, F., and Fu, G. 1984. Some small shelly fossils from the Lower Cambrian Xinji Formation in Fangcheng County, Henan Province. Acta Palaeontologica Sinica, 23:350357 (in Chinese with English summary).Google Scholar
Hinz, I. 1987. The Lower Cambrian microfauna of Comley and Rushton, Shropshire/England. Palaeontographica, Abteilung A, 198:41100.Google Scholar
Holm, G. 1893. Sveriges Kambrisk-Siluriska Hyolithidae och Conularidae. Sveriges Geologiska Undersokning, Afhandlingar och Uppsater 112, 172 p.Google Scholar
Kruse, P.D. 1991. Cambrian fauna of the Top Springs Limestone, Georgina Basin. The Bragle, Records of the Northern Territory Museum of Arts and Sciences, 8:169188.Google Scholar
Landing, E. 1974. Early and Middle Cambrian conodonts from the Taconic allochthon, eastern New York. Journal of Paleontology, 48:12411248.Google Scholar
Landing, E. 1984. Skeleton of lapworthellids and the suprageneric classification of tommotiids (Early and Middle Cambrian phosphatic problematica). Journal of Paleontology, 58:13801398.Google Scholar
Landing, E. 1988a. Depositional tectonics and biostratigraphy of the western portion of the Taconic allochthon, eastern New York state, p. 96110. In Landing, E. (ed.), The Canadian Paleontology and Paleontology Seminar. New York State Museum Bulletin 462.Google Scholar
Landing, E. 1988b. Lower Cambrian of eastern Massachusetts: stratigraphy and small shelly fossils. Journal of Paleontology, 62:661695.Google Scholar
Landing, E. 1992. Lower Cambrian of southeastern Newfoundland: epeirogeny and and Lazarus faunas, lithofacies-biofacies linkages, and the myth of a global chronostratigraphy, p. 283309. In Lipps, J. and Signor, P.W. (eds.), Origins and Early Evolution of Metazoa. Plenum Press, New York.Google Scholar
Landing, E. 1993. Cambrian-Ordovician boundary in the Taconic allochthon, eastern New York, and its interregional correlation. Journal of Paleontology, 67:119.Google Scholar
Landing, E. 1994. Precambrian-Cambrian boundary global stratotype ratified and a new perspective of Cambrian time. Geology, 22:179182.2.3.CO;2>CrossRefGoogle Scholar
Landing, E. 1995. Upper Placentian-Branchian Series of mainland Nova Scotia (middle-upper Lower Cambrian): faunas, paleoenvironments, and stratigraphic revision. Journal of Paleontology, 69:475495.Google Scholar
Landing, E., Benus, A.P., and Whitney, P.R. 1992. Early and early Middle Ordovician continental slope deposition: shale cycles and sandstones in the New York Promontory and the Quebec Reentrant region. New York State Museum Bulletin, 474, 40 p.Google Scholar
Lesley, J.P. 1889. A dictionary of the fossils of Pennsylvania and neighboring states named in the reports and catalogues of the Survey. Geological Survey of Pennsylvania Report, P4, 437 p.Google Scholar
Lochman, C. 1956. Stratigraphy, paleontology, and paleogeography of the Elliptocephala asaphoides strata in Cambridge and Hoosick quadrangles, New York. Bulletin of the Geological Society of America, 67:13311396.Google Scholar
MacKinnon, D.I. 1985. New Zealand late Middle Cambrian molluscs and the origin of Rostroconchia and Bivalvia. Alcheringa, 9:6581.Google Scholar
Malinky, J.M. 1988. Early Paleozoic Hyolitha from North America: reexamination of Walcott's and Resser's type specimens. Journal of Paleontology, 62:218233.Google Scholar
Malinky, J.M. 1989. New Early Paleozoic Hyolithida and Orthothecida (Hyolitha) from North America. Journal of Paleontology, 63:302319.Google Scholar
Marek, L. 1963. New knowledge on the morphology of Hyolithes. Sibornik geologickych Vedenske Praha, Rada Paleontologickych 1:5373.Google Scholar
Marek, L. 1967. The Class Hyolitha in the Caradoc of Bohemia. Sibornik geologichych Vedenske Praha, Rada Paleontologickych, 9:51113.Google Scholar
Missarzhevsky, V.V., and Mambetov, A.M. 1981. Stratigrafiya i fauna pograniyniza sloev kembriya i dokembriya Malogo Karatau. Izdatel'stvo “Nauka,” Moscow, 99 p.Google Scholar
Müller, K.J. 1959. Kambrische Conodonten. Zeitschrift der deutschen geologischen Gesellschaft, 111:433485.Google Scholar
