dcsimg

Lifespan, longevity, and ageing

provided by AnAge articles
Maximum longevity: 20.8 years (captivity) Observations: These animals can live up to 20.8 years in zoos (Richard Weigl 2005).
license
cc-by-3.0
copyright
Joao Pedro de Magalhaes
editor
de Magalhaes, J. P.
partner site
AnAge articles

Behavior

provided by Animal Diversity Web

Axis deer have several vocalizations besides the bellowing that occurs during the mating season. They have a bark that is used during times of alarm or when an unusual object has been observed. This usually occurs among females and juveniles and is repeated back and forth. Another kind is squealing which is used by fawns when they get separated from their mothers. Moaning is associated with males during aggressive displays or when resting (Ables, 1977).

Communication Channels: visual ; tactile ; acoustic ; chemical

Perception Channels: visual ; tactile ; acoustic ; chemical

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Conservation Status

provided by Animal Diversity Web

The axis deer has been introduced into Texas and Hawaii with good results. They do very well in captivity and can be seen at Zoos in the United States. Most are on private lands in the U.S., however, some are free-ranging.

US Federal List: no special status

CITES: no special status

IUCN Red List of Threatened Species: least concern

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Benefits

provided by Animal Diversity Web

Axis deer have become an important resource for hunting in the United States.

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Trophic Strategy

provided by Animal Diversity Web

The main foods utilized by these deer are grasses as well as flowers and fruits which fall from the forest trees. They will occasionally browse when it is necessary. During the monsoon season, grass and sedge species in a sal forest are an important food source. Another source of nutrition may come from mushrooms which are high in proteins and nutrients and are also found in sal forests (Moe and Wegge, 1994).

Plant Foods: leaves; wood, bark, or stems; fruit

Primary Diet: herbivore (Folivore )

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Distribution

provided by Animal Diversity Web

The axis deer occurs historically in India and Ceylon. They have been introduced to Texas and Hawaii.

Biogeographic Regions: nearctic (Introduced ); oriental (Native )

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Habitat

provided by Animal Diversity Web

In their native lands, the deer occupy grasslands and very rarely move into areas of dense jungle that may occur adjacent to them. Short grasslands are an important area for them due to a lack of cover for predators such as the tiger (Moe and Wegge, 1994). Riverine forests within the Bardia National Park in lowland Nepal are highly utilized by the deer for shade and cover during the dry season. The forest also provides good foraging with regard to fallen fruit and leaves that are high in nutrients needed by the deer. Therefore, the deer require open areas as well as forested areas within their home ranges for optimum habitat. Their total range incorporates a core area of about 32 hectares(ha) surrounded by foraging and cover areas of about 140 ha for females and 195 ha for males (Moe and Wegge, 1994). Some variation in range size occurs depending on the season as well as the sex.

Habitat Regions: tropical ; terrestrial

Terrestrial Biomes: savanna or grassland

Other Habitat Features: riparian

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Life Expectancy

provided by Animal Diversity Web

Average lifespan
Status: captivity:
15.0 years.

Average lifespan
Status: captivity:
20.8 years.

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Morphology

provided by Animal Diversity Web

The Axis deer stands 0.6 to 1 m tall at the shoulder and has a body length of about 1.5 m (Walker, 1964). The body color is reddish with white on the belly, inner legs, and underneath their short tail. The males tend to be darker and to have black facial markings. They also have antlers composed of three tines which can reach lengths of almost a meter. Characteristic white spots occur in both sexes and run longitudinally in rows throughout the duration of the animal's life (Ables,1977). A dark dorsal stripe runs the length of the animal's back.

Range mass: 27 to 45 kg.

Other Physical Features: endothermic ; homoiothermic; bilateral symmetry

Sexual Dimorphism: sexes colored or patterned differently; ornamentation

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Reproduction

provided by Animal Diversity Web

Males tend to bellow during the mating season which may be a good indicator of when breeding begins.

Axis deer breed in April or May and have a gestation of about 7.5 months. They usually have two fawns but one or three is not uncommon(Walker, 1964). The number of fawns produced as well as the mating season may vary for deer in captivity; only one fawn is usually produced and mating may take place from May to August (Ables, 1977). First pregnancies usually occur between the ages of 14 to 17 months. The female usually maintains nursing until the fawn can safely roam with the herd (Walker, 1964).

Breeding interval: Axis deer breed once yearly.

Breeding season: Breeding occurs in April and May.

Range number of offspring: 1 to 3.

Average gestation period: 7.5 months.

Range age at sexual or reproductive maturity (female): 14 to 17 months.

Key Reproductive Features: iteroparous ; seasonal breeding ; gonochoric/gonochoristic/dioecious (sexes separate); sexual ; fertilization (Internal ); viviparous

Average birth mass: 3144 g.

