Information about Siamang
| Siamang[1] | ||||||||||||||
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| Binomial name | ||||||||||||||
| Symphalangus syndactylus (Raffles, 1821) | ||||||||||||||
The Siamang (Symphalangus syndactylus) is an arboreal, black furred gibbon native to the forests of Malaysia, Thailand, and Sumatra. The largest of the lesser apes, the siamang can be twice the size of other gibbons, reaching 1 m in height, and weighing up to 23 kg. The Siamang is the only species in the genus Symphalangus.
The Siamang is distinctive for two reasons. The first is that two fingers on each hand are fused together (hence the name "syndactylus"). The second is the large "gular sac" (found in the male of the species), which is a throat pouch that can be inflated to the size of its head, allowing the Siamang to make loud resonating calls or songs.
There may be two subspecies of the Siamang. If so, they are the nominate Sumatran Siamang (S. s. syndactylus) and the Malaysian Siamang (S. s. continentis, in peninsular Malaysia).[3] Otherwise, the Malaysian individuals are only a population. The Siamang is the only gibbon which occurs sympatrically with other gibbons; its two ranges are entirely within the combined ranges of the Agile Gibbon and the Lar Gibbon.
The Siamang can live up to 30+ years in captivity.
While the illegal pet trade takes a toll on wild populations, the principal threat to Siamang is habitat loss in both Malaysia and Sumatra. Palm oil production is clearing large swathes of forest, reducing Siamang habitat, along with other species such as the Sumatran Tiger.
Ecology
The Siamang inhabits the forest remnants of Sumatra Island and the Malay Peninsula, and are widely distributed from lowland forest to montane forest. The Siamang lives in groups of up to 6 individuals (4 individuals on average) with a home range 23 hectares on average.[3][4] The Siamang's melodious choir singing breaks the forest's silence in the early morning after the Agile Gibbon or Lar Gibbon's calls. The Siamang in Sumatra and the Malay Peninsula are similar in appearance, but there are some differences between Siamang in Sumatra and the Malay Peninsula in their behaviour.Diet
The Siamang mainly eats various parts of plants. The Sumatran Siamang is more frugivorous than its Malayan cousin, with fruit making up to 60% of its diet. The Siamang eats at least 160 species of plants, from vines to woody plants. Its major food is figs (Ficus spp.), a member of Moraceae family.[4][5] The Siamang prefers to eat ripe fruit rather than unripe fruit, and young leaves rather than old leaves. It eats flowers and a few animals, mostly insects. When the Siamang eats large flowers they will eat only the corolla (petal), but it will eat all parts of smaller flowers, with the small fruit collected in its hand before being consumed. When it eats big and hard seeds or seeds with sharp edge it will peel out the fruit flesh and throw away the seed.[5]Demography and population
A group of Siamang normally consist of an adult dominant male, an adult dominant female, with offspring, infant and sometimes a sub-adult. The sub-adult usually leaves the group after the age 6 to 8 years; sub-adult females tend to leave the group earlier than sub-adult males. A study in relation to effect of habitat disturbance on the Siamang found that group composition is varied in age-sex structure between intact forest and post-burnt forest. The post-burnt population was more adult and sub-adults than the intact population. Post-burnt groups contain fewer infants, small juveniles and large juveniles compared to intact forest groups. Infant survival rates in post-burnt groups are lower than in intact forests. The number of individuals in intact forests is higher than in post-burnt forests.[4] The Siamang in disturbed forests live in small groups and have a density lower than in intact forests because of lack of food resources and trees for living.In the 1980s, the Indonesian population of the Siamang in the wild was estimated to be 360,000 individuals.[4] This seems over-estimate today, as an example, Bukit Barisan Selatan National Park (BBSNP) is the third largest protected area (3,568 km²) in Sumatra, of which approximately 2,570 km² remains under forest cover inhabit by 22,390 siamangs (in 2002 censuses). According to two different research projects conducted in Sumatra, the Siamang prefer to inhabit lowland forest below between 500 m in altitude and over 1000 m above sea level.[3]
Behaviour
