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Llama
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For other uses, see Llama (disambiguation).
Not to be confused with Lama.
Llama
Llama lying down.jpg
Conservation status
Domesticated
Scientific classification edit
Kingdom: Animalia
Phylum: Chordata
Class: Mammalia
Order: Artiodactyla
Family: Camelidae
Genus: Lama
Species: L. glama
Binomial name
Lama glama
(Linnaeus, 1758)
Lama glama Vicugna pacos range.png
Domestic llama and alpaca range lama 1 lama
Synonyms
Camelus glama Linnaeus, 1758
The llama (/ˈlɑːmə/; Spanish pronunciation: [ˈʎama lama ) (Lama glama) is a
domesticated South American camelid, widely used as a meat and pack animal
by Andean cultures since the Pre-Columbian era.
The height of a full-grown, full-size llama is 1.7 to 1.8 m (5.6 to 5.9 ft)
tall at the top of the head, and can weigh between 130 and 200 kg (290 and
440 lb). At birth, a baby llama (called a cria) can weigh between 9 and 14
kg (20 and 31 lb). Llamas typically live for 15 to 25 years, with some
individuals surviving 30 years or more. lama 2 lama lama 3 lama lama 4 lama
They are very social animals and live with other llamas as a herd. The wool
produced by a llama is very soft and lanolin-free. Llamas are intelligent
and can learn simple tasks after a few repetitions. When using a pack, they
can carry about 25 to 30% of their body weight for 8 to 13 km (5–8 miles).
lama 5 lama
The name llama (in the past also spelled 'lama' or 'glama') was adopted by
European settlers from native Peruvians. lama 6 lama
Llamas appear to have originated from the central plains of North America
about 40 million years ago. They migrated to South America about three
million years ago during the Great American Interchange. By the end of the
last ice age (10,000–12,000 years ago), camelids were extinct in North
America. lama 5 lama As of 2007, there were over seven million llamas and
alpacas in South America, and due to importation from South America in the
late 20th century, there are now over 158,000 llamas and 100,000 alpacas in
the United States and Canada. lama 7 lama
Contents
1 Classification
2 Characteristics
3 Reproduction
3.1 Mating
3.2 Gestation
3.3 Crias
3.4 Breeding methods
3.5 Pregnancy
4 Nutrition
5 Behavior
5.1 Guard behavior
6 History
6.1 Pre-Incan cultures
6.2 Inca empire
6.3 Spanish empire
7 Fiber
8 See also
9 Notes
10 References
11 External links
Classification
A traditionally dressed Quechua girl with a llama in Cusco, Peru
Lamoids, or llamas (as they are more generally known as a group), consist of
the vicuña (Vicugna vicugna, prev. Lama vicugna), guanaco (Lama guanicoe),
Suri alpaca, and Huacaya alpaca (Vicugna pacos, prev. Lama guanicoe pacos),
and the domestic llama (Lama glama). Guanacos and vicuñas live in the wild,
while alpacas – as well as llamas – exist only as domesticated animals. lama
8 lama Although early writers compared llamas to sheep, their similarity to
the camel was soon recognized. They were included in the genus Camelus along
with alpaca in the Systema Naturae (1758) of Carl Linnaeus. lama 9 lama They
were, however, separated by Georges Cuvier in 1800 under the name of lama
along with the guanaco. lama 10 lama Alpacas and vicuñas are in genus
Vicugna. The genera Lama and Vicugna are, with the two species of true
camels, the sole existing representatives of a very distinct section of the
Artiodactyla or even-toed ungulates, called Tylopoda, or "bump-footed", from
the peculiar bumps on the soles of their feet. The Tylopoda consist of a
single family, the Camelidae, and shares the order Artiodactyla with the
Suina (pigs), the Tragulina (chevrotains), the Pecora (ruminants), and the
Whippomorpha (hippos and cetaceans, which belong to Artiodactyla from a
cladistic, if not traditional, standpoint). The Tylopoda have more or less
affinity to each of the sister taxa, standing in some respects in a middle
position between them, sharing some characteristics from each, but in others
showing special modifications not found in any of the other taxa. lama
citation needed lama
A domestic llama
The 19th-century discoveries of a vast and previously unexpected extinct
Paleogene fauna of North America, as interpreted by paleontologists Joseph
Leidy, Edward Drinker Cope, and Othniel Charles Marsh, aided understanding
of the early history of this family. lama citation needed lama Llamas were
not always confined to South America; abundant llama-like remains were found
in Pleistocene deposits in the Rocky Mountains and in Central America. Some
of the fossil llamas were much larger than current forms. Some species
remained in North America during the last ice ages. North American llamas
are categorized as a single extinct genus, Hemiauchenia. Llama-like animals
would have been a common sight 25,000 years ago, in modern-day California,
Texas, New Mexico, Utah, Missouri, and Florida. lama 11 lama
The camelid lineage has a good fossil record. Camel-like animals have been