Average gestation period: 226 days.

Average number of offspring: 1.03.

Average age at sexual or reproductive maturity (male)
Sex: male:
913 days.

license
cc-by-nc-sa-3.0
copyright
The Regents of the University of Michigan and its licensors
bibliographic citation
Lundrigan, B. and C. Gardner 2000. "Axis axis" (On-line), Animal Diversity Web. Accessed April 27, 2013 at http://animaldiversity.ummz.umich.edu/site/accounts/information/Axis_axis.html
editor
Barbara Lundrigan, Michigan State University
author
Carry Gardner, Michigan State University
original
visit source
partner site
Animal Diversity Web

Brief Summary

provided by EOL authors

Chital (Axis axis) are native to India, southern Nepal, southern Bhutan, Bangladesh, and Sri Lanka. They have been introduced and established in Europe (Croatia, Ukraine, Moldova), Armenia, the Andaman Islands, New Guinea, Australia, the United States (California, Texas, and Hawaii), Brazil, Uruguay, and Argentina.

These medium-sized deer are heavily spotted year-round. Chital head and body length is around 150 to 155 cm for males (bucks) and 140 to 145 cm for females (does). Tail length is around 25 to 30 cm. Shoulder height is around 85 to 95 cm for bucks and 70 to 80 cm for does. Adult bucks are 70 to 85 kg (up to 110 kg) and adult does are 45 to 60 kg (up to 70 kg). Males have a dark chevron over the face and an elongated penis sheath. Adult males have long three-tined antlers.

Chital prefer moist and dry forest areas adjacent to scrubland or grassland, but are also found in swampy meadows close to forests, in riparian forests, and in teak plantations. They eat mainly grasses, but also forbs, leaves, flowers, and fruits. In the Sundarbans mangrove forest (Bangladesh) they are know to feed on crabs as well.

In their native range, Chital tend to use more wooded habitats during the cool-dry season and early summer (November to May), where they find browse and fruit, and use more open grasslands when the monsoon rains bring a flush of plant growth.

Female Chital reach sexual maturity at around a year, males several months later. Mating may occur throughout the year, with a higher frequency from March to July. After a gestation period of around 231 to 235 days, a single fawn is born. Weaning occurs at 5 to 6 months. The maximum known age in captivity is 21 years. The major predators of Chital in their native range are Tigers (Panthera tigris), Leopards (Panthera pardus), and Dholes (Cuon alpinus).

Chital are mainly active around dawn and dusk, with two main resting periods, one before dawn and the other at midday. Males have home ranges of around 200 to 350 ha, females around 150 to 250 ha. The basic social unit is the family group, consisting of a mother, her fawn, and the offspring of the previous year. Two or three families may form temporary, fluid herds of 6 to 12 animals, often accompanied by subadult males and visted by adult bucks. In some situations, where there is a concentration of food or water, aggregations of 150 to 200 individuals can occur.

Chital populations appear to be secure.

(Mattioli 2011 and references therein)

license
cc-by-3.0
copyright
Leo Shapiro
original
visit source
partner site
EOL authors

Comprehensive Description

provided by Smithsonian Contributions to Zoology
Axis deer (Axis axis)

As outlined in a previous publication (Eisenberg, Santiapillai, and Lockhart 1970), visual counts were correlated with pellet-count techniques utilizing the study plots. On the basis of our counts, we assume that the average density of deer at major villus was in the neighborhood of 115 animals per square mile or 68 axis per square kilometer. Since the axis are dependent on permanent water sources and since there are 8 major villus each supporting up to 100 deer and 14 minor villus retaining permanent water each of which may support up to 20 deer, then some 1,080 axis deer are associated with the major permanent villus in the national park itself. Considering riverine habitats, if we assume that at best density there may be 150 deer per square mile or 57.9 deer per square kilometer, and if we further calculate the density of deer based on a 38.8 square kilometer area along the river system within the national park or bounding the park, then some 2,240 deer may be considered to be in association with the bounding rivers and their tributaries. This would mean that approximately 3,320 animals comprise the axis population for the area included within the old national park boundaries. We settled on a figure of 3,500 as a safe estimate for the axis deer population.

