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Author |
Egorov O.V. |
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Title |
Enemies, infections, parasites and mortality rate of ibex |
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Miscellaneous |
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1955 |
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Vol. 42. |
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37-50 |
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Ussr; ungulates; predators; snow leopard.; 6520; Russian |
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Reasons for ibex and argali mortality from natural enemies, parasites, infections, accidents, and hunters are analyzed. Snow leopard is one of the most dangerous enemies of ibex and argali, preying equally on both young and mature animals (mostly males). Snow leopard feeds upon ibex all year round. Unlike wolf, snow leopard would never kill several animals at a time, but only one selected victim. The food remains left by these predators are different in terms of the skull gnawing. Nasal bones and eye-sockets on the skull of ibex killed by snow leopard remain undamaged, while wolf gnaws off nasal part of the skull, breaks eye-sockets, eats lower jaw, widens occipital hole and pulls out brains. Snow leopard leaves large pieces of skin around the skeleton of the victim, whereas wolf tears it to shreds or eats up fully. Sometimes parts of the victim left by snow leopard are eaten by wolf. It is easy to mix the remains of snow leopard's or griffon vulture's food. The remains differ in skin being turned inside out rather than torn to large pieces. |
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Full text available in RussianJournal Title: Proceedings of ZIN of the Academy of Science of the USSR. |
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SLN @ rana @ 630 |
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251 |
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Author |
Grachev, U.A.; Fedosenko, A.K. |
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Title |
Distribution and Numbers of Snow Leopard in Kazakhstan |
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Miscellaneous |
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1991 |
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ix |
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distribution; Tien-Shan; Altai; extinction; status; browse; 4720 |
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Islt |
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Seattle |
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Full Text at URLJournal Title: Snow Line |
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SLN @ rana @ 459 |
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344 |
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Author |
Blomqvist, L. |
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Title |
Conservation Measurements taken for the Captive Snow Leopard, Panthera uncia, Population and a Report of Fluctuations in Stock in 1983 |
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Journal Article |
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Year |
1984 |
Publication |
Int.Ped Book of Snow Leopards |
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4 |
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55-71 |
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Keywords |
captivity; zoo; zoos; status; breeding; reproduction; conservation; browse; 2920 |
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Reports on conservation measures over the past 10 years. Notes current snow leopard exchange programs between zoos in the US and USSR and Europe. Describes status and reproductive success of the captive snow leopard population, list animals currently in captivity. |
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SLN @ rana @ 79 |
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160 |
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Mishra, C.; Van Wieren S.; Ketner, P.; Heitkonig, I.; Prins H. |
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Title |
Competition between domestic livestock and wild bharal Pseudois nayaur in the Indian Trans-Himalaya |
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2004 |
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Journal of Animal Ecology |
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73 |
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344-354 |
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blue sheep,diet,grazing,rangeland,resource,ungulate,wildlife; 5320 |
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1. The issue of competition between livestock and wild herbivores has remained contentious. We studied the diets and population structures of the mountain ungulate bharal Pseudois nayaur and seven species of livestock to evaluate whether or not they compete for forage. The study was conducted in the high altitude Spiti Valley, Indian Trans-Himalaya.
2. We compared resource (forage) availability and bharal population structures between rangelands differing in livestock density. Forage availability was estimated by clipping the standing graminoid biomass in sample plots. Livestock and bharal population structures were quantified through annual censuses. Seasonal diets of livestock were studied by direct observations, while those of bharal were quantified through feeding
signs on vegetation.
3. We found that livestock grazing causes a significant reduction in the standing crop of forage. Graminoid availability per unit livestock biomass was three times greater in a moderately grazed rangeland compared with an intensively grazed one.
4. There was considerable diet overlap among the herbivore species. In summer, bharal, yak Bos grunniens, horse Equus caballus, cow Bos indicus, and dzomo (yak-cow hybrids) fed predominantly on graminoids, while donkey E. asinus, sheep Ovis aries, and goat Capra hircus, consumed both graminoids and herbs. The summer diet of bharal was a subset of the diets of three livestock species. In winter, depleted graminoid availability caused bharal, yak and horse to consume relatively more herbs, while the remaining livestock species fed predominantly on graminoids. Diet overlap was less in winter but, in both seasons, all important forage species in the bharal diet were consumed
in substantial amounts by one or more species of livestock.
5. Comparison of the population structures of bharal between two rangelands differing in livestock density by
c. 30% yielded evidence of resource competition. In the intensively grazed rangeland, bharal density was 63% lower, and bharal population showed poorer performance (lower young : adult female ratios).
