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Robinson, J. J., Crichlow, A. D., Hacker, C. E., Munkhtsog, B., Munkhtsog, B., Zhang, Y., Swanson, W. F., Lyons, L. A., Janecka, J. E. |
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Title |
Genetic Variation in the Pallas’s Cat (Otocolobus manul) in Zoo-Managed and Wild Populations |
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2024 |
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Diversity |
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16 |
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228 |
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1-13 |
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Otocolobus manul; microsatellites; zoo-managed population; mitochondrial 12S ribosomal RNA; endothelial PAS domain protein 1 |
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The Pallas’s cat (Otocolobus manul) is one of the most understudied taxa in the Felidae family. The species is currently assessed as being of “Least Concern” in the IUCN Red List, but this assessment is based on incomplete data. Additional ecological and genetic information is necessary for the long-term in situ and ex situ conservation of this species. We identified 29 microsatellite loci with sufficient diversity to enable studies into the individual identification, population structure, and phylogeography of Pallas’s cats. These microsatellites were genotyped on six wild Pallas’s cats from the Tibet Autonomous Region and Mongolia and ten cats from a United States zoo-managed population that originated in Russia and Mongolia. Additionally, we examined diversity in a 91 bp segment of the mitochondrial 12S ribosomal RNA (MT-RNR1) locus and a hypoxia-related gene, endothelial PAS domain protein 1 (EPAS1). Based on the microsatellite and MT-RNR1 loci, we established that the Pallas’s cat displays moderate genetic diversity. Intriguingly, we found that the Pallas’s cats had one unique nonsynonymous substitution in EPAS1 not present in snow leopards (Panthera uncia) or domestic cats (Felis catus). The analysis of the zoo-managed population indicated reduced genetic diversity compared to wild individuals. The genetic information from this study is a valuable resource for future research into and the conservation of the Pallas’s cat. |
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SLN @ rakhee @ |
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1749 |
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Author |
Freeman, H.; Hutchins, M. |
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Title |
Captive Management of Snow Leopard Cubs |
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1978 |
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Der Zoologischer Garten |
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48 |
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49-62 |
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captivity; management; zoo; zoos; cubs; rearing; browse; 3610 |
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SLN @ rana @ 45 |
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315 |
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Jalanka, H.H. |
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Title |
Medetomidine, medetomidine-ketamine combinations and atipamezole in nondomestic mammals: A clinical, physiological and comparative study |
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1991 |
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Dep.Clinical Sciences, Coll.Veterinary Med., Helsinki, Finland |
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taxonomy; phylogeny; Panthera-uncia; tranquilizers; zoo-management; physiology; veterinary; medical; medicine; zoo; zoos; browse; panthera; uncia; zoo management; management; 1460 |
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Hibiscus section Furcaria is composed of over 400 species. Kenaf (Hibiscus cannabinus) and rosella (Hibiscus sabdariffa) belong to this section. Both species are important fiber crops. The survey reported in this book was undertaken in order to find new sources of genetic diversity collect, save, and distribute germ plasm. The work contains a taxonomic key of section Furcaria in southern Africa, 8 species, a description of the species illustrated by line-drawings, and distribution maps. (Also discussed are; H. mechowii, H. meeusei, H. surattensis, H. acetosella, H. torrei, H. mastersianus, H. hiernianus, H. altissimus, H. diversifolius sub sp. rivularis.) |
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BK: Jalanka, H. H. Medetomidine, medetomidine-ketamine combinations and atipamezole in nondomestic mammals: A clinical, physiological and comparative study. 282p
Document Type: English. |
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SLN @ rana @ 177 |
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487 |
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Fox, J.L. |
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Conflict between predators and people in Ladakh |
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1997 |
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Cat News |
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17 |
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18 |
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asia; India; behavior; endangered; threatened-species; mammals; management; predation; public relations; reserves; refuges; parks; wildlife; human-relationships; livestock; sheep; goats; prey; International-Snow-Leopard-Trust; protected-area; Hemis; browse; Islt; International; snow; leopard; trust; public; Relations; Human; relationships; protected; 640 |
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During a six-week period in Hemis National Park, Ladakh, India, snow leopards killed 10 sheep and goats and one leopard gained access to a livestock pen and killed many of the animals inside. Dholes also killed sheep and goats, and a wolf killed a young horse. Residents routinely remove snow leopard cubs from their dens to limit future damage by this species. How to deal with the plight of the people living in the area while still protecting the endangered species are major concerns of the International Snow Leopard Trust, which manages Hemis National Park. lgh. |
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AUTHOR ADDRESS: Dep. Ecol./Zool., IBG Univ. Tromso, Tromso, Norway, ORIGINAL SOURCE: Snow Leopard News, Autumn 1997
Document Type: English
Call Number: WR99-007446 |
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SLN @ rana @ 309 |
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310 |
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Jackson, P. |
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Villagers save predatory snow leopard |
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1998 |
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Cat News |
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28 |
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12 |
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conservation education; damage; damage by wildlife; endangered; threatened species; mammals; management; wildlife; human relationships; relocation; goats; livestock; Pakistan; herders; prey; panthera uncia; browse; conservation; education; threatened; species; Human; relationships; panthera; uncia; 570 |
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A short report is presented on the capture and relocation of a snow leopard in northern Pakistan. Villagers discovered the leopard attacking their goats and captured it. WWF-Gilgit relocated the leopard to a remote area. slj. |
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AUTHOR ADDRESS: 1172 Bougy, Switzerland. tel/fax: +41 (021) 808-6012; e-mail: pjackson@iprolink.ch
Document Type: English |
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SLN @ rana @ 336 |
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430 |
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McCarthy, T.; Allen, P. |
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Knitting for snow leopards |