The Sambar (Cervus unicolor)

Feces counts on the study plots indicate deposition by sambar equal to 10-15 percent that of axis. If we assume an equal defecation rate for axis and sambar and equal habitat utilization, then the population of sambar may lie between 350 and 525. We know, however, that sambar graze less in the open and when they do $$$ in open country it is generally at night. Hence, there is less than half the opportunity to drop feces in open parkland than is the case for axis. Therefore, there could be twice as many sambar or up to 700. Our known count, based on the monthly census, for approximately 190 square kilometers is 170 sambar or slightly less than 0.9 sambar per square kilometer. If we extrapolate for the 580 square kilometer area taken as the base for our census area, then roughly 520 sambar may be present. The riverine population, however, may be higher and, once again, we are faced with considering up to 700 sambar as a maximum for the park itself; hence, in the presentation of our crude density and crude biomass data, we have set 700 as a maximum and 400 as a minimum.
license
cc-by-nc-sa-3.0
bibliographic citation
Eisenberg, John F. and Lockhart, Melvyn. 1972. "An ecological reconnaissance of Wilpattu National Park, Ceylon." Smithsonian Contributions to Zoology. 1-118. https://doi.org/10.5479/si.00810282.101

Chital

provided by wikipedia EN

The chital or cheetal (Axis axis; /təl/), also known as the spotted deer, chital deer and axis deer, is a deer species native to the Indian subcontinent. It was first described and given a binomial name by German naturalist Johann Christian Polycarp Erxleben in 1777. A moderate-sized deer, male chital reach 90 cm (35 in) and females 70 cm (28 in) at the shoulder. While males weigh 70–90 kg (150–200 lb), females weigh around 40–60 kg (88–132 lb). It is sexually dimorphic; males are larger than females, and antlers are present only on males. The upper parts are golden to rufous, completely covered in white spots. The abdomen, rump, throat, insides of legs, ears, and tail are all white. The antlers, three-pronged, are nearly 1 m (3 ft 3 in) long.

Etymology

The vernacular name "chital" (pronounced /təl/)[5] comes from cītal (Hindi: चीतल), derived from the Sanskrit word citrala (चित्रल), meaning "variegated" or "spotted".[6] The name of the cheetah has a similar origin.[7] Variations of "chital" include "cheetal" and "cheetul".[8] Other common names for the chital are Indian spotted deer (or simply the spotted deer) and axis deer.[2]

Taxonomy and phylogeny

The chital was first described by Johann Christian Polycarp Erxleben in 1777 as Cervus axis.[9] In 1827, Charles Hamilton Smith placed the chital in its own subgenus Axis under the genus Cervus.[10][4] Axis was elevated to generic status by Colin P. Groves and Peter Grubb in 1987.[11] The genus Hyelaphus was considered a subgenus of Axis.[3] However, a morphological analysis showed significant differences between Axis and Hyelaphus.[12] A phylogenetic study later that year showed that Hyelaphus is closer to the genus Rusa than Axis. Axis was revealed to be paraphyletic and distant from Hyelaphus in the phylogenetic tree; the chital was found to form a clade with the barasingha (Rucervus duvaucelii) and the Schomburgk's deer (Rucervus schomburgki). The chital was estimated to have genetically diverged from the Rucervus lineage in the Early Pliocene about 5 million years ago. The following cladogram is based on a 2006 phylogenetic study:[13]

Cervus, fallow deer (Dama dama), Père David's deer (Elaphurus davidianus) and Rusa

Rucervus

Barasinga

Schomburgk's deer

Axis

Chital

Indian hog deer (A. porcinus)

Muntjacs (Muntiacus)

Fossils of extinct Axis species dating to the early to Middle Pliocene were excavated from Iran in the west to Indochina in the east.[14] Remains of the chital were found in the Middle Pleistocene deposits of Thailand along with sun bear, Stegodon, gaur, wild water buffalo and other living and extinct mammals.[1]

Description

Male in velvet, Kanha National Park

The chital is a moderately sized deer. Males reach up to 90–100 cm (35–39 in) and females 65–75 cm (26–30 in) at the shoulder; the head-and-body length is around 1.7 m (5 ft 7 in). While immature males weigh 30–75 kg (66–165 lb), the lighter females weigh 25–45 kg (55–99 lb). Mature stags can weigh up to 98–110 kg (216–243 lb).[15]

The tail, 20 cm (7.9 in) long, is marked by a dark stripe that stretches along its length. The species is sexually dimorphic; males are larger than females, and antlers are present only on males.[16]

The dorsal (upper) parts are golden to rufous, completely covered in white spots. The abdomen, rump, throat, insides of legs, ears, and tail are all white.[16] A conspicuous black stripe runs along the spine (back bone).[17] The chital has well-developed preorbital glands (near the eyes) with stiff hairs.[18] It also has well-developed metatarsal glands and pedal glands located in its hind legs. The preorbital glands, larger in males than in females, are frequently opened in response to certain stimuli.[19][20]

Each of the antlers has three lines on it. The brow tine (the first division in the antler) is roughly perpendicular to the beam (the central stalk of the antler).[16] The antlers, three-pronged, are nearly 1 m (3 ft 3 in) long.[21] Antlers, as in most other cervids, are shed annually. The antlers emerge as soft tissues (known as velvet antlers) and progressively harden into bony structures (known as hard antlers), following mineralisation and blockage of blood vessels in the tissue, from the tip to the base.[22][23] A study of the mineral composition of the antlers of captive barasinga, chital, and hog deer showed that the antlers of the deer are very similar. The mineral content of the chital's antlers was determined to be (per kg) 6.1 mg (0.094 gr) copper, 8.04 mg (0.1241 gr) cobalt, and 32.14 mg (0.4960 gr) zinc.[24]