6.Synthesis and applications High diet overlap between livestock and bharal, together with density-dependent forage limitation, results in resource competition and a decline in bharal density. Under the present conditions of high livestock density and supplemental feeding, restricting livestock numbers and creating livestockfree areas are necessary measures for conserving Trans-Himalayan wild herbivores. Mediating competitive effects on bharal through supplemental feeding is not a feasible option. |
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Call Number |
SLN @ rana @ 517 |
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695 |
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Author |
Jackson, R. |
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Title |
Community Participation: Tools and Examples |
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Conference Article |
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Year |
2000 |
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1-9 |
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Keywords |
community; workshop; wildlife; India; us; Himalayan; biodiversity; project; snow; snow leopard; snow-leopard; leopard; trust; management; planning; trans-himalayan; transhimalayan; protected; protected areas; protected area; protected-areas; protected-area; areas; area; 2000; leh; Ladakh |
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In response to dwindling wildlife populations and habitat, governments established national parks and protected areas, often with little input from people living in the immediate area. In some cases communities were relocated, but in most they are left to pursue traditional agricultural and pastoral livelihoods under a new set of rules. Important questions of land tenure remained unresolved, with a “fences and fines” approach to protected area management (Stolton and Dudley 1999). |
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Management Planning Workshop for the Trans-Himalayan Protected Areas, 25-29 August, 2000, Leh, Ladak |
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Workshop sponsored by the Wildlife Institute of India, US Fish and Wildlife Service Himalayan Biodiversity project, andInternational Snow Leopard Trust |
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SLN @ rana @ 1020 |
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467 |
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Author |
Rowell, G. |
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Title |
China's Wildlife Lament |
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1983 |
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International Wildlife |
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13 |
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6 |
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4-11 |
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China; Qinghai; bounty; hunting; poaching; browse; 3200 |
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Reports sightings of snow leopard in Qinghai Province. One freshly killed; a 15 yuan bounty exists on snow leopards |
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SLN @ rana @ 75 |
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833 |
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Author |
Puzanov I.I. |
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Central Asia sub-area |
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Miscellaneous |
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1938 |
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240-244 |
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Central Asia; fauna; snow leopard.; 8020; Russian |
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The author describes fauna of the Central Asia sub-area. Snow leopard is a typical inhabitant of the sub-area highlands. |
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Full text available in RussianJournal Title: Zoogeography. |
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SLN @ rana @ 780 |
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797 |
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Author |
Flora and Fauna International |
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Title |
Central Asia Snow Leopard Workshop |
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2006 |
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Central Asia; Central Asia Snow Leopard Workshop; June 2006; Report; snow leopard; workshop; central; asia; snow; snow-leopard; leopard |
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Meeting report for the Central Asia Snow Leopard Workshop, held in Bishkek in June 2006. |
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Flora and Fauna International |
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BISHKEK, 19-21 JUNE 2006. Meeting Report |
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SLN @ rana @ 878 |
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275 |
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Olaf, R.P.; Edmonds, B.; Gittleman, J.; Purvis, A. |
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Building large trees by combining phylogenetic information: a complete phylogeny of the extant Carnivora (Mammalia) |
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1999 |
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Biological Reviews of the Cambridge Philosophical Society |
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74 |
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143-175 |
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Carnivora; character-congruence; taxonomic-congruence; supertree; matrix-representation; parsimony; divergence-times; fossil-dates; molecular-clock; macroevolution; taxonomy; Evolution; browse; character; congruence; taxonomic; matrix; representation; divergence; times; fossil; dates; Molecular; clock; 1220 |
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One way to build larger, more comprehensive phylogenies is to combine the vast amount of phylogenetic information already available. We review the two main strategies for accomplishing this (combining raw data versus combining trees), but employ a relatively new variant of the latter: supertree construction. The utility of one supertree technique, matrix representation using parsimony analysis (MRP), is demonstrated by deriving a complete phylogeny for all 271 extant species of the Carnivora from 177 literature sources. Beyond providing a `consensus' estimate of carnivore phylogeny, the tree also indicates taxa for which the relationships remain controversial (e.g. the red panda; within canids, felids, and hyaenids) or have not been studied in any great detail (e.g. herpestids, viverrids, and intrageneric relationships in the procyonids). Times of divergence throughout the tree were also estimated from 74 literature sources based on both fossil and molecular data. We use the phylogeny to show that some lineages within the Mustelinae and Canidae contain significantly more species than expected for their age, illustrating the tree's utility for studies of macroevolution. It will also provide a useful foundation for comparative and conservational studies involving the carnivores.
(Received June 2 1998)(Revised November 27 1998)(Accepted December 16 1998) |
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Copyright c Cambridge Philosophical Society 1999 Document Type: English |
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SLN @ rana @ 371 |
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739 |
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Zimina R.P. |
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Biology and biotopical distribution of mammals. Predators. Distribution of mammals by vertical zones |
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1964 |
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25-27 |
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Kyrgyzstan; Issy-Kul derression; fauna; snow leopard; distribution.; 8820; Russian |
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Fauna of the Issyk-Kul depression and the surrounding ridges consists of heterogeneous elements different in their ecologic features and origin. In highlands, more common are species of Central Asia's origin (gray marmot, snow leopard, dhole, ibex, argali, etc.). Snow leopard is met in Terskey-Alatau. Each year hunters catch/shoot one to three snow leopards in the Chon-Kizilsu river basin. In the Djeti-Oguz district, up to five eight snow leopards are caught each winter. Snow leopard is also caught/shot in the river basins Chon-Kizilsu, Karabatkak, Ortok, Archtor, Tekeletor, and Shatly. |
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Full text available in RussianJournal Title: Regularities of vertical distribution of mammals. |
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SLN @ rana @ 859 |
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1090 |
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