Camelid: Wikis

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Camelid
Fossil range: 45–0 Ma
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S
D
C
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Middle Eocene-Recent
A Bactrian Camel walking in the snow
Scientific classification
Kingdom: Animalia
Phylum: Chordata
Class: Mammalia
Order: Artiodactyla
Suborder: Tylopoda
Family: Camelidae
Gray, 1821
Genera

Lama
Vicugna
Camelus

Map of the world showing distribution of camelids, prior to modern introductions to Australia and elsewhere. Solid black lines indicate possible migration routes.

Camelids are members of the biological family Camelidae, the only living family in the suborder Tylopoda. Camels, dromedaries, Bactrian Camels, llamas, alpacas, vicuñas, and guanacos are in this group.

Camelids are even-toed ungulates: they are classified in the order Artiodactyla. Other suborders of Artiodactyla include pigs, peccaries and hippos (suborder Suina) and the extraordinarily successful and diverse suborder Ruminantia (which includes cattle, goats, antelope and many others).

Contents

Characteristics

Camelid feet lack functional hooves, the toe bones being embedded in a broad cutaneous pad[1]

Camelids are large animals with slender necks and long legs, and are strictly herbivorous. Camelids differ from true ruminants in a number of ways. Their dentition shows traces of vesitigial central incisors in the upper jaw, and the third incisors are developed into canine-like tusks. Camelids also have true canine teeth and tusk-like premolars which are separated from the molars by a gap. The musculature of the hind limbs differs from those of other ungulates by the fact that the legs are attached to the body at the top of the thigh only, rather than attached by skin and muscle from the knee downwards. Because of this, camelids have to lie down by resting on their knees with their legs tucked underneath the body.[1] They have a three-chambered rather than a four-chambered digestive tract, an upper lip that is split in two with each part separately mobile, and uniquely among mammals, elliptical red blood cells. They also have a unique type of antibodies lacking the light chain, in addition to the normal antibodies found in other species. These antibodies are being used to develop 'nanobodies'.

They do not have hooves, rather a two-toed foot with toenails and a soft footpad (Tylopoda is Latin for "padded foot"). The main weight of the animal is borne by these tough, leathery sole-pads. The South American camelids, adapted to steep and rocky terrain, can move the pads on their toes to maintain grip[2]. Many fossil camelids were unguligrade and probably hooved, in contrast to all living species.[3]

The two Afro-Asian camel species have developed extensive adaptations to their life in harsh, near-waterless environments. Wild populations of the bactrian camel are even able to drink brackish water, and some herds live in nuclear test areas.[4]

Evolution

Camelids are unusual in that their modern distribution is almost a mirror-image of their origin. Camelids first appeared very early in the evolution of the even-toed ungulates, around 45 million years ago during the middle Eocene, in present-day North America. Among the earliest camelids was the rabbit-sized Protylopus, which still had four toes on each foot. By the late Eocene around 35 million years ago, camelids such as Poebrotherium had lost the two lateral toes, and were about the size of a modern goat.[3][5]

The family diversified and prospered but remained confined to the North American continent until only about 2 or 3 million years ago, when representatives arrived in Asia, and (as part of the Great American Interchange that followed the formation of the Isthmus of Panama), South America.

The original camelids of North America remained common until the quite recent geological past, but then disappeared, possibly as a result of hunting or habitat alterations by the earliest human settlers. Three species groups survived: the Dromedary of northern Africa and south-west Asia; the Bactrian Camel of central Asia; and the South American group, which has now diverged into a range of forms that are closely related but usually classified as four species: Llamas, Alpacas, Guanacos, and Vicuñas.

Fossil camelids show a wider variety than their modern counterparts. One North American genus, Titanotylopus, stood 3.5 metres at the shoulder, compared with the approximately two metres of the largest modern camelids. Other extinct camelids included small, gazelle-like animals, such as Stenomylus. Finally, there were a number of very tall, giraffe-like camelids, adapted to feeding on leaves from high trees, including such genera as Aepycamelus, and Oxydactylus.[3]

Scientific classification

A dromedary camel (Camelus dromedarius) in the Australian outback, near Silverton, New South Wales
South American Vicuña (Vicugna vicugna)

Phylogenetic tree

Camelid ancestor North America

12-25 mya

Lamini 10.4 mya 1.4 mya Guanaco South America
Vicuña
Camelini 8 mya Bactrian camel Asia
Dromedary Asia, Africa

Extinct genera of camelids

Genus name Epoch Remarks
Aepycamelus Miocene Tall, s-shaped neck. True padded camel feet.
Camelops Pliocene-Pleistocene Large, with true camel feet. Hump status uncertain.
Floridatragulus Early Miocene A bizarre species of camel with a long snout
Eulamaops Pleistocene From South America
Hemiauchenia Miocene-Pleistocene A North and South American lamine genus
Oxydactylus Early Miocene The earliest member of the "giraffe camel" family
Palaeolama Pleistocene A North and South American lamine genus
Poebrotherium Oligocene This species of camel took the place of deer and antelope in the White River Badlands.
Procamelus Miocene Ancestor of extinct Titanolypus and modern Camelus.
Protylopus Late Eocene Earliest member of the camelids
Stenomylus Early Miocene Small, gazelle-like camel that lived in large herds on the Great Plains.
Titanotylopus Miocene-Pleistocene Tall, humped, true camel feet.

The newly discovered giant Syrian Camel is yet to be officially described.

References

  1. ^ a b Clutton-Brock, Juliet (1987). A Natural History of Domesticated Mammals. pp. 208. ISBN 0521346975.  
  2. ^ Franklin, William (1984). Macdonald, D.. ed. The Encyclopedia of Mammals. New York: Facts on File. pp. 512–515. ISBN 0-87196-871-1.  
  3. ^ a b c Savage, RJG, & Long, MR (1986). Mammal Evolution: an illustrated guide. New York: Facts on File. pp. 216–221. ISBN 0-8160-1194-X.  
  4. ^ Wild Bactrian Camels Critically Endangered, Group Says National Geographic, 3 December 2002
  5. ^ Palmer, D., ed (1999). The Marshall Illustrated Encyclopedia of Dinosaurs and Prehistoric Animals. London: Marshall Editions. pp. 274–277. ISBN 1-84028-152-9.  

External links

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Simple English

Camelid
File:Camel seitlich
A Bactrian Camel walking in the snow
Scientific classification
Kingdom: Animalia
Phylum: Chordata
Class: Mammalia
Order: Artiodactyla
Suborder: Tylopoda
Family: Camelidae
Gray, 1821
File:Camelid locations and
Map of the world showing distribution of camelids. Solid black lines indicate possible migration routes.
Genera

Lama
Vicugna
Camelus

Camelids are a group of even-toed ungulate mammals. They form the family Camelidae. There are six living species of camelids.

Contents

Taxonomy

The animals of the genus Camelus are also called Afro-Asiatic Camelids. The animals of the genus Lama and genus Vicugna are also called South American Camelids.

Hybrid

There also exists a camelid hybrid called a Cama. It is the child of a female Llama and a male Dromedary Camel. The Cama does not exist in nature, but is "made" by humans through artificial insemination (that means the sperm is artificially put into the female).

Habitat

The two Camelus species originally lived in northern Africa, south-west and eastern Asia. The other four camelids lived in South America.

Camelids and humans

Camelids have been domesticated by humans for about 5000 years. They have been important for transport, but were also kept for wool, meat and milk. The llama and alpaca were very important for the South American cultures, like the Inka. The camels were used by people in north Africa and Asia, especially in deserts.

Other websites

Look up Camelidae in Wikispecies, a directory of species
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