The Siamang tends to rest for more than 50% of its waking period (from dawn to dusk), followed by feeding, moving, foraging and social activities. It takes more rest during midday, taking time to groom each other or play. During resting time it usually uses a branch of a large tree lying on their back or on their stomach. Feeding behaviors, foraging, and moving are most often in the morning and after resting time.In the dry season the length of the Siamang's daily range is longer than in the rainy season. The Siamang in southern Sumatra undertakes less foraging than the Siamang in other places because it eats more fruit and therefore consumes more nutrition, which results in less time needed for looking for food. Sometimes the Siamang will spend all of the day in one big fruiting tree, just moving out when it wants to rest and then coming back again to fruiting trees.[5]
Role of calling
The Siamang starts its day by calling in the early morning and calls less after midday, with the peak of their calls around 9:00 am to 10:00 am. Most of the Siamang's calls are directed to its neighbours rather than to inside its home range. This means that the Siamang's calling is in response to disturbances and is to defend its territory. Calls in the late morning typically happen when it meets or sees another Siamang group. The edge of the Siamang's home range, which may overlap another, is often the places where calling is made. Counter-call (co-response calling) occasionally happens near the border or in the overlap area. Calls are numerous when fruit is more abundant rather than when fruit is less available. Branch shaking, swinging, and moving around the tree crowns accompany the calling. This movement might be to show the other groups where they are.The Siamang prefer calling in the living, high and big trees, it might be the places where another group is easy to see. Beside that, living, big, and tall trees can support Siamang movement. Calling trees are usually near feeding trees but sometimes they call in the feeding trees.[5][6]
Siamang and their habitat
As a frugivorous animal, which eat a lot of fruit, the siamang have potency to disperse seeds. Siamang disperse seeds by swallowing the seeds when they eat fruit. The seeds in their stomach will be defecated across their territory. Siamang can carry seed and defecate over 300 m with the shortest distance being 47.6 m from the seed resource, which support the forest regeneration and succession.[7]Threats to population
The Siamang, as an arboreal primate, absolutely depends on the forest for existence, needing trees for their living. At the moment, the Siamang is facing a population decrease due to habitat loss[3], poaching and hunting.[9][5]Habitat loss
A major threat to the Siamang is habitat loss due to plantation, forest fire, illegal logging, encroachment, and human development. Firstly, palm oil plantations have removed large areas of the Siamang’s habitat in the last four decades. Since 2002 107,000 square kilometres of palm oil have been planted,[11] which has replaced much rainforest in Indonesia and Malaysia, where the Siamang originally used to live. Secondly, in the last two decades, forest fire destroyed more than 20,000 km² of Sumatran rainforest, mainly in the lowland area where most of the Siamang live. Thirdly, the rate of illegal logging in Indonesia increased from 1980 to 1995 and even more rapidly after the reformation era beginning in 1998.[11] These illegal activities devastated the remaining tropical rainforest especially in Sumatra. Fourthly, forest encroachments change forest cover into cultivated land, for example; the rising price of coffee in 1998 has been encouraging people in Sumatra to replace the forest with coffee plantation.[12] Fifthly, development in many areas needs infrastructure such as roads, which now divide a lot of conservation areas have been caused forest fragmentation and edge effects. Unfortunately, the Siamang as an arboreal primate faces difficulty because road establishment has disconnected their pathways.Poaching and hunting
Unlike other parts of Asia, primates are not hunted for their meat in Indonesia (the exception is in Chinese restaurants in Indonesia which sometimes serve macaque on their menu). However, they are poached and hunted for the illegal pet trade, mostly for infant Siamang. Poachers kill the mothers because mother Siamang are highly protective of their infants. It is therefore very difficult to remove the infant without first killing the mother. Despite the fact that most Siamang on the market are infants many infants nevertheless die during transportation.[9][5]Media
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References
1. ^ Groves, Colin (16 November 2005). in Wilson, D. E., and Reeder, D. M. (eds): Mammal Species of the World, 3rd edition, Johns Hopkins University Press, 181. ISBN 0-801-88221-4.2005&rft.edition=3rd%20edition&rft.pub=Johns%20Hopkins%20University%20Press&rft.pages=181&rft_id=http%3A%2F%2Fnmnhgoph.si.edu%2Fmsw%2F">
2. ^ Eudey et al (2000). Symphalangus syndactylus. 2006 IUCN Red List of Threatened Species. IUCN 2006. Retrieved on 11 May 2006.
