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Author |
Jackson, R. |
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Title |
Threatened Cats of Asia; Snow Leopard |
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Journal Article |
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1978 |
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Wildlife |
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20 |
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403-405 |
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asia; Nepal; browse; 3120 |
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SLN @ rana @ 42 |
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432 |
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Author |
Jackson, R. |
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Title |
Aboriginal hunting in West Nepal with reference to musk deer (Moschus moschiferous) and the snow leopard (Panthera uncia) |
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Journal Article |
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Year |
1979 |
Publication |
Biol.Conservation |
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16 |
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Pages |
63-72 |
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Nepal; hunting; poaching; predator; prey; browse; 3720 |
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Describes local hunting methods,economics of hunting and estimated impact on snow leopard populations. Comments on conservation measures taken by government of Nepal |
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SLN @ rana @ 55 |
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433 |
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Author |
Jackson, R. |
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Title |
On the trail of the elusive snow leopard |
Type |
Journal Article |
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Year |
1986 |
Publication |
World Wildlife Fund Monthly Report |
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Volume |
May |
Issue |
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Pages |
127-132 |
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Keywords |
Wwf; Nepal; asia; browse; world-wildlife-fund; 3130 |
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Call Number |
SLN @ rana @ 92 |
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435 |
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Author |
Xuedong, X.; Jackson, R.; Zongyi, W. |
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Title |
Herd characteristics and habitat use of a blue sheep population in the Qomolangma Nature Preserve |
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Conference Article |
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Year |
1994 |
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97-104 |
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Nepal; prey; Qomolangma; protected-area; parks; reserves; refuge; blue-sheep; habitat; Pseudois-nayaur; blue; sheep; browse; protected; area; protected area; 3480 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Notes |
Full text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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no |
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Call Number |
SLN @ rana @ 263 |
Serial |
1041 |
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Author |
Jackson, R. |
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Title |
Snow Leopard Recovery Plan: Preliminary Recommendations |
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Report |
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Year |
1990 |
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1-10 |
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Submitted to Species Survival Commission, Cat Specialist Group 31 January 1990. |
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no |
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SLN @ rana @ |
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1118 |
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Author |
Miller, D.J.; Jackson, R. |
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Title |
Livestock and Snow Leopards:making room for competing users on the Tibetian Plateau |
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Conference Article |
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Year |
1994 |
Publication |
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Abbreviated Journal |
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Volume |
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Issue |
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Pages |
315-328 |
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Keywords |
livestock; Tibet; herder; herders; predator; prey; protected-areas; parks; reserves; refuge; Tibetian-Plateau; ungulates; wild-yak; blue-sheep; pika; marmots; gazelle; antelope; Qomolangma; Namcha-Barwa; Chang-Tang; habitat; grazing; wolves; pens; enclosures; bounties; bounty; pelts; skins; coats; furs; poisoning; medicine; bones; land-use; conservation; ecology; blue; sheep; browse; tibetian; plateau; wild; yak; namcha; barwa; change; tang; land use; land; 2800 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Notes |
Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
Approved |
no |
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Call Number |
SLN @ rana @ 244 |
Serial |
676 |
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Author |
Jackson, R., Hillard, D. |
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Title |
The Snow Leopard Conservancy Year-end report 2002 |
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Report |
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2002 |
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Abstract |
While the SLC is just two years old, our twenty years of field experience, numerous contacts and well-established professional relationships have enabled us to work as a mature organization. The Wildlife Conservation Network (WCN) has been instrumental in building awareness of the SLC within the community, and in raising $85,000 in individual donations and merchandise sales which comprised 46% of our 2002 operating budget. With our overhead costs kept to a minimum and being substantially underwritten, donor dollars can be used directly and effectively in the field. With our donors and volunteers committed to helping us build our sustainability, we look forward to even greater success in saving snow leopards in partnership with local people. |
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no |
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SLN @ rana @ |
Serial |
1334 |
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Author |
Jackson, R., Ahlborn, G.G. |
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Title |
Appendix: Snow leopard managment recommendations provided to HMG in: Himalayan Snow Leopard Project: Final Progress Report, Phase I. Report: 1-7. Himalayan |
Type |
Report |
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Year |
1986 |
Publication |
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Abbreviated Journal |
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1-7 |
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Keywords |
action plan, CCT, conservation, Himalaya, human wildlife conflict, hunting, livestock, local participation, local people, management/protected |
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Abstract |
Preliminary recommendations for the management of snow leopard and its prey are provided for the Langu Valley segment of the Shey-Pkoksundo National Park. Park-wide and country-wide conservation options and management recommendations await results of the surveys scheduled for 1987. The following management objectives are formulated: 1) Protection and ultimate restoration of all natural communities within the area 2) Special protection measures for snow leopard and musk deer (strict control of hunting and livestock grazing) 3) Secure natural resources around local villages 4) Respect traditional rights of villagers, while controlling high impact human activities 5) Secure cooperation of local people. These objectives are refined and recommendations for concrete conservation actions are made.