Hooves measure between 4.1 and 6.1 cm (1.6 and 2.4 in) in length; hooves of the fore legs are longer than those of the hind legs. The toes taper to a point.[15] The dental formula is 0.1.3.33.1.3.3, same as the elk.[16] The milk canine, nearly 1 cm (0.39 in) long, falls off before one year of age, but is not replaced by a permanent tooth as in other cervids.[18] Compared to the hog deer, the chital has a more cursorial build. The antlers and brow tines are longer than those in the hog deer. The pedicles (the bony cores from which antlers arise) are shorter, and the auditory bullae are smaller in the chital.[18] The chital may be confused with the fallow deer. Chital have several white spots, whereas fallow deer usually have white splotches. Fallow also have palmate antlers whereas chital have 3 distinct points on each side. The chital has a prominent white patch on its throat, while the throat of the fallow deer is completely white. The biggest distinction is the dark brown stripe running down the chital's back.[25] The hairs are smooth and flexible.[15]

Distribution and habitat

The chital ranges over 8–30°N in India and through Nepal, Bhutan, Bangladesh, and Sri Lanka.[4] The western limit of its range is eastern Rajasthan and Gujarat. The northern limit is along the Terai belt of the foothills of the Himalaya and from Uttar Pradesh and Uttaranchal through to Nepal, northern West Bengal and Sikkim and then to western Assam and the forested valleys of Bhutan, which are below an elevation of 1,100 m (3,600 ft).[2] The eastern limit of its range is through western Assam[26][27] to the Sunderbans of West Bengal and Bangladesh.[2] Andaman and Nicobar Islands and Sri Lanka are the southern limits.[28] Chital occur sporadically in the forested areas throughout the rest of the Indian peninsula.[29] Within Bangladesh, it currently only exists in the Sundarbans and some ecoparks situated around the Bay of Bengal, as it became extinct in the central and north-east of the country.[2]

Australia

The chital was the first species of deer introduced into Australia in the early 1800s by John Harris, surgeon to the New South Wales Corps, and he had about 400 of these animals on his property by 1813. These did not survive, and the primary range of the chital is now confined to a few cattle stations in North Queensland near Charters Towers and several feral herds on the NSW north and south coasts. While some of the stock originated from Sri Lanka (Ceylon), the Indian race likely is also represented.[30][31]

The United States

In the 1860s, axis deer were introduced to the island of Molokai, Hawaii, as a gift from Hong Kong to King Kamehameha V. The deer were introduced to Lanai, another of the Hawaiian Islands, soon afterward and are now plentiful on both islands. The deer were introduced to Maui island in the 1950s to increase hunting opportunities. Because the deer have no natural predators on the Hawaiian islands, their population is growing 20 to 30% each year, causing serious damage to agriculture and natural areas.[32]

Releasing them on the island of Hawaii was planned, as well, but this was abandoned after pressure from scientists over damage to landscapes caused by the deer on other islands. In 2012, deer were spotted on the island of Hawaii; wildlife officials believe people had flown the deer by helicopter and transported them by boat onto the island. In August 2012, a helicopter pilot pleaded guilty to transporting four axis deer from Maui to Hawaii.[33] Hawaiian law now prohibits "the intentional possession or interisland transportation or release of wild or feral deer."[34]

In 1932, axis deer were introduced to Texas. In 1988, self-sustaining herds were found in 27 counties, located in Central and South Texas.[35] The deer are most populous on the Edwards Plateau, where the land is similar to that of India.[36]

Croatia

Chital of unknown origin were introduced to the islands of Brijuni in 1911. They also live on Rab Island. The population on the islands comprised about 200 individuals as of 2010. Attempts by hunters to introduce the species to the mainland of Croatia were unsuccessful.[37]

Behaviour and ecology

Male feeding in Nagarhole
Female running in Mudumalai

Chital are active throughout the day. In the summer, time is spent in rest under shade, and the sun's glare is avoided if the temperature reaches 80 °F (27 °C); activity peaks as dusk approaches. As days grow cooler, foraging begins before sunrise and peaks by early morning. Activity slows down during midday, when the animals rest or loiter about slowly. Foraging recommences by late afternoon and continues till midnight. They fall asleep a few hours before sunrise, typically in the forest which is cooler than the glades.[28] These deer typically move in a single file on specific tracks, with a distance of two to three times their width between them, when on a journey, typically in search of food and water sources.[16] A study in the Gir National Park (Gujarat, India) showed that chital travel the most in summer of all seasons.[38]

