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Xenungulata
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Xenungulata

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Xenungulata ("strange ungulates") is an order of extinct and primitive South American hoofed mammals that lived from the Late Paleocene to Early Eocene (Itaboraian to Casamayoran in the SALMA classification). Fossils of the order are known from deposits in Brazil, Argentina, Peru, and Colombia. The best known member of this enigmatic order is the genus Carodnia, a tapir-like and -sized animal with a gait similar to living African elephants.

Wikidata facts

Parent taxon
Meridiungulata
Image
Carodnia vieirai NT.jpg
Show 7 more facts
taxon common name
Xenungulates
topic's main category
Category:Xenungulata
taxon rank
order
taxon name
Xenungulata
Commons category
Xenungulata
start time
58600000-0
end time
48700000-0
Sources (2)

via Wikidata · CC0

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Encyclopedic overview

5 sections
Contents
  • Description
  • Taxonomy
  • Distribution
  • References
  • Bibliography

Xenungulata ("strange ungulates") is an order of extinct and primitive South American hoofed mammals that lived from the Late Paleocene to Early Eocene (Itaboraian to Casamayoran in the SALMA classification). Fossils of the order are known from deposits in Brazil, Argentina, Peru, and Colombia. The best known member of this enigmatic order is the genus Carodnia, a tapir-like and -sized animal with a gait similar to living African elephants.

== Description == Xenungulates are characterized by bilophodont M1–2 and M1–2, similar to pyrotheres, and complex lophate third molars, similar to uintatheres. Though other relationships, to arctocyonids for example, have been suggested, no proofs thereof have been found. The foot bones of xenungulates were short and robust and their digits terminated in broad, flat, and unfissured hoof-like unguals, quite unlike any other meridiungulates. The discovery of Etayoa in Colombia made it clear that xenungulates are distinct from other groups: Etayoa lacks lophate molar talonid (in contrast to Carodnia) and, since no distinct lophodonty is present in basal pyrotheres, there is reason to assume that bilophodonty evolved separately in xenungulates and pyrotheres. Xenungulates also show some dental similarity to primitive astrapotheres.

Excerpted from Wikipedia’s “Xenungulata” article, available under the CC BY-SA 4.0 licence.

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