Notes: document is a part of the Himalayan Snow Leopard Project: Final Progress Report, Phase I |
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no |
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SLN @ rana @ |
Serial |
1119 |
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Author |
Jackson, R., Hunter, D.O. |
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Title |
Snow leopard Survey and conservation handbook (First edition) |
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Report |
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Year |
1995 |
Publication |
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Abbreviated Journal |
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Pages |
1-120 |
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Keywords |
CCT, census, conservation, habitat, method, monitoring, prey, snow leopard, survey, Uncia uncia |
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Abstract |
The objectives of this handbook (First edition) are to provide standard procedures for conducting snow leopard status and distribution surveys; suggest uniform methods for assessing the status and relative abundance of large prey species (ungulates such as blue sheep, argali, markhor, Himalayan tahr, urial, ibex, red deer, and roe deer); offer guidance in evaluating habitat quality and identifying the major environmental factors affecting species welfare; and provide standard forms for reporting the results of these field surveys, and a process for feeding information developed by the International Snow Leopard Trust into Snoe Leopard Information Management System (SLIMS). |
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Corporate Author |
International Snow Leopard Trust |
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no |
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SLN @ rana @ |
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1120 |
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Author |
Villarrubia, C.; Jackson, R. |
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Title |
Snow Leopard Conservation on a Regional Basis: Elements in Planning Protected Areas |
Type |
Conference Article |
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Year |
1994 |
Publication |
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Abbreviated Journal |
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Pages |
253-263 |
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Keywords |
conservation; protected-area; parks; reserves; refuge; planning; governments; local-peoples; herders; livestock; life-history; home-range; seasonal-shifts; core-areas; dispersal; habitat; ecology; fragmentation; buffers; zones; corridors; barriers; browse; protected; area; local people; local; history; home range; seasonal; shifts; core; 3540 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Full text available at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 264 |
Serial |
986 |
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Author |
Froede, K. and Jackson, R. |
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Title |
Snow Leopard Manual Field Study Techniques for the Kingdom Nepal |
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Report |
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Year |
2001 |
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Abbreviated Journal |
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1-69 |
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Keywords |
analysis, census, data, field work, forms, manual, method, methods, monitoring, research, signs, snow leopard, survey, techniques, transects, Uncia uncia |
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Abstract |
The publication of this manual aims sharing and facilitating the study on snow leopard and its prey species among mid-level professionals interested in conducting fieldwork on their own. The manual is derived from the 1996 “Snow Leopard Survey and Conservation Handbook” written by Dr. Rodney Jackson and Dr. Don Hunter and published by International Snow Leopard Trust (ISLT) based in seatle, Washington, USA. The first section introduces the topic, the second and third section deal with presence/ absence and abundance survey methods. The various survey-froms with instructions are given in the annexes. |
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Address |
Baluwatar, PO. Box: 7660, Kathmandu, Nepal |
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Corporate Author |
WWF Nepal Program |
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WWF Nepal |
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Kathmandu, Nepal |
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SLN @ rana @ |
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1128 |
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Author |
Jackson, R.; Fox, J. L. |
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Title |
Report on the fourth SLIMS training workshop, Bhutan |
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1997 |
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1-21 |
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May 13-30, 1997; report for International Snow Leopard Trust |
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1165 |
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Author |
Singh, J.; Jackson, R. |
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Title |
Transfrontier conservation areas: Creating opportunities for conservation, peace, and the snow leopard in Central Asia |
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1999 |
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International Journal of Wilderness |
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5 |
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December |
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7-12 |
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SLN @ rana @ |
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1166 |
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Author |
Jackson, R. |
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Title |
Threatened wildlife, crop, and livestock depredation and grazing in the Makalu-Barun Conservation Area |
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1990 |
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April |
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1-105 |
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Nepal, Makalu-Barun Conservation Area, grazing, depredation |
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SLN @ rana @ |
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1170 |
