Paleontology in South Carolina

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The location of the state of South Carolina Map of USA SC.svg
The location of the state of South Carolina

Paleontology in South Carolina refers to paleontological research occurring within or conducted by people from the U.S. state of South Carolina. Evidence suggests that at least part of South Carolina was covered by a warm, shallow sea and inhabited by trilobites during the Cambrian period. Other than this, little is known about the earliest prehistory of South Carolina because the Ordovician, Silurian, Devonian, Carboniferous, Permian, Triassic, and Jurassic, are missing from the state's local rock record. The earliest fossils of South Carolina date back to the Cretaceous, when the state was partially covered by seawater. Contemporary fossils include marine invertebrates and the remains of dinosaur carcasses that washed out to sea. On land, a wide variety of trees grew. Sea levels rose and fell throughout the ensuing Cenozoic era. Local marine life included invertebrates, fish, sharks, whales. The first scientifically accurate identification of vertebrate fossils in North America occurred in South Carolina. In 1725, African slaves digging in a swamp uncovered mammoth teeth, which they recognized as originating from an elephant-like animal.

Contents

Prehistory

No Precambrian fossils are known from South Carolina. As such, the state's fossil record does not begin until the Paleozoic. During the Cambrian, at least the Batesburg-Leesville area in the southwestern part of the state was submerged under seawater. This sea was home to trilobites. The rest of the Paleozoic is absent from the state's rock record, so the state has no sediments from the Ordovician, Silurian, Devonian, Carboniferous, or Permian in which fossils could have been preserved. The Triassic and Jurassic periods of the Mesozoic era are also missing from the state's rock record. During the Cretaceous, however, South Carolina was covered in sea water. Local marine life included oysters and tube-forming worms. Sometimes whole dinosaur carcasses would be washed out to sea. Fragments of bone and teeth from such remains have been preserved in the eastern part of the state. [1] Late Cretaceous invertebrates included a bryozoan, coelenterats, gastropods, pelecypods, and scaphopods. [2] The Late Cretaceous Peedee beds are known for their belemnites and other mollusks. [3] During the Late Cretaceous, the flora of South Carolina included trees like eucalyptuses, laurel, magnolias, oak, sequoiah, walnut, and willows. [4] Similar fossil trees have been found in Alabama, New Jersey, and Maryland. [2] Late Cretaceous dinosaur fossils have been found at several Donoho Creek Formation sites in northeastern South Carolina. [1]

Cenozoic limestone is common in South Carolina and rich in fossils. The state's early Tertiary limestones are a great example. [5] The Tertiary period was a time of rising and falling local temperatures. [6] During the Eocene, South Carolina was home to the corals Coelohelia wagneriana and Haimesiastraea conforta and the oyster Ostrea arrosis . Before the South Carolinan specimens of those corals had been found they were known only from Alabama. At least 58 kinds of Eocene bryozoans were preserved in the Eutaw Springs area alone. [7] Middle Tertiary phosphate beds in the state have produced marine fossils like shark teeth, fish bones, and ray dental plates. [3] Finally in the later part of the Tertiary period the local climate entered a trend of increasing temperatures. This trend culminated in local temperatures similar to those of modern Florida. Local environments included both sea and land. Local marine life included whales. More terrestrial inhabitants of Tertiary South Carolina included sizable crocodilians. [6] During the Oligocene, South Carolina was home to bony fishes, sharks, and rays. [8] A primitive toothed whale called Xenorophus sloanii was preserved in Charleston County. [9] Miocene life of South Carolina included a great diversity of mollusks, who left behind a wide variety of fossil shells. [9] Pliocene life included mollusks and sea urchins. [10] Both local sea levels and temperatures began to rise and fall during the Quaternary. During cold spells jack pines grew in the state while during the warmer spells the vegetation more closely resembled the state's current flora. [6] Pleistocene fossils are fairly rare, except for the abundant marine mollusk shells at the Stono River and Yonges Island. [10]

History

Woolly mammoths. Woolly mammoth (Mammuthus primigenius) - Mauricio Anton.jpg
Woolly mammoths.