When cautiously inspecting its vicinity, the chital stands motionless and listens with rapt attention, facing the potential danger, if any. This stance may be adopted by nearby individuals, as well. As an antipredator measure, chital flee in groups (unlike the hog deer that disperse on alarm); sprints are often followed by hiding in dense undergrowth. The running chital has its tail raised, exposing the white underparts.[28] The chital can leap and clear fences as high as 1.5 m (4.9 ft) but prefers to dive under them. It stays within 300 m (980 ft) of cover.[18]

A gregarious animal, the chital forms matriarchal herds comprising an adult female and her offspring of the previous and the present year, which may be associated with individuals of any age and either sex, male herds, and herds of juveniles and mothers.[21][39] Small herds are common, though aggregations of as many as 100 individuals have been observed.[16] Groups are loose and disband frequently, save for the juvenile-mother herd.[40] Herd membership in Texas is typically up to 15;[21] herds can have five to 40 members in India.[28][41] Studies in the Nallamala Hills (Andhra Pradesh, India) and the Western Ghats (western coast of India) showed seasonal variation in the sex ratio of herds; this was attributed to the tendency of females to isolate themselves ahead of parturition. Similarly, rutting males leave their herds during the mating season, hence altering the herd composition.[39] Large herds are most common in monsoon, observed foraging in the grasslands.[41]

Predators of chitals include Indian wolves, Bengal tigers, Asiatic lions, leopards, pythons, dholes, Indian pariah dogs, bears, and crocodiles. Fishing cats, jungle cats, foxes, golden jackals and eagles target juveniles. Males are less vulnerable than females and juveniles.[18][28]

A vocal animal, the chital, akin to the North American elk, gives out bellows and alarm barks.[16] Its calls are, however, not as strong as those of elk or red deer; they are mainly coarse bellows or loud growls.[18] Bellowing coincides with rutting.[28][42] Dominant males guarding females in oestrus make high-pitched growls at less powerful males.[18] Males may moan during aggressive displays or while resting.[21] Chital, mainly females and juveniles, bark persistently when alarmed or if they encounter a predator. Fawns in search of their mother often squeal. The chital can respond to the alarm calls of several animals, such as the common myna and langurs.[18]

Marking behaviour is pronounced in males. Males have well-developed preorbital glands (near the eyes). They stand on their hind legs to reach tall branches and rub the open preorbital glands to deposit their scent there. This posture is also used while foraging. Urine marking is also observed; the smell of urine is typically stronger than that of the deposited scent. Sparring between males begins with the larger male displaying his dominance before the other; this display consists of hissing heading away from the other male with the tail facing him, the nose pointing to the ground, the ears down, the antlers upright, and the upper lip raised. The fur often bristles during the display. The male approaches the other in a slow gait. Males with velvet antlers may hunch over instead of standing erect as the males with hard antlers. The opponents then interlock their horns and push against each other, with the smaller male producing a sound at times which is louder than that produced by sambar deer, but not as much as the barasinga's. The fight terminates with the males stepping backward, or simply leaving and foraging.[18] Fights are not generally serious.[28]

Individuals may occasionally bite one another.[18] Common mynas are often attracted to the chital.[15] An interesting relationship has been observed between herds of chital and troops of the northern plains grey langurs, a widespread South Asian monkey. Chital benefit from the langurs' eyesight and ability to post a lookout from trees, while the langur benefit from the chital's strong sense of smell, both of which help keep a check on potential danger.[28] The chital also benefit from fruits dropped by langurs from trees such as Terminalia bellirica and Phyllanthus emblica.[43][44] The chital has been observed foraging with sambar deer in the Western Ghats.[39]

Diet

Chital graze when grasses are available, else they browse.

Grazers as well as browsers, the chital mainly feed on grasses throughout the year. They prefer young shoots, in the absence of which, tall and coarse grasses are nibbled off at the tips. Browse forms a major portion of the diet only in the winter-October to January-when the grasses, tall or dried up, are no longer palatable. Browse includes herbs, shrubs, foliage, fruits, and forbs; Moghania species are often preferred while browsing. Fruits eaten by chital in the Kanha National Park (Madhya Pradesh, India) include those of Ficus species from January to May, Cordia myxa from May to June, and Syzygium cumini from June to July. Individuals tend to group together and forage while moving slowly.[28] Chital are generally silent when grazing together. Males often stand on their hindlegs to reach tall branches. Water holes are visited nearly twice daily, with great caution.[18] In the Kanha National Park, mineral licks rich in calcium and phosphorus pentoxide were scraped at by the incisors. Chital also gnaw bones and fallen antlers for their minerals. Males in velvet indulge in such osteophagia to a greater extent.[45] Chital in the Sunderbans may be omnivores; remains of red crabs have been found in the rumen of individuals.[28]