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Author |
Janeč ka, J.E., Munkhtsog, B., Jackson, R.M., Naranbaatar, G., Mallon, D.P. & Murphy, W.J. |
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Title |
Comparison of noninvasive genetic and camera-trapping techniques for surveying snow leopards |
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Journal Article |
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2011 |
Publication |
Journal of Mammalogy |
Abbreviated Journal |
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92 |
Issue |
4 |
Pages |
771-783 |
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The endangered snow leopard (Panthera uncia) is widely but sparsely distributed throughout the mountainous regions of central Asia. Detailed information on the status and abundance of the snow leopard is limited because of the logistical challenges faced when working in the rugged terrain it occupies, along with its secretive nature. Camera-trapping and noninvasive genetic techniques have been used successfully to survey this felid. We compared noninvasive genetic and camera-trapping snow leopard surveys in the Gobi Desert of Mongolia. We collected 180 putative snow leopard scats from 3 sites during an 8-day period along 37.74 km of transects. We then conducted a 65-day photographic survey at 1 of these sites, approximately 2 months after scat collection. In the site where both techniques were used noninvasive genetics detected 5 individuals in only 2 days of fieldwork compared to 7 individuals observed in the 65-day camera-trapping session. Estimates of population size from noninvasive genetics ranged between 16 and 19 snow leopards in the 314.3-km2 area surveyed, yielding densities of 4.9–5.9 individuals/100 km2. In comparison, the population estimate from the 65-day photographic survey was 4 individuals (adults only) within the 264-km2 area, for a density estimate of 1.5 snow leopards/100 km2. Higher density estimates from the noninvasive genetic survey were due partly to an inability to determine age and exclude subadults, reduced spatial distribution of sampling points as a consequence of collecting scats along linear transects, and deposition of scats by multiple snow leopards on common sites. Resulting differences could inflate abundance estimated from noninvasive genetic surveys and prevent direct comparison of densities derived from the 2 approaches unless appropriate adjustments are made to the study design. |
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American Society of Mammalogists |
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English |
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DOI: 10.1644/10-MAMM-A-036.1; URL: http://www.bioone.org/doi/full/10.1644/10-MAMM-A-036.1 |
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SLN @ rana @ |
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1351 |
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Hacker, C., Atzeni, L., Munkhtsog, B., Munkhtsog, B., Galsandorj, N., Zhang, Y., Liu, Y., Buyanaa, C., Bayandonoi, G., Ochirjav, M., Farrington, J. D., Jevit, M., Zhang, Y., Wu, L. Cong, W., Li, D., Gavette, C., Jackson, R., Janecka, J. E. |
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Genetic diversity and spatial structures of snow leopards (Panthera uncia) reveal proxies of connectivity across Mongolia and northwestern China |
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2022 |
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Landscape Ecology |
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1-19 |
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Admixture · Central Asia · Connectivity · Habitat Modeling · Landscape Genetics · Noninvasive Genetics · MEM · Spatial Structures |
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Understanding landscape connectivity and population genetic parameters is imperative for threatened species management. However, such information is lacking for the snow leopard (Panthera uncia). This study sought to explore hierarchical snow leopard gene flow patterns and drivers of genetic structure in Mongolia and China. A total of 97 individuals from across Mongolia and from the north-eastern edge of the Qinghai-Tibetan Plateau in Gansu Province to the middle of Qinghai Province in China were genotyped across 24 microsatellite loci. Distance-based frameworks were used to determine a landscape scenario best explaining observed genetic structure. Spatial and non-spatial methods were used to investigate fine-scale autocorrelation and similarity patterns as well as genetic structure and admixture. A genetic macro-division between populations in China and Mongolia was observed, suggesting that the Gobi Desert is a substantial barrier to gene flow. However, admixture and support for a resistance-based mode of isolation suggests connective routes that could facilitate movement. Populations in Mongolia had greater connectivity, indicative of more continuous habitat. Drivers of genetic structure in China were difficult to discern, and fine-scale sampling is needed. This study elucidates snow leopard landscape connectivity and helps to prioritize conservation areas. Although contact zones may have existed and occasional crossings can occur, establishing corridors to connect these areas should not be a priority. Focus should be placed on maintaining the relatively high connectivity for snow leopard populations within Mongolia and increasing research efforts in China. |
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SLN @ rakhee @ |
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1717 |
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Johansson, O., Agvaantseren, B., Jackson, R., Kachel, S., Kubanychbekov, Z., McCarthy, T., Mishra, C., Ostrowski, S., Kulenbekov, R., Rajabi, A. M., Subba, S. |
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Body measurements of free-ranging snow leopards across their range |
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2022 |
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Snow Leopard Reports |
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1 |
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1-6 |
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Body mass, body size, carnivore, morphology, Panthera uncia |
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We provide body measurements of snow leopards collected from 55 individuals sampled in five of the major mountain ranges within the species distribution range; the Altai, Hindu Kush, Himalayas, Pamirs and Tien Shan mountains. Snow leopards appear to be similarly sized across their distribution range with mean body masses of 36 kg and 42 kg for adult females and adult males, respectively. In contrast to other large felids, we found little variation in body size and body mass between the sexes; adult males were on average 5% longer and 15% heavier than adult females. |