In 1725, Mark Catesby, an English botanist visited a plantation called Stono, where slaves had uncovered several large fossil teeth while digging in a swamp. The slaves unanimously identified the teeth as elephant molars. The slaves would have been familiar with the modern African elephants of their homeland, probably Angola or Congo. The plantation owners probably would have interpreted the teeth as the remains of giants killed by Noah's Flood. Catesby, however, also interpreted the molars as elephants teeth due to their similarity to African elephant teeth he had seen on display in London. In the early 19th century, Georges Cuvier authored an 1806 translated account of the discovery at Stono. He remarked that the African slaves understood the similarity between mammoth remains and elephants before European naturalists. Later, in 1942, George Gaylord Simpson "grudgingly" conceded that the African slaves at Stono were the first to scientifically identify a North American vertebrate fossil. [11]

Natural history museums

Notable clubs and associations

See also

Footnotes

  1. 1 2 Weishampel and Young (1996); "Late Cretaceous Paradise", page 49.
  2. 1 2 Murray (1974); "South Carolina", page 251.
  3. 1 2 Picconi (2003); "Ancient Seascapes of the Coastal Plain: Muddy, oxygen-rich environments & Silty-sandy environments preserved as gray shale", page 99.
  4. Murray (1974); "South Carolina", pages 250-251.
  5. Picconi (2003); "Ancient Seascapes of the Coastal Plain: Clear, shallow environments preserved as limestone", page 99.
  6. 1 2 3 Knight, Springer, Scotchmoor (2005); "Paleontology and geology".
  7. Murray (1974); "South Carolina", page 252.
  8. Murray (1974); "South Carolina", page 250.
  9. 1 2 Murray (1974); "South Carolina", page 253.
  10. 1 2 Murray (1974); "South Carolina", page 254.
  11. Mayor (2005); "Thomas Jefferson's Paleontological Inquiries", page 56.
  12. Garcia and Miller (1998); "Appendix C: Major Fossil Clubs", page 198.

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Paleontology in Montana refers to paleontological research occurring within or conducted by people from the U.S. state of Montana. The fossil record in Montana stretches all the way back to the Precambrian. During the Late Precambrian, western Montana was covered by a warm, shallow sea where local bacteria formed stromatolites and bottom-dwelling marine life left tracks on the sediment that would later fossilize. This sea remained in place during the early Paleozoic, although withdrew during the Silurian and Early Devonian, leaving a gap in the local rock record until its return. This sea was home to creatures including brachiopods, conodonts, crinoids, fish, and trilobites. During the Carboniferous the state was home to an unusual cartilaginous fish fauna. Later in the Paleozoic the sea began to withdraw, but with a brief return during the Permian.

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Paleontology in New Mexico refers to paleontological research occurring within or conducted by people from the U.S. state of New Mexico. The fossil record of New Mexico is exceptionally complete and spans almost the entire stratigraphic column. More than 3,300 different kinds of fossil organisms have been found in the state. Of these more than 700 of these were new to science and more than 100 of those were type species for new genera. During the early Paleozoic, southern and western New Mexico were submerged by a warm shallow sea that would come to be home to creatures including brachiopods, bryozoans, cartilaginous fishes, corals, graptolites, nautiloids, placoderms, and trilobites. During the Ordovician the state was home to algal reefs up to 300 feet high. During the Carboniferous, a richly vegetated island chain emerged from the local sea. Coral reefs formed in the state's seas while terrestrial regions of the state dried and were home to sand dunes. Local wildlife included Edaphosaurus, Ophiacodon, and Sphenacodon.

Paleontology in Washington (state)

Paleontology in Washington encompasses paleontological research occurring within or conducted by people from the U.S. state of Washington. Washington has a rich fossil record spanning almost the entire geologic column. Its fossil record shows an unusually great diversity of preservational types including carbonization, petrifaction, permineralization, molds, and cast. Early Paleozoic Washington would come to be home to creatures like archaeocyathids, brachiopods, bryozoans, cephalopods, corals, and trilobites. While some Mesozoic fossils are known, few dinosaur remains have been found in the state. Only about two thirds of the state's land mass had come together by the time the Mesozoic ended. In the Cenozoic the state's sea began to withdraw towards the west, while local terrestrial environments were home to a rich variety of trees and insects. Vertebrates would come to include the horse Hipparion, bison, camels, caribou, oreodonts. Later, during the Ice Age, the northern third of the state was covered in glaciers while creatures like bison, caribou, woolly mammoths, mastodons, and rhinoceros roamed elsewhere in the state. The Pleistocene Columbian Mammoth, Mammuthus columbi is the Washington state fossil.

Paleontology in Alaska

Paleontology in Alaska refers to paleontological research occurring within or conducted by people from the U.S. state of Alaska. During the Late Precambrian, Alaska was covered by a shallow sea that was home to stromatolite-forming bacteria. Alaska remained submerged into the Paleozoic era and the sea came to be home to creatures including ammonites, brachiopods, and reef-forming corals. An island chain formed in the eastern part of the state. Alaska remained covered in seawater during the Triassic and Jurassic. Local wildlife included ammonites, belemnites, bony fish and ichthyosaurs. Alaska was a more terrestrial environment during the Cretaceous, with a rich flora and dinosaur fauna.

References