Reproduction

Chital bucks sparring
Female with newborn

Breeding takes place throughout the year, with peaks that vary geographically. Sperm is produced year-round, though testosterone levels register a fall during the development of the antlers. Females have regular oestrus cycles, each lasting three weeks. The female can conceive again two weeks to four months after the birth. Males sporting hard antlers are dominant over those in velvet or those without antlers, irrespective of their size. Courtship is based on tending bonds. A rutting male fasts during the mating season and follows and guards a female in oestrus. The pair does several bouts of chasing and mutual licking before copulation.[18]

The newborn is hidden for a week after birth, a period much shorter than most other deer. The mother-fawn bond is not very strong, as the two get separated often, though they can reunite easily as the herds are cohesive. If the fawn dies, the mother can breed once again so as to give birth twice that year. The males continue their growth till seven to eight years. The average lifespan in captivity is nearly 22 years. The longevity in the wild, however, is merely five to ten years.[18][28]

The chital is found in large numbers in dense deciduous or semievergreen forests and open grasslands.[28] The highest numbers of chital are found in the forests of India, where they feed upon tall grass and shrubs. Chital have been also spotted in Phibsoo Wildlife Sanctuary in Bhutan, which has the only remaining natural sal (Shorea robusta) forest in the country. They do not occur at high altitudes, where they are usually replaced by other species such as the sambar deer. They also prefer heavy forest cover for shade and avoid direct sunlight.[18]

Conservation status

The chital is listed on the IUCN Red List as least concern "because it occurs over a very wide range within which there are many large populations".[2] Currently, no range-wide threats to chitals are present, and they live in many protected areas. However, population densities are below ecological carrying capacity in many places due to hunting and competition with domestic livestock. Hunting for the deer's meat has caused substantial declines and local extinctions.[2] The axis deer is protected under Schedule III of the Indian Wildlife Protection Act (1972)[29] and under the Wildlife (Preservation) (Amendment) Act, 1974 of Bangladesh.[2] Two primary reasons for its good conservation status are its legal protection as a species and a network of functioning protected areas.[2]

The chital has been introduced to the Andaman Islands, Argentina, Australia, Brazil, Chile, Mexico, Paraguay, Uruguay, Alabama, Point Reyes National Seashore in California, Florida, Hawaii, Mississippi, and Texas in the United States, and the Veliki Brijun Island in the Brijuni Archipelago of the Istrian Peninsula in Croatia.[2][46][47]

With effect from 2 August 2022, the European Union added the chital to the list of invasive alien species and banned its import into the EU.[48]