3. ^ Geissmann, Thomas. Gibbon Systematics and Species Identification. Retrieved on 2006-04-13.
4. ^ O'Brien, T.G., M.F. Kinnaird, A. Nurcahyo, M. Prasetyaningrum, dan M. Iqbal (2003). "Fire, demography and persistence of siamangs (Symphalangus syndactylus: Hylobatidae) in a Sumatran rainforest". Animal Conservation.
5. ^ Nurcahyo, A. (2001). Daily Ranging, Home-Range, Foods, Feeding and Calling in Siamang (Hylobates syndactylus). In WCS-IP 2001. Bukit Barisan Selatan National Park in Space and Time. 2000 -2001 Research Report. WCS-IP/ PHKA, Bogor. 35-52. (In Indonesian)
6. ^ Kinnaird, M.F., O’Brien, T.G., Nurcahyo, A. and Prasetyaningrum, M. (2002). "Intergroup spacing and the role of calling among siamangs". Proceedings of the XIX Congrees of the International Primatological Society (abstract).
7. ^ Rusmanto, M. (2001). Seed dispersal by siamang (Hylobates syndactylus). In WCS-IP 2001. Bukit Barisan Selatan National Park in Space and Time. 2000 -2001 Research Report. WCS-IP/ PHKA, Bogor. 53-64. (In Indonesian)
8. ^ O'Brien, T.G., M.F. Kinnaird, A. Nurcahyo, M. Iqbal and M. Rusmanto (2004). "Abundance and Distribution of Sympatric Gibbons in a Threatened Sumatran Rainforest". International Journal of Primatology 25: 267-284.
9. ^ Nursahid, R. and Bakdiantoro, H. (2005). Illegal Primate Trade in Indonesia. Profauna Indonesia. Presentation in SEAPA 1st Congress.
10. ^ Nijman,V. (2005). In Full Swing: An Assessment of Trade in Orang-Utans and Gibbons on Java and Bali, Indonesia. A Traffict Southeast Asia Report. Traffic Southeast Asia
11. ^ Palmer, C. E. The Extent and Causes of Illegal Logging: An Analysis of a Major Cause of Tropical Deforestation in Indonesia. CSERGE Working Paper.
12. ^ Kinnaird, M.F., Sanderson, E.W., O'Brien, T.G., Wibisono, H.T., and Woolmer, G. (2003). "Deforestation trends in a tropical landscape and implications for endangered mammals". Cons. Biol. 17: 245-257.
2. ^ Eudey et al (2000). Symphalangus syndactylus. 2006 IUCN Red List of Threatened Species. IUCN 2006. Retrieved on 11 May 2006.
3. ^ Geissmann, Thomas. Gibbon Systematics and Species Identification. Retrieved on 2006-04-13.
4. ^ O'Brien, T.G., M.F. Kinnaird, A. Nurcahyo, M. Prasetyaningrum, dan M. Iqbal (2003). "Fire, demography and persistence of siamangs (Symphalangus syndactylus: Hylobatidae) in a Sumatran rainforest". Animal Conservation.
5. ^ Nurcahyo, A. (2001). Daily Ranging, Home-Range, Foods, Feeding and Calling in Siamang (Hylobates syndactylus). In WCS-IP 2001. Bukit Barisan Selatan National Park in Space and Time. 2000 -2001 Research Report. WCS-IP/ PHKA, Bogor. 35-52. (In Indonesian)
6. ^ Kinnaird, M.F., O’Brien, T.G., Nurcahyo, A. and Prasetyaningrum, M. (2002). "Intergroup spacing and the role of calling among siamangs". Proceedings of the XIX Congrees of the International Primatological Society (abstract).