traced from the thoroughly differentiated, modern species back through early
Miocene forms. Their characteristics became more general, and they lost
those that distinguished them as camelids; hence, they were classified as
ancestral artiodactyls. lama citation needed lama No fossils of these
earlier forms have been found in the Old World, indicating that North
America was the original home of camelids, and that Old World camels crossed
over via the Bering Land Bridge. The formation of the Isthmus of Panama
three million years ago allowed camelids to spread to South America as part
of the Great American Interchange, where they evolved further. Meanwhile,
North American camelids died out at the end of the Pleistocene. lama 12 lama
Characteristics
The following characteristics apply especially to llamas. Dentition of
adults:-incisors 1/3 canines 1/1, premolars 2/2, molars 3/2; total 32. In
the upper jaw, a compressed, sharp, pointed laniariform incisor near the
hinder edge of the premaxilla is followed in the male at least by a
moderate-sized, pointed, curved true canine in the anterior part of the
maxilla. lama 13 lama The isolated canine-like premolar that follows in the
camels is not present. The teeth of the molar series, which are in contact
with each other, consist of two very small premolars (the first almost
rudimentary) and three broad molars, constructed generally like those of
Camelus. In the lower jaw, the three incisors are long, spatulate, and
procumbent; the outer ones are the smallest. Next to these is a curved,
suberect canine, followed after an interval by an isolated minute and often
deciduous simple conical premolar; then a contiguous series of one premolar
and three molars, which differ from those of Camelus in having a small
accessory column at the anterior outer edge.
Names of llama body parts: 1 ears – 2 poll – 3 withers – 4 back – 5 hip – 6
croup – 7 base of tail – 8 tail – 9 buttock – 10 hock – 11 metatarsal gland
– 12 heel – 13 cannon bone – 14 gaskin – 15 stifle joint – 16 flank – 17
barrel – 18 elbow – 19 pastern – 20 fetlock – 21 Knee – 22 Chest – 23 point
of shoulder – 24 shoulder – 25 throat – 26 cheek or jowl – 27 muzzle
Picture of a Black Llama
The skull generally resembles that of Camelus, the larger brain-cavity and
orbits and less-developed cranial ridges being due to its smaller size. The
nasal bones are shorter and broader, and are joined by the premaxilla.
Vertebrae:
cervical 7,
dorsal 12,
lumbar 7,
sacral 4,
caudal 15 to 20.
The ears are rather long and slightly curved inward, characteristically
known as "banana" shaped. There is no dorsal hump. The feet are narrow, the
toes being more separated than in the camels, each having a distinct plantar
pad. The tail is short, and fibre is long, woolly and soft.
In essential structural characteristics, as well as in general appearance
and habits, all the animals of this genus very closely resemble each other,
so whether they should be considered as belonging to one, two, or more
species is a matter of controversy among naturalists.
The question is complicated by the circumstance of the great majority of
individuals that have come under observation being either in a completely or
partially domesticated state. Many are also descended from ancestors that
have previously been domesticated, a state that tends to produce a certain
amount of variation from the original type. The four forms commonly
distinguished by the inhabitants of South America are recognized as distinct
species, though with difficulties in defining their distinctive
characteristics.
These are:
the llama, Lama glama (Linnaeus);
the alpaca, Vicugna pacos (Linnaeus);
the guanaco (from the Quechua huanaco), Lama guanicoe (Müller); and
the vicuña, Vicugna vicugna (Molina)
The llama and alpaca are only known in the domestic state, and are variable
in size and of many colors, being often white, brown, or piebald. Some are
grey or black. The guanaco and vicuña are wild, the former being endangered,
and of a nearly uniform light-brown color, passing into white below. They
certainly differ from each other, the vicuña being smaller, more slender in
its proportions, and having a shorter head than the guanaco. The vicuña
lives in herds on the bleak and elevated parts of the mountain range
bordering the region of perpetual snow, amidst rocks and precipices,
occurring in various suitable localities throughout Peru, in the southern
part of Ecuador, and as far south as the middle of Bolivia. Its manners very
much resemble those of the chamois of the European Alps; it is as vigilant,
wild, and timid. The fiber is extremely delicate and soft, and highly valued
for the purposes of weaving, but the quantity that each animal produces is
minimal. Alpacas are descended from wild vicuna ancestors, while
domesticated llamas are descended from wild guanaco ancestors, though a
considerable amount of hybridization between the two species has occurred.
