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Author Zhang, C., Ma, T., Ma, D.
Title (up) Status of the snow leopard Panthera uncia in the Qilian Mountains, Gansu Province, China Type Journal Article
Year 2023 Publication Oryx Abbreviated Journal
Volume Issue Pages 1-6
Keywords Camera trapping, China, density, Panthera uncia, Qilian Mountains, snow leopard, spatially explicit capture–recapture
Abstract Population density estimation is integral to the effective conservation and management of wildlife. The snow leopard Panthera uncia is categorized as Vulnerable on the IUCN Red List, and reliable information on its density is a prerequisite for its conservation and management. Little is known about the status of the snow leopard in the central and eastern Qilian Mountains, China. To address this, we estimated the population density of the snow leopard using a spatially explicit capture–recapture model based on camera trapping in Machang in the central and eastern Qilian Mountains during January–March 2019. We set up

40 camera traps and recorded 84 separate snow leopard captures over 3,024 trap-days. We identified 18 individual snow leopards and estimated their density to be 2.26/100 km. Our study provides baseline information on the snow leopard and the first population estimate for the species in the central and eastern Qilian Mountains.
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Call Number SLN @ rakhee @ Serial 1725
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Author Bocci, A., Lovari, S., Khan, M. Z., Mori, E.
Title (up) Sympatric snow leopards and Tibetan wolves: coexistence of large carnivores with human-driven potential competition Type Journal Article
Year 2017 Publication European Journal of Wildlife Research Abbreviated Journal
Volume Issue Pages 1-9
Keywords Panthera uncia . Canis lupus filchneri . Competition . Large-carnivore coexistence . Siberian ibex
Abstract The snow leopard Panthera uncia coexists with the wolf Canis lupus throughout most of its distribution range.

We analysed the food habits of snow leopards and wolves in their sympatric range in the Karakoram mountains of Pakistan. A total of 131 genotyped scats (N = 74, snow leopard; N = 57, Tibetan wolf) were collected during the cold periods (i.e. winter and spring) of 2011 and 2012 in the Hushey valley. Large mammals, i.e. livestock and ibex, accounted for 84.8 and 83.1% of the diet (relative frequency) of the snow leopard and the wolf, respectively. Domestic prey was the staple of the diet of both snow leopards (66.6%) and wolves (75.1%). Ibex Capra ibex, the only wild ungulate in our study area, contributed 18.2 and 16.9%of relative frequencies in the

diets of the snow leopard and the wolf, respectively. In winter, the snowleopard heavily relied on domestic sheep (43.3%) for food, whereas the wolf preyed mainly on domestic goats (43.4%). Differently from other study areas, both snow leopards and wolves showed no apparent prey preference (Jacobs

index: snow leopard min. − 0.098, max. 0.102; Tibetan wolf min. − 0.120, max. 0.03). In human depauperate areas, with livestock and only a few wild prey, should competitive interactions arise, two main scenarios could be expected, with either predator as a winner. In both cases, the best solution