See also

References

  1. ^ a b K. Suraprasit, J.-J. Jaegar, Y. Chaimanee, O. Chavasseau, C. Yamee, P. Tian, and S. Panha (2016). "The Middle Pleistocene vertebrate fauna from Khok Sung (Nakhon Ratchasima, Thailand): biochronological and paleobiogeographical implications". ZooKeys (613): 1–157. doi:10.3897/zookeys.613.8309. PMC 5027644. PMID 27667928.{{cite journal}}: CS1 maint: multiple names: authors list (link)
  2. ^ a b c d e f g h i j k Duckworth, J.W.; Kumar, N.S.; Anwarul Islam, M.; Sagar Baral, H. & Timmins, R. (2015). "Axis axis". IUCN Red List of Threatened Species. 2015: e.T41783A22158006. doi:10.2305/IUCN.UK.2015-4.RLTS.T41783A22158006.en. Retrieved 19 November 2021.
  3. ^ a b Srinivasulu, C.; Srinivasulu, B. (2012). South Asian Mammals: their Diversity, Distribution, and Status. New York: Springer. pp. 357–358. ISBN 978-1-4614-3449-8.
  4. ^ a b c Grubb, P. (2005). "Species Axis axis". In Wilson, D.E.; Reeder, D.M (eds.). Mammal Species of the World: A Taxonomic and Geographic Reference (3rd ed.). Johns Hopkins University Press. p. 661. ISBN 978-0-8018-8221-0. OCLC 62265494.
  5. ^ "Chital". Dictionary.com Unabridged (Online). n.d. Retrieved 24 December 2019.
  6. ^ Platts, J. T. (1884). "चीतल ćītal". A Dictionary of Urdu, Classical Hindi, and English. London: W. H. Allen & Co. p. 470.
  7. ^ "Cheetah". Merriam-Webster Dictionary. Retrieved 10 March 2016.
  8. ^ "Chital". Merriam-Webster Dictionary. Retrieved 24 December 2019.
  9. ^ Erxleben, J. C. P. (1777). "Axis". Systema Regni Animalis per Classes, Ordines, Genera, Species, Varietates cvm Synonymia et Historia Animalivm (in Latin). p. 312.
  10. ^ Cuvier, G. (1827). The Animal Kingdom arranged in Conformity with its Organization. Vol. 5. London: William Clowes. p. 312.
  11. ^ Groves, C. P.; Grubb, P. (1987). "Relationships of living deer". In Wemmer, C. M. (ed.). Biology and Management of the Cervidae. Washington, D.C.: Smithsonian Institution Press. pp. 21–59. ISBN 978-0-87474-980-9.
  12. ^ Meijaard, E. & Groves, C.P. (2004). "Morphometrical relationships between South-east Asian deer (Cervidae, tribe Cervini): evolutionary and biogeographic implications". Journal of Zoology. 263 (2): 179–196. doi:10.1017/S0952836904005011.
  13. ^ Gilbert, C.; Ropiquet, A.; Hassanin, A. (2006). "Mitochondrial and nuclear phylogenies of Cervidae (Mammalia, Ruminantia): Systematics, morphology, and biogeography". Molecular Phylogenetics and Evolution. 40 (1): 101–117. doi:10.1016/j.ympev.2006.02.017. PMID 16584894.
  14. ^ Di Stefano, G. & Petronio, C. (2002). "Systematics and evolution of the Eurasian Plio-Pleistocene tribe Cervini (Artiodactyla, Mammalia)" (PDF). Geologica Romana. 36 (311): e334. Archived from the original (PDF) on 10 March 2016.
  15. ^ a b c d Waring, G.H. (1996). "Preliminary study of the behavior and ecology of axis deer on Maui, Hawaii". Online Report Presented by the Hawaii Ecosystems at Risk (HEAR) Project.
  16. ^ a b c d e f g Schmidly, D.J. (2004). The Mammals of Texas (Revised ed.). Austin, Texas (USA): University of Texas Press. pp. 263–264. ISBN 978-1-4773-0886-8. Archived from the original on 31 December 2017.
  17. ^ Kays, R.W.; Wilson, D.E. (2009). Mammals of North America (2nd ed.). Princeton, New Jersey (USA): Princeton University Press. p. 166. ISBN 978-069114092-6.
  18. ^ a b c d e f g h i j k l m n Geist, V. (1998). Deer of the World: their Evolution, Behaviour and Ecology (1st ed.). Mechanicsburg, Pennsylvania: Stackpole Books. pp. 58–73. ISBN 978-081170496-0.
  19. ^ Groves, C.; Grubb, P. (1982). "Relationships of living deer". Biology and Management of the Cervidae: A Conference Held at the Conservation and Research Center, National Zoological Park, Smithsonian Institution, Front Royal, Virginia, 1–5 August 1982: 21–59.
  20. ^ Müller-Schwarze, D. (1982). "Evolution of cervid olfactory communication". Biology and Management of the Cervidae: A Conference Held at the Conservation and Research Center, National Zoological Park, Smithsonian Institution, Front Royal, Virginia, 1–5 August 1982: 223–234.
  21. ^ a b c d Ables, E.D. (1984). The Axis Deer in Texas. Texas, USA: Texas A & M University Press. pp. 1–86. ISBN 978-089096196-4.
  22. ^ Fletcher, T.J. (1986). "Reproduction: seasonality". Management and Diseases of Deer: A Handbook for the Veterinary Surgeon: 17–18.
  23. ^ Kay, R.N.B.; Phillippo, M.; Suttie, J.M.; Wenham, G. (1982). "The growth and mineralization of antlers". Journal of Physiology. 322: 4.
  24. ^ Pathak, N.N; Pattanaik, A.K; Patra, R.C; Arora, B.M (2001). "Mineral composition of antlers of three deer species reared in captivity". Small Ruminant Research. 42 (1): 61–65. doi:10.1016/S0921-4488(01)00218-8.
  25. ^ McGlashan, A. (2011). Al McGlashan's Hunting Australia. Croydon, London (UK): Australian Fishing Network. pp. 76–80. ISBN 978-186513189-4.