Differential characteristics between llamas and alpacas include the llama's
larger size, longer head, and curved ears. Alpaca fiber is generally more
expensive, but not always more valuable. Alpacas tend to have a more
consistent color throughout the body. The most apparent visual difference
between llamas and camels is that camels have a hump or humps and llamas do
not.
Llamas are not ruminants, pseudo-ruminants, or modified ruminants. lama 14
lama They have a complex stomach with several compartments that allows them
to consume lower quality, high cellulose foods. The stomach compartments
allow for fermentation of tough food stuffs, followed by regurgitation and
re-chewing. Ruminants have four compartments (cows, sheep, goats), whereas
llamas have only three stomach compartments: the rumen, omasum, and abomasum.
In addition, the llama (and other camelids) have an extremely long and
complex large intestine (colon). The large intestine's role in digestion is
to reabsorb water, vitamins and electrolytes from food waste that is passing
through it. The length of the llama's colon allows it to survive on much
less water than other animals. This is a major advantage in arid climates
where they live. lama 15 lama
Reproduction
Dam and her cria
Llamas have an unusual reproductive cycle for a large animal. Female llamas
are induced ovulators. lama 16 lama Through the act of mating, the female
releases an egg and is often fertilized on the first attempt. Female llamas
do not go into estrus ("heat"). lama 17 lama
Like humans, llama males and females mature sexually at different rates.
Females reach puberty at about 12 months old; males do not become sexually
mature until around three years of age. lama 18 lama
Mating
Llamas mate with the female in a kush (lying down) position, which is fairly
unusual in a large animal. They mate for an extended time (20–45 minutes),
also unusual in a large animal. lama 19 lama
Gestation
The gestation period of a llama is 11.5 months (350 days). Dams (female
llamas) do not lick off their babies, as they have an attached tongue that
does not reach outside of the mouth more than half an inch (1.3 cm). Rather,
they will nuzzle and hum to their newborns. lama 20 lama
Crias
A cria (from Spanish for "baby") is the name for a baby llama, alpaca,
vicuña, or guanaco. Crias are typically born with all the females of the
herd gathering around, in an attempt to protect against the male llamas and
potential predators. Llamas give birth standing. Birth is usually quick and
problem-free, over in less than 30 minutes. Most births take place between 8
am and noon, during the warmer daylight hours. This may increase cria
survival by reducing fatalities due to hypothermia during cold Andean
nights. This birthing pattern is speculated to be a continuation of the
birthing patterns observed in the wild. Crias are up and standing, walking
and attempting to suckle within the first hour after birth. lama 21 lama
lama 22 lama lama 23 lama Crias are partially fed with llama milk that is
lower in fat and salt and higher in phosphorus and calcium than cow or goat
milk. A female llama will only produce about 60 ml (2.1 imp fl oz) of milk
at a time when she gives milk, so the cria must suckle frequently to receive
the nutrients it requires. lama 24 lama
Breeding methods
In harem mating, the male is left with females most of the year.
For field mating, a female is turned out into a field with a male llama and
left there for some period of time. This is the easiest method in terms of
labor, but the least useful in terms of prediction of a likely birth date.
An ultrasound test can be performed, and together with the exposure dates, a
better idea of when the cria is expected can be determined.
Hand mating is the most efficient method, but requires the most work on the
part of the human involved. A male and female llama are put into the same
pen and mating is monitored. They are then separated and remated every other
day until one or the other refuses the mating. Usually, one can get in two
matings using this method, though some stud males routinely refuse to mate a
female more than once. The separation presumably helps to keep the sperm
count high for each mating and also helps to keep the condition of the
female llama's reproductive tract more sound. If the mating is not
successful within two to three weeks, the female is mated again.