7. ^ Rusmanto, M. (2001). Seed dispersal by siamang (Hylobates syndactylus). In WCS-IP 2001. Bukit Barisan Selatan National Park in Space and Time. 2000 -2001 Research Report. WCS-IP/ PHKA, Bogor. 53-64. (In Indonesian)
8. ^ O'Brien, T.G., M.F. Kinnaird, A. Nurcahyo, M. Iqbal and M. Rusmanto (2004). "Abundance and Distribution of Sympatric Gibbons in a Threatened Sumatran Rainforest". International Journal of Primatology 25: 267-284.
9. ^ Nursahid, R. and Bakdiantoro, H. (2005). Illegal Primate Trade in Indonesia. Profauna Indonesia. Presentation in SEAPA 1st Congress.
10. ^ Nijman,V. (2005). In Full Swing: An Assessment of Trade in Orang-Utans and Gibbons on Java and Bali, Indonesia. A Traffict Southeast Asia Report. Traffic Southeast Asia
11. ^ Palmer, C. E. The Extent and Causes of Illegal Logging: An Analysis of a Major Cause of Tropical Deforestation in Indonesia. CSERGE Working Paper.
12. ^ Kinnaird, M.F., Sanderson, E.W., O'Brien, T.G., Wibisono, H.T., and Woolmer, G. (2003). "Deforestation trends in a tropical landscape and implications for endangered mammals". Cons. Biol. 17: 245-257.
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conservation status of a species is an indicator of the likelihood of that species continuing to survive either in the present day or the future. Many factors are taken into account when assessing the conservation status of a species: not simply the number remaining, but the
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Near Threatened (NT) is a conservation status assigned to species or lower taxa which may be considered threatened with extinction in the near future, although it does not currently qualify for the threatened status.
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Scientific classification or biological classification is a method by which biologists group and categorize species of organisms. Scientific classification also can be called scientific taxonomy, but should be distinguished from folk taxonomy, which lacks scientific basis.
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Chordata
Bateson, 1885
Typical Classes
See below
Chordates (phylum Chordata) are a group of animals that includes the vertebrates, together with several closely related invertebrates.
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Bateson, 1885
Typical Classes
See below
Chordates (phylum Chordata) are a group of animals that includes the vertebrates, together with several closely related invertebrates.
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Mammalia
Linnaeus, 1758
Subclasses & Infraclasses
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Linnaeus, 1758
Subclasses & Infraclasses
- Subclass †Allotheria*
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Primates
Linnaeus, 1758
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Linnaeus, 1758
Families
- 15, See classification
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Hylobatidae
Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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Constantin Wilhelm Lambert Gloger (1803 - 1863) was a German zoologist and ornithologist.
Gloger was the first person to recognise the structural differences between swallows and swifts, and also the first to put up artificial bat boxes.
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Gloger was the first person to recognise the structural differences between swallows and swifts, and also the first to put up artificial bat boxes.
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binomial nomenclature is the formal system of naming species. The system is also called binominal nomenclature (particularly in zoological circles), binary nomenclature (particularly in botanical circles), or the binomial classification system.
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Sir Thomas Stamford Bingley Raffles (July 6, 1781 – July 5, 1826) was the founder of the city of Singapore (now the Republic of Singapore), and is one of the most famous Britons who expanded the British Empire.
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Arboreal is a word meaning "related to or resembling trees". Its meaning comes from the Latin arbor, meaning tree.
In biology, an arboreal animal is one which inhabits or spends large amounts of time in trees or bushes.
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In biology, an arboreal animal is one which inhabits or spends large amounts of time in trees or bushes.