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1999 |
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30 |
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24-25 |
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conservation-programs; endangered; threatened-species; human-dimensions; management; conservation; asia; Mongolia; herder; herding; herders; browse; threatened; species; programs; Human; dimensions.; 1040 |
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The authors describe an innovative conservation program for the endangered snow leopard. A program was established in which herding families in Mongolia knit scarves, gloves, and hats from camel, sheep, and cashmere wool for sale as eco-friendly products. The program increases family incomes, brings in revenue for conservation programs, and educates the herders on the leopards. klf. |
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Full Text at URL. Author Contact: 4649 Sunnyside Ave N. ,Suite 325, Seattle Wa 98103Document Type: English |
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SLN @ rana @ 368 |
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659 |
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Marma, B.B.; Yunchis, V.V. |
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Observations on the breeding, management and physiology of Snow leopards (Panthera u. uncia) at Kaunas Zoo from 1962 to 1967 |
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1968 |
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Canids and Felids in Captivity |
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66-73 |
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observations; breeding; management; physiology; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; panthera; uncia; zoo; felids; captivity |
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Zoological Society of London |
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Jarvis, C.; Biegler, R. |
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SLN @ rana @ 1004 |
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649 |
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Fox, J.L.; Chundawat, R.S. |
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Wolves in the Transhimalayan region of India: The continued survival of a low-density population |
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1995 |
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Canadian Circumpolar Institute Occasional Publication No.35; Ecology and conservation of wolves in a changing world |
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35 |
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95-103 |
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Competition; Population-Density; Tibetan-Wolf; Transhimalayan-Region; Wildlife-Management; browse; population; density; tibetan; wolf; wildlife; management; transhimalayan; region; 710 |
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Canadian Cirumpolar Institute, University of Alberta, Edmonton, Alberta, Canada/Second North American Symposium on Wolves, Edmonton, Alberta, Canada, August 25-27, 1992 |
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SLN @ rana @ 272 |
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306 |
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Li, J., Yin, H., Wang, D., Jiagong, Z., Lu, Zhi |
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Human-snow leopard conflicts in the Sanjiangyuan Region of the Tibetan Plateau |
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2013 |
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Biological Conservs |
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166 |
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118-123 |
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Panthera uncia, Human-wildlife conflict, Traditional use, Livestock depredation, Economic value, Cultural image, Attitude |
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Conflicts between humans and snow leopards are documented across much of their overlapping distribution
in Central Asia. These conflicts manifest themselves primarily in the form of livestock depredation
and the killing of snow leopards by local herders. This source of mortality to snow leopards is a key conservation concern. To investigate human-snow leopard conflicts in the Sanjiangyuan Region of the Tibetan Plateau, we conducted household interviews about local herders’ traditional use of snow leopard
parts, livestock depredation, and overall attitudes towards snow leopards. We found most respondents
(58%) knew that snow leopard parts had been used for traditional customs in the past, but they claimed
not in the past two or three decades. It may be partly due to the issuing of the Protection of Wildlife Law
in 1998 by the People’s Republic of China. Total livestock losses were damaging (US$ 6193 per household
in the past 1 year), however snow leopards were blamed by herders for only a small proportion of those
losses (10%), as compared to wolves (45%) and disease (42%). Correspondingly, the cultural images of
snow leopards were neutral (78%) and positive (9%) on the whole. It seems that human-snow leopard
conflict is not intense in this area. However, snow leopards could be implicated by the retaliatory killing
of wolves. We recommend a multi-pronged conservation program that includes compensation, insurance
programs, and training local veterinarians to reduce livestock losses. |
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1399 |
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Chen, P., Gao, Y., Lee, A. T. L., Cering, L., Shi, K., Clark, S. G. |
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Human–carnivore coexistence in Qomolangma (Mt. Everest) Nature Reserve, China: Patterns and compensation |
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2016 |
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Biological Conservation |
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197 |
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18-26 |
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Conflict Compensation Human–carnivore coexistence Management Predation patterns Qomolangma Nature Reserve |
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Livestock depredation by large carnivores is frequently reported in Qomolangma (Mt. Everest) National Nature Reserve, Tibet Autonomous Region of China. Seeking to minimize conflicts, we assessed depredation patterns and ways to upgrade the compensation program. We gathered 9193 conflict records over 2011–2013 to determine the extent and tempo-spatial patterns of the depredation.Weinterviewed 22 local officials and 94 residents to learn their views on depredations and to assess the adequacy of compensation. Data showed that wolves (Canis lupus), lynx (Lynx lynx), and snowleopards (Panthera uncia)were themajor livestock predators. Total livestock
loss accounted for 1.2% of the entire stockholding (n=846,707) in the region. Wolves and lynx tended to take sheep and goats,whereas snowleopards favored yaks and cattle in relation to their proportional abundance. Predation mostly occurred in March through July. Livestock depredation by all predators when combined was best explained by terrain ruggedness and density of small- and large-bodied livestock. Temporal and spatial predation patterns variedamong carnivores.Most respondents (74%) attributed depredation causes to an increase in carnivore abundance. Only 7% blamed lax livestock herding practice for predation losses. Five percent said that
predation was the result of livestock population increases, while 11% had no idea. The compensation scheme was found to be flawed in all aspects—predation verification, application procedure, compensation standard, operational resource allocation, making payment, and other problems. To enhance management for human–carnivore coexistence, we recommend a problem-oriented, integrated, adaptive approach that targets the complex social context of the conflict and addresses the interconnected functions of decision-making process. |
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