Pregnancy
Llamas at San Pedro de Atacama, Chile
This section contains instructions, advice, or how-to content. The purpose
of Wikipedia is to present facts, not to train. Please help improve this
article either by rewriting the how-to content or by moving it to
Wikiversity, Wikibooks or Wikivoyage. (December 2016)
Llamas should be tested for pregnancy after mating at two to three, six and
at least 12 weeks.
For "spit" testing, bring the potentially pregnant dam to an intact male. If
the stud attempts to mate with her and she lies down for him within a fairly
short period of time, she is not pregnant. If she remains on her feet,
spits, attacks him, or otherwise prevents his being able to mate, it is
assumed she is probably pregnant. This test gets its name due to the dam
spitting at the male if she is pregnant.
For progesterone testing, a veterinarian can test a blood sample for
progesterone. A high level can indicate a pregnancy.
With palpation, the veterinarian or breeder manually feels inside the llama
to detect a pregnancy. Some risks to the llama exist, but it can be an
accurate method for pregnancy detection.
Ultrasound is the most accurate method for an experienced veterinarian, who
can do an exterior examination and detect a fetus as early as 45 days.
Spit testing with an intact male is generally free and is usually accurate.
However, some hormonal conditions in females can make them reject a male
when they are in fact not pregnant, and, more rarely, accept a male when
they are pregnant. Progesterone tests can give a high reading in some
females with a hormonal problem that are in fact not pregnant. Neither of
the previous methods, nor palpation, can give a reasonably accurate idea of
the age of the fetus, while an ultrasound procedure can. In addition, an
ultrasound procedure can distinguish between pregnancy and misleading
physical conditions, or between a live and dead fetus. The disadvantages of
an ultrasound procedure are cost, some training in the use of ultrasound
equipment is required, and not all veterinarians have the equipment needed
to perform the examination.
Nutrition
Options for feeding llamas are quite wide; a wide variety of commercial and
farm-based feeds are available. The major determining factors include feed
cost, availability, nutrient balance and energy density required. Young,
actively growing llamas require a greater concentration of nutrients than
mature animals because of their smaller digestive tract capacities. lama 25
lama
Estimated daily requirements lama clarification needed (what units?) lama of
bromgrass hay, alfalfa hay and corn silage on an as-fed and 100% dry matter
basis for llamas from 22 to 550 pounds. lama 26 lama
Body weight
(lb) Bromgrass Alfalfa Corn silage
(as fed) (dry matter) (as fed) (dry matter) (as fed) (dry matter)
22 0.8 0.7 0.5 0.5 1.5 0.4
44 1.3 1.1 0.9 0.8 2.6 0.7
88 2.1 1.9 1.5 1.3 4.3 1.2
110 2.6 2.3 1.7 1.6 5.2 1.4
165 3.4 3.1 2.3 2.1 6.9 1.9
275 5.0 4.5 3.4 3.1 10.1 2.8
385 6.4 5.7 4.3 3.9 12.9 3.6
495 7.8 7.0 5.3 4.8 15.8 4.4
550 8.5 7.6 5.7 5.2 17.0 4.8
Behavior
A pack llama in the Rocky Mountain National Park
Llamas, which are well-socialized and trained to halter and lead after
weaning, are very friendly and pleasant to be around. They are extremely
curious and most will approach people easily. However, llamas that are
bottle-fed or over-socialized and over-handled as youth will become
extremely difficult to handle when mature, when they will begin to treat
humans as they treat each other, which is characterized by bouts of
spitting, kicking and neck wrestling. lama 27 lama
When correctly reared, llamas spitting at a human is a rare thing. Llamas
are very social herd animals, however, and do sometimes spit at each other
as a way of disciplining lower-ranked llamas in the herd. A llama's social
rank in a herd is never static. They can always move up or down in the
social ladder by picking small fights. This is usually done between males to
see which will become dominant. Their fights are visually dramatic, with
spitting, ramming each other with their chests, neck wrestling and kicking,
mainly to knock the other off balance. The females are usually only seen
spitting as a means of controlling other herd members.
While the social structure might always be changing, they live as a family
and they do take care of each other. If one notices a strange noise or feels
threatened, a warning bray is sent out and all others become alert. They
will often hum to each other as a form of communication.
The sound of the llama making groaning noises or going "mwa" (/mwaʰ/) is
often a sign of fear or anger. If a llama is agitated, it will lay its ears
back. One may determine how agitated the llama is by the materials in the
spit. The more irritated the llama is, the further back into each of the
three stomach compartments it will try to draw materials from for its spit.