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Hylobatidae
Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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Phleng Chat
Royal anthem
Phleng Sansoen Phra Barami
Capital
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Sumatra<nowiki />
Topography of Sumatra
Geography
<nowiki/>
Location South East Asia
Coordinates <nowiki />
Archipelago
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Topography of Sumatra
Geography
<nowiki/>
Location South East Asia
Coordinates <nowiki />
Archipelago
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Hylobatidae
Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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Gray, 1870
Genera
Hylobates
Hoolock
Nomascus
Symphalangus
Gibbons are the small apes in the family Hylobatidae.
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In biology, dactyly is the arrangement of (fingers and toes) on the hands, feet, or sometimes wings of a tetrapod animal. It comes from the Greek word δακτυλος = "finger".
Sometimes the ending "-dactylia" is used.
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Sometimes the ending "-dactylia" is used.
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H. agilis
Binomial name
Hylobates agilis
F. Cuvier, 1821
The Agile Gibbon (Hylobates agilis), also known as the Black-handed Gibbon
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Binomial name
Hylobates agilis
F. Cuvier, 1821
The Agile Gibbon (Hylobates agilis), also known as the Black-handed Gibbon
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H. lar
Binomial name
Hylobates lar
(Linnaeus, 1771)
The Lar Gibbon (Hylobates lar), also known as the White-handed Gibbon, is a primate in the Hylobatidae or gibbon family.
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Binomial name
Hylobates lar
(Linnaeus, 1771)
The Lar Gibbon (Hylobates lar), also known as the White-handed Gibbon, is a primate in the Hylobatidae or gibbon family.
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Palm oil is a form of edible vegetable oil obtained from the fruit of the oil palm tree. Previously the second-most widely produced edible oil, after soybean oil, 28 million metric tons were produced worldwide in 2004[1].
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P. t. sumatrae
Trinomial name
Panthera tigris sumatrae
Pocock, 1929
The Sumatran tiger (Panthera tigris sumatrae
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Trinomial name
Panthera tigris sumatrae
Pocock, 1929
Distribution map
The Sumatran tiger (Panthera tigris sumatrae
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A frugivore is an animal that feeds primarily or less commonly exclusively on fruit. This method of feeding can be more efficient than consuming the stem, roots, or other vegetative portions of a plant, due to higher concentrations of sugars, vitamins or proteins that many plants
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Ficus
L.
Species
see text
Figs, dried
Nutritional value per 100 g (3.5 oz)
Energy 0 kcal 0 kJ
Carbohydrates 64 g
- Sugars 48 g
- Dietary fiber 10 g
Fat 1 g
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L.
Species
see text
Figs, dried
Nutritional value per 100 g (3.5 oz)
Energy 0 kcal 0 kJ
Carbohydrates 64 g
- Sugars 48 g
- Dietary fiber 10 g
Fat 1 g
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Ficus
L.
Species
see text
Figs, dried
Nutritional value per 100 g (3.5 oz)
Energy 0 kcal 0 kJ
Carbohydrates 64 g
- Sugars 48 g
- Dietary fiber 10 g
Fat 1 g
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L.
Species
see text
Figs, dried
Nutritional value per 100 g (3.5 oz)
Energy 0 kcal 0 kJ
Carbohydrates 64 g
- Sugars 48 g
- Dietary fiber 10 g
Fat 1 g
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Moraceae
Link
Genera
See text.
Moraceae is a family of flowering plants commonly known as the mulberry family. It comprises about 40 genera and over 1000 species of plants widespread in tropical and subtropical regions, less common in temperate
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Link
Genera
See text.
Moraceae is a family of flowering plants commonly known as the mulberry family. It comprises about 40 genera and over 1000 species of plants widespread in tropical and subtropical regions, less common in temperate
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Corolla is the overall structure of the petals of a flower taken as a group within the calyx. Normally the corolla is the most conspicuous part of a flower and of a bright colour other than green.
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Colin Groves is a Professor of Biological Anthropology at the Australian National University in Canberra, Australia.
Born in England, he completed a BSc (London) in 1963, and a PhD (London) in 1966.
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Born in England, he completed a BSc (London) in 1963, and a PhD (London) in 1966.
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