Nogami, Y. 1967. Kambrische Conodonten von China, Teil 2. Memoirs of the College of Science, University of Kyoto, Series B, 33:211218.Google Scholar
Novák, O. 1891. Pevision der palaeozoischen Hyolithiden Bohmens. Abhandlungen der königlichen Böhmischen Gesellschaft der Wissenschaften, 7:18.Google Scholar
d'Orbigny, A. 1850. Paleontologie francaise, terrains jurassiques, Volume 1, Paris, 570 p.Google Scholar
Palmer, A.R. 1971a. The Cambrian of the Great Basin and adjacent areas, western United States, p. 178. In Holland, C.H. (ed.), Cambrian of the New World. Wiley-Interscience, New York.Google Scholar
Palmer, A.R. 1971b. The Cambrian of the Appalachian and eastern New England regions, eastern United States, p. 169217. In Holland, C.H. (ed.), Cambrian of the New World. Wiley-Interscience, New York.Google Scholar
Palmer, A.R., and James, N.P. 1979. The Hawke Bay event: a circum-Iapetus regression near the lower Middle Cambrian boundary, p. 1518. In Wones, D.R. (ed.), The Caledonides in the U.S.A., Preceedings. Virginia Polytechnic Institute and State University, Department of Geological Sciences, Memoir 2.Google Scholar
Palmer, A.R., and Nelson, C.A. 1981. Lower and Middle Cambrian stratigraphy and paleontology of the southern Great Basin, California and Nevada, p. 111. In Taylor, M.E. and Palmer, A.R. (eds.), Cambrian stratigraphy and paleontology of the Great Basin and vicinity, western United States. Second International Symposium on the Cambrian System, Guidebook for Field Trip 1. U.S. Geological Survey and Subcommission on Cambrian Stratigraphy, International Union of Geological Scientists, Denver.Google Scholar
Palmer, A.R., and Repina, L.N. 1993. Through a glass darkly: taxonomy phylogeny, and biostratigraphy of the Olenellina. University of Kansas Paleontological Contributions, New Series, No. 3, 35 p.Google Scholar
Peel, J.S. 1987. Yochelcionella americana (Mollusca) from the Lower Cambrian of Newfoundland. Canadian Journal of Earth Sciences, 24:23282330.Google Scholar
Peel, J.S. 1991. Functional morphology of the Class Helcionellida nov., and the early evolution of the Mollusca, p. 157177. In Simonetta, A. and Conway Morris, S. (eds.), The Early Evolution of Metazoa and the Significance of Problematic Taxa. Proceedings of an International Symposium held at the University of Camerino 27-31 March 1989. Universita degli Studi di Camerino, Dipartimento di Biologia molecolaire, cellulare e animale, Camerino.Google Scholar
Pei, F. 1985. First discovery of Yochelcionella from the Lower Cambrian of China and its significance. Acta Micropalaeontologica Sinica, 2:395400. (In Chinese with English translation).Google Scholar
Portlock, J.E. 1843. Report on the geology of Londonderry, and parts of Tyrone and Fermanagh. Examined and described under the authority of the Master General and Board of Ordnance. A. Milliken, Dublin, 784 p.Google Scholar
Poulsen, C. 1932. The Lower Cambrian faunas of East Greenland. Meddelelser om Gr⊘nland, 87(6), 66 p.Google Scholar
Poulsen, C. 1967. Fossils from the Lower Cambrian of Bornholm. Danske Videnskaps Selskab, Matematisk-Fysiske Meddelelser, 36:148.Google Scholar
Rasetti, F. 1966. New Lower Cambrian trilobite faunule from the Taconic sequence of New York. Smithsonian Miscellaneous Collections, 148, Number 9.Google Scholar
Rasetti, F. 1967. Lower and Middle Cambrian trilobite faunas from the Taconic sequence of New York. Smithsonian Miscellaneous Collections, 152, Number 4.Google Scholar
Resser, C.E. 1938. Fourth contribution to nomenclature of Cambrian fossils. Smithsonian Miscellaneous Collections, 97, Number 10.Google Scholar
Resser, C.E., and Howell, B.F. 1938. Lower Cambrian Olenellus Zone of the Appalachians. Bulletin of the Geological Society of America, 49:195248.Google Scholar
Rowley, D.B., Kidd, W.S.F., and Delano, L.L. 1968. Detailed stratigraphic and structural features of the Giddings Brook slice of the Taconic allochthon in the Granville area, p. 186242. In Friedman, G.M. (ed.), Joint Annual Meeting of the New York State Geological Association and New England Intercollegiate Geological Association, Rensselaer Polytechnic Institute, Troy, New York.Google Scholar