could primarily impinge on habitat restoration, so that a balance could be found between these predators, who have already coexisted for thousands of years.
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Call Number SLN @ rakhee @ Serial 1464
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Author Blomqvist, L.
Title (up) The 1978 register for the captive population of snow leopards, Panthera uncia Type Journal Article
Year 1979 Publication International Zoo News Abbreviated Journal
Volume 26 Issue 7-8 Pages 17-23
Keywords captive; captive-population; Panthera-uncia; panthera uncia; population; snow leopard
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Call Number SLN @ rana @ 955 Serial 147
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Author Blomqvist, L.
Title (up) The 1979 world register for the captive population of snow leopards, Panthera uncia Type Book Chapter
Year 1980 Publication International Pedigree Book of Snow Leopards Abbreviated Journal
Volume Issue Pages 62-75
Keywords captive; captive-population; panthera uncia; snow leopard
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Publisher Helsinki Zoo Place of Publication Helsinki Editor Blomqvist, L.
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Call Number SLN @ rana @ 997 Serial 150
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Author Blomqvist, L.
Title (up) The 1980 annual report of the captive snow leopard (Panthera uncia) population and a review at the breeding results during the 1970's Type Report
Year 1981 Publication Abbreviated Journal
Volume Issue Pages 32-50
Keywords zoo; Report; 1980; captive; snow; snow leopard; snow-leopard; leopard; panthera; panthera uncia; Panthera-uncia; uncia; population; breeding; 1970
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Publisher Helsinki Zoo Place of Publication Helsinki Editor
Language Summary Language Original Title
Series Editor Series Title Helsinki Zoo Annual Report Abbreviated Series Title
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Notes Approved no
Call Number SLN @ rana @ 998 Serial 154
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Author Blomqvist, L.
Title (up) The 1981 annual report of the captive snow leopards (Panthera uncia) population Type Report
Year 1982 Publication International Pedigree Book of Snow Leopards Abbreviated Journal
Volume Issue Pages 41-47
Keywords captive; Panthera-uncia; panthera uncia; pedigree; population; snow leopard
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Series Editor Series Title International Pedigree Book of Snow Leopards Abbreviated Series Title
Series Volume 3 Series Issue Edition
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Call Number SLN @ rana @ 956 Serial 155
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Author Wei, L.; Wu, X.; Jiang, Z.
Title (up) The complete mitochondrial genome structure of snow leopard Panthera uncia Type Miscellaneous
Year 2008 Publication Molecular Biology Reports Abbreviated Journal
Volume Issue Pages 1-8
Keywords Panthera uncia Complete mitochondrialgenome Phylogenetic analyses
Abstract The complete mitochondrial genome (mtDNA) of snow leopard Panthera uncia was obtained by using the polymerase chain reaction (PCR) technique based on the PCR fragments of 30 primers we designed. The entire mtDNA sequence was 16 773 base pairs (bp) in length, and the base composition was: A-5,357ª“,Ž+bp (31.9%); C-4,444ª”,Ž+bp (26.5%); G-2,428ª“,Ž+bp (14.5%); T-4,544ª”,Ž+bp (27.1%). The structural characteristics [0] of the P. uncia mitochondrial genome were highly similar to these of Felis catus, Acinonyx jubatus, Neofelis nebulosa and other mammals. However, we found several distinctive features of the mitochondrial genome of Panthera unica. First, the termination codon of COIII was TAA, which differed from those of F. catus, A. jubatus and N. nebulosa. Second, tRNASer (AGY), which lacked the ''DHU'' arm, could not be folded into the typical cloverleaf-shaped structure. Third, in the control region, a long repetitive sequence in RS-2 (32ª“,Ž+bp) region was found with 2 repeats while one short repetitive segment (9ª”,Ž+bp) was found with 15 repeats in the RS-3 region. We performed phylogenetic analysis based on a 3 816ª",Ž+bp concatenated sequence of 12S rRNA, 16S rRNA, ND2, ND4, ND5, Cyt b and ATP8 for P. uncia and other related species, the result indicated that P. uncia and P. leo were the sister species, which was different from the previous findings. (c) 2008 Springer Science+Business Media B.V.
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Call Number SLN @ rana @ 899 Serial 1011
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Author Liao, Y.F.
Title (up) The Geographical Distribution of Ounces in Qinghai Province Type Journal Article
Year 1985 Publication Acta Theriologica Sinica Abbreviated Journal
Volume 5 Issue 3 Pages 183-188
Keywords China; Qinghai; distribution; browse; 5470; ounce; panthera; panthera uncia; Panthera-uncia; uncia; province; 20; Qilian; number; 40; Male; Female; park; Adult; bharal; Pseudois; breeding; people; birth; young; Chinese
Abstract This paper deals with the geographical distribution of ounces (Panthera uncia) in Qinghai Province. Ounces are distributed in 20 counties- Guide, Huzhu, Menyuan, Qilian, Tianjun, Dulan, Golmud, Guinan, Xinghai, Zhidoi, Zadoi, Nangqen, Yushu, Chindu, Qumarleb, Madio, Maqen, Jigzhi, Baima, Darlag. Among them, there fore 4 counties- Qilian, Tianjun, Dulan, Zadoi, in which the number of ounces are bigger. The number of ounces are shown in table 2. There are altogether 73 ounces (40 male, 33 female) which is supported to every park of China for ornamental, they were captured by fellow-villagers, and 44 ounces (23 male, 21 female) of them are below 6 months old, 9 ounces (6 male, 3 female) of them are 1 year old, 2 ounces (male) are 2 years old, and 18 ounces (9 male, 9 female) are adults.

Ounces live at an altitude of 3000-4100 metres above the sea, and prefer to eat Bharal (Pseudois noyour). Its breeding period goes from April to June, the number of embryos being 2-3.

A female ounce was successfully reproduced for the first time at Xining People's Park of China, in Spetember, 1984, and she gave birth to 3 young ounces.
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Notes Document Type: Chinese Approved no
Call Number SLN @ rana @ 531 Serial 617
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Author Koshkarev, E.
Title (up) The snow leopard in its northeastern range Type Journal Article
Year 1996 Publication Cat News Abbreviated Journal
Volume 25 Issue Pages 10
Keywords Russia; Panthera-uncia; home-range; distribution; endangered; threatened-species; Sayan; Zhombok-river -basin; browse; home range; home; range; threatened; species; zhombok river basin; zhombok; river; basin; panthera uncia; panthera; uncia; 680
Abstract The author surveyed three sites in the central and eastern Sayan regions of Russia for snow leopards. In the Zhombolok River Basin of the Kropotkinskiy and Okinskiy Mountains, the author found seven snow leopard tracks, representing five or six individuals. In the Munku-Sardyk Peak area, one snow leopard track was found, and in the Tunkinskiy Ranffe area three tracks, representing at least two animals, were found. Other information is provided on local sightings. klf
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Notes AUTHOR ADDRESS: Inst. Biol., Irkutsk Univ., Russia Document Type: English Approved no
Call Number SLN @ rana @ 286 Serial 563
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Author Blomqvist, L.
Title (up) The snow leopard, Panthera uncia, in captivity during the last 30 years (1961-1991) Type Report
Year 1993 Publication Abbreviated Journal
Volume Issue Pages 24-37
Keywords captivity; panthera uncia; snow leopard
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Publisher Helsinki Zoo Place of Publication Helsinki Editor
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Call Number SLN @ rana @ 1000 Serial 164
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