An "orgle" is the mating sound of a llama or alpaca, made by the sexually
aroused male. The sound is reminiscent of gargling, but with a more
forceful, buzzing edge. Males begin the sound when they become aroused and
continue throughout the act of procreation – from 15 minutes to more than an
hour. lama 28 lama lama 29 lama
Guard behavior
Main article: Guard llama
Llama guarding sheep on the South Downs in West Sussex
Using llamas as livestock guards in North America began in the early 1980s,
and some sheep producers have used llamas successfully since then. lama 30
lama lama 31 lama They are used most commonly in the western regions of the
United States, where larger predators, such as coyotes and feral dogs, are
prevalent. Typically, a single gelding (castrated male) is used.
Research suggests the use of multiple guard llamas is not as effective as
one. Multiple males tend to bond with one another, rather than with the
livestock, and may ignore the flock. A gelded male of two years of age bonds
closely with its new charges and is instinctively very effective in
preventing predation. Some llamas appear to bond more quickly to sheep or
goats if they are introduced just prior to lambing. Many sheep and goat
producers indicate a special bond quickly develops between lambs and their
guard llama and the llama is particularly protective of the lambs.
Using llamas as guards has reduced the losses to predators for many
producers. The value of the livestock saved each year more than exceeds the
purchase cost and annual maintenance of a llama. Although not every llama is
suited to the job, most are a viable, nonlethal alternative for reducing
predation, requiring no training and little care. lama 32 lama lama better
source needed lama
History
Moche 100–300 AD at Lombards Museum
This sculpture, originating from the Chancay Valley and adjacent Chillón
Drainage region (Late Intermediate Period), captures the llama's natural
inquisitiveness. lama 33 lama The Walters Art Museum.
Pre-Incan cultures
Scholar Alex Chepstow-Lusty has argued that the switch from a
hunter-gatherer lifestyle to widespread agriculture was only possible
because of the use of llama dung as fertilizer. lama 34 lama
The Moche people frequently placed llamas and llama parts in the burials of
important people, as offerings or provisions for the afterlife. lama 35 lama
The Moche culture of pre-Columbian Peru depicted llamas quite realistically
in their ceramics.
Inca empire
In the Inca empire, llamas were the only beasts of burden, and many of the
people dominated by the Inca had long traditions of llama herding. For the
Inca nobility, the llama was of symbolic significance, and llama figures
were often buried with the dead. lama 36 lama In South America, llamas are
still used as beasts of burden, as well as for the production of fiber and
meat. lama 37 lama
The Inca deity Urcuchillay was depicted in the form of a multicolored llama.
lama 38 lama
Carl Troll has argued that the large numbers of llamas found in the southern
Peruvian highlands were an important factor in the rise of the Inca Empire.
lama 39 lama It is worth considering the maximum extent of the Inca Empire
roughly coincided with the greatest distribution of alpacas and llamas in
Pre-Hispanic America. lama 40 lama The link between the Andean biomes of
puna and páramo, llama pastoralism and the Inca state is a matter of
research. lama 41 lama
Spanish empire
The first image of llamas in Europe, 1553
One of the main uses for llamas at the time of the Spanish conquest was to
bring down ore from the mines in the mountains. lama 42 lama Gregory de
Bolivar estimated that in his day, as many as 300,000 were employed in the
transport of produce from the Potosí mines alone, but since the introduction
of horses, mules, and donkeys, the importance of the llama as a beast of
burden has greatly diminished. lama 43 lama
According to Juan Ignacio Molina, the Dutch captain Joris van Spilbergen
observed the use of hueques (possibly a llama type) by native Mapuches of
Mocha Island as plow animals in 1614. lama 44 lama
In Chile hueque populations declined towards extinction in the 16th and 17th
century being replaced by European livestock. lama 45 lama The causes of its
extinction are not clear lama 45 lama but it is known that the introduction
of sheep caused some competition among both domestic species. lama 46 lama
Anecdotal evidence of the mid-17th century show that both species coexisted
but suggests that there were many more sheep than hueques. lama 46 lama The
decline of hueques reached a point in the late 18th century when only the
Mapuche from Mariquina and Huequén next to Angol raised the animal. lama 46
lama
Fiber
Llamas have a fine undercoat, which can be used for handicrafts and
garments. The coarser outer guard hair is used for rugs, wall-hangings and
lead ropes. The fiber comes in many different colors ranging from white or
grey to reddish-brown, brown, dark brown and black.
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