Roy, S.K. 1929. Contributions to paleontology. Field Museum of Natural History Geological Series, 4:203220.Google Scholar
Rozanov, A.YU., Missarzhevsky, V.V., Vol'kova, N.A., Voronova, L.C., Krylov, I.N., Keller, B.M., Korolyuk, I.K., Lendzion, K., Michniak, R., Pykhova, N.G., and Sidorov, A.D. 1969. Tommotski yarus i problema nizhney granitsy kembriya. Trudy geologicheskii Institut, Moscow, 206, 380 p.Google Scholar
Runnegar, B. 1978. Origin and evolution of the class Rostroconchia. Philosophical Transactions of the Royal Society of London, Series B, 284:319333.Google Scholar
Runnegar, B., and Jell, P.A. 1976. Australian Middle Cambrian mollusks and their bearing on early molluskan evolution. Alcheringa, 1:109138.Google Scholar
Runnegar, B., and Pojeta, J. Jr. 1980. The monoplacophoran mollusk Yochelcionella identified from the Lower Cambrian of Pennsylvania. Journal of Paleontology, 54:635636.Google Scholar
Sageman, B.B., Wignall, P.B., and Kauffman, E.G. 1991. Biofacies models for oxygen-deficient facies in epicontinental seas: tool for paleoenvironmental analysis, p. 542564. In Einsele, G., Ricken, W., and Seilacher, A. (eds.), Cycles and Environments in Stratigraphy. Springer-Verlag, Berlin.Google Scholar
Schindewolf, O.H. 1938. Handbuch der Paläontologie, Teil 1. Gebrüder Borntraeger, Berlin, 540 p.Google Scholar
Schuchert, C., and Dunbar, C.O. 1934. Stratigraphy of western Newfoundland. Geological Society of America, Memoir 1, 123 p.Google Scholar
Shaler, N.S., and Foerste, A.F. 1888. Preliminary descriptions of North Attleboro fossils. Harvard Museum of Comparative Zoology Bulletin, 16:2741.Google Scholar
Shimer, H.W., and Shrock, R.F. 1944. Index Fossils of North America. J. Wiley and Sons, Inc., New York, 837 p.Google Scholar
Spencer, L.M. 1980. Paleoecology of a Lower Cambrian archaeocy-athid interreef fauna from southern Labrador. Unpublished , , 163 p.Google Scholar
Sprinkle, J. 1973. Morphology and evolution of blastozoan echinoderms. Harvard University Museum of Comparative Zoology, Special Publication, 283 p.Google Scholar
Sysoiev, V.A. 1968. Stratigraphiya i khioliti drevneyskikh sloev nizhnego kembriya Sibirskoy platformi. Izdatel'stvo “Nauka,” Moscow, 67 p.Google Scholar
Sysoiev, V.A. 1973. Hyolithids from the lower part of the Lenian Stage of the northern slope of the Aldan syncline, p. 5768. In Problems of Paleontology and Biostratigraphy of the Lower Cambrian of Siberia and the Far East. NAUKA, Novosibirsk. (In Russian)Google Scholar
Theokritoff, G. 1964. Taconic stratigraphy in northern Washington County, New York. Geological Society of America Bulletin, 75:171190.Google Scholar
Theokritoff, G. 1968. Cambrian biogeography and biostratigraphy in New England, p. 922. In Zen, E., White, W.S., Hadley, J.B., and Thompson, J.B. Jr. (eds.), Studies of Appalachian Geology: Northern and Maritime. John Wiley & Sons, New York.Google Scholar
Theokritoff, G. 1985. Early Cambrian biogeography in the North Atlantic region. Lethaia, 18:283293.Google Scholar
Walcott, C.D. 1886. Second contribution to the studies on Cambrian faunas of North America. U.S. Geological Survey Bulletin, 30, 369 p.Google Scholar
Walcott, C.D. 1887. Fauna of the “upper Taconic” of Emmons in Washington County, New York. American Journal of Science, 3d. Series, 34:187199.Google Scholar
Walcott, C.D. 1890. The fauna of the Lower Cambrian or Olenellus Zone of North America. 10th Annual Report of the U.S. Geological Survey, p. 509763. (Issued in 1891)Google Scholar
Walcott, C.D. 1910. Olenellus and other genera of the Mesonacidae. Smithsonian Miscellaneous Collections, 53:231422.Google Scholar
Walcott, C.D. 1920. Cambrian geology and paleontology, IV, Number 6, Middle Cambrian Spongiae. Smithsonian Miscellaneous Collections, 67:261364.Google Scholar
Xing, Y., Ding, Q, Luo, H., He, T., Wang, Y. et al. 1983. The Sinian-Cambrian boundary of China. Bulletin of the Institute of Geology, Chinese Academy of Geological Sciences, No. 10, 262 p. (In Chinese with English summary)Google Scholar
Yochelson, E.L. 1969. Stenothecoids, a proposed new class of Cambrian Mollusca. Lethaia, 2:4962.Google Scholar