  26. ^ Gee, E.P. (1964). The wild life of India. London: Collins.
  27. ^ Choudhury, A.U. (1994). Checklist of the Mammals of Assam. Guwahati, India: Gibbon Books. ISBN 81-900866-0-X.
  28. ^ a b c d e f g h i j k l Schaller, G.B. (1984). The Deer and the Tiger: A Study of Wildlife in India (Midway reprinted ed.). Chicago: University of Chicago Press. ISBN 978-022673631-0.
  29. ^ a b Sankar, K. & Acharya, B. (2004). "Chital (Axis axis (Erxleben, 1777)". ENVIS Bulletin (7): 171–180.
  30. ^ "Australia's Wild Deer". Australian Deer Research Foundation (ADRF). Retrieved 17 February 2016.
  31. ^ "Deer in Australia". Australian Deer Association. Archived from the original on 20 February 2016. Retrieved 17 February 2016.
  32. ^ McAvoy, A. (2012). "Mystery deer growth pitting hunters against Hawaii". Associated Press. Retrieved 24 May 2012.
  33. ^ Audrey McAvoy (22 August 2012). "Alleged animal smugglers used helicopters to fly sheep to Maui, deer to Big Island". Associated Press. Retrieved 22 August 2012.
  34. ^ "New law prohibits having or releasing feral deer in Hawaii", Honolulu Star-Advertiser, 21 June 2012, archived from the original on 26 June 2012, retrieved 21 June 2012
  35. ^ Davis, William B., and David J. Schmidly. "Axis Deer". The Mammals of Texas – Online Edition. Texas Tech University. Archived from the original on 31 December 2017. Retrieved 24 May 2012.
  36. ^ Ables, Ernest D. "Axis Deer". Handbook of Texas Online. Texas State Historical Association. Retrieved 24 May 2012.
  37. ^ Kusak, J. & Krapinec, K. (2010). "23. Ungulates and their management in Croatia". In Apollonio, M.; Andersen, R. & Putman, R. (eds.). European Ungulates and their Management in the 21st Century. Cambridge: Cambridge University Press. pp. 527–539. ISBN 9780521760614.
  38. ^ Dave, C.V. (2008). Ecology of Chital (Axis axis) in Gir (PDF) (PhD thesis). Saurashtra University. pp. 21–209.
  39. ^ a b c Ramesh, T.; Sankar, K.; Qureshi, Q.; Kalle, R. (2010). "Group size, sex and age composition of chital (Axis axis) and sambar (Rusa unicolor) in a deciduous habitat of Western Ghats". Mammalian Biology – Zeitschrift für Säugetierkunde. 77 (1): 53–59. doi:10.1016/j.mambio.2011.09.003.
  40. ^ de Silva, P.K.; de Silva, M. (1993). "Population structure and activity rhythm of the spotted deer in Ruhuna National Park, Sri Lanka". Developments in Animal and Veterinary Sciences (26): 285–294.
  41. ^ a b Srinivasulu, C. (2001). "Chital (Axis axis Erxleben, 1777) herd composition and sex ratio on the Nallamala Hills of Eastern Ghats, Andhra Pradesh, India". Zoos' Print Journal. 16 (12): 655–658. doi:10.11609/jott.zpj.16.12.655-8.
  42. ^ Mishra, H. and Wemmer, C. 1987. "The comparative breeding ecology of four cervids in Royal Chitwan National Park, Nepal". Washington, D.C.: Smithsonian Institution Press.
  43. ^ Prasad, S.; Chellam, R.; Krishnaswamy, J.; Goyal, S.P. (2004). "Frugivory of Phyllanthus emblica at Rajaji National Park, northwest India" (PDF). Current Science. 87 (9): 1188–1190. Archived from the original (PDF) on 24 September 2015. Retrieved 22 February 2008.
  44. ^ Newton, P.N. (1989). "Associations between langur monkeys (Presbytis entellus) and chital deer (Axis axis): Chance encounters or a mutualism?". Ethology. 83 (2): 89–120. doi:10.1111/j.1439-0310.1989.tb00522.x.
  45. ^ Barrette, C. (1985). "Antler eating and antler growth in wild Axis deer". Mammalia. 49 (4). doi:10.1515/mamm.1985.49.4.491. S2CID 85046773.
  46. ^ First record of the invasive alien species Axis axis (Erxleben, 1777) (Artiodactyla: Cervidae) in Brazil
  47. ^ Ciervo Axis (Axis axis)
  48. ^ "Commission Implementing Regulation (EU) 2022/1203 of 12 July 2022". Official Journal of the European Union. 2022. Retrieved 29 July 2022.

license
cc-by-sa-3.0
copyright
Wikipedia authors and editors
original
visit source
partner site
wikipedia EN

Chital: Brief Summary

provided by wikipedia EN

The chital or cheetal (Axis axis; /tʃiːtəl/), also known as the spotted deer, chital deer and axis deer, is a deer species native to the Indian subcontinent. It was first described and given a binomial name by German naturalist Johann Christian Polycarp Erxleben in 1777. A moderate-sized deer, male chital reach 90 cm (35 in) and females 70 cm (28 in) at the shoulder. While males weigh 70–90 kg (150–200 lb), females weigh around 40–60 kg (88–132 lb). It is sexually dimorphic; males are larger than females, and antlers are present only on males. The upper parts are golden to rufous, completely covered in white spots. The abdomen, rump, throat, insides of legs, ears, and tail are all white. The antlers, three-pronged, are nearly 1 m (3 ft 3 in) long.

license
cc-by-sa-3.0
copyright
Wikipedia authors and editors
original
visit source
partner site
wikipedia EN