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no |
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SLN @ rakhee @ |
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1711 |
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Thapa, K., Jackson, R., Gurung, L, Acharya, H. B., Gurung, R. K., |
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Applying the double observer methodology for assessing blue sheep population size in Nar Phu valley, Annapurna Conservation Area, Nepal |
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Journal Article |
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2021 |
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Wildlife Biology |
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1-11 |
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blue sheep, density estimation, double observer counts, Nepal, Panthera uncia, prey abundance, Pseudois nayaur, snow leopard, viewshed mapping |
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This study was undertaken in spring, 2019 to assess the applicability of the double-observer survey method for estimating blue sheep Pseudois nayaur abundance in Nar-Phu valley of Manang District located in Annapurna Conservation Area of northern Nepal. Since counting large mammals in rugged mountain habitat poses a special challenge, we tested the efficacy of the double observer method for generating robust population estimates for this important protected area. The overall detection probability for observers (O1 and O2) was 0.94 and 0.91 for a total of 106 groups comprised of 2059 individual blue sheep. We estimated the area’s blue sheep population at 2070 (SE ± 168.77; 95% CI 2059–2405) for the 246.2 km2 of sampled habitat. We determined blue sheep to be widely distributed within the study area with a mean density of 8.4 individuals per km2 based on a total study area of 246.2 km2. We discuss demographic population structure and identify limitations when applying the double observer approach, along with recommending viewshed mapping for ensuring more robust density estimates of mountain-dwelling ungulates like blue sheep or ibex that inhabit extremely heterogeneous terrain which strongly influences sighting distances and overall animal detection rates. |
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SLN @ rakhee @ |
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1666 |
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Poyarkov, A. D., Munkhtsog, B., Korablev, M. P., Kuksin, A. N., Alexandrov, D. Y., Chistopolova, M. D.,Hernandez-Blanco, J. A., Munkhtogtokh, O., Karnaukhov, A. S., Lkhamsuren, N., Bayaraa, M., Jackson, R. M., Maheshwari, A., Rozhnov, V. V. |
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Assurance of the existence of a trans-boundary population of the snow leopard (Panthera uncia) at Tsagaanshuvuut – Tsagan- Shibetu SPA at the Mongolia-Russia border |
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Journal Article |
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2020 |
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Integrative Zoology |
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15 |
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224-231 |
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FST, home range, Panthera uncia, snow leopard, trans-boundary population |
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The existence of a trans-boundary population of the snow leopard (Panthera uncia) that inhabits the massifs of Tsagaanshuvuut (Mongolia) – Tsagan-Shibetu (Russia) was determined through non-invasive genetic analysis of scat samples and by studying the structure of territory use by a collared female individual. The genetic analysis included species identification of samples through sequencing of a fragment of the cytochrome b gene and individual identification using a panel of 8 microsatellites. The home range of a female snow leopard marked with a satellite Global Positioning System (GPS) collar was represented by the minimum convex polygon method (MCP) 100, the MCP 95 method and the fixed kernel 95 method. The results revealed insignificant genetic differentiation between snow leopards that inhabit both massifs (minimal fixation index [FST]), and the data testify to the unity of the cross-border group. Moreover, 5 common individuals were identified from Mongolian and Russian territories. This finding clearly shows that their home range includes territories of both countries. In addition, regular movement of a collared snow leopard in Mongolia and Russia confirmed the existence of a cross-border snow leopard group. These data support that trans-boundary conservation is important for snow leopards in both countries. We conclude that it is crucial for Russia to study the northern range of snow leopards in Asia. |
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no |
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SLN @ rakhee @ |
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1493 |
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Li, J., Weckworth, B. V., McCarthy, T. M., Liang, X., Liu, Y., Xing, R., Li, D., Zhang, Y., Xue, Y., Jackson, R., Xiao, L., Cheng, C., Li, S., Xu, F., Ma, M., Yang, X., Diao, K., Gao, Y., Song, D., Nowell, K., He, B., Li, Y., McCarthy, K., Paltsyn, M. Y., Sharma, K., Mishra, C., Schaller, G. B., Lu, Z., Beissinger, S. R. |
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Title |
Defining priorities for global snow leopard conservation landscapes |
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Journal Article |
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2019 |
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Biological Conservation |
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241 |
Issue |
108387 |
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1-10 |
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Panthera uncia, Conservation prioritization, Landscape Conservation Unit, Connectivity, Linkage |
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The snow leopard (Panthera uncia) is an apex predator on the Tibetan Plateau and in the surrounding mountain ranges. It is listed as Vulnerable in the IUCN's Red List. The large home range and low population densities of this species mandate range-wide conservation prioritization. Two efforts for range-wide snow leopard conservation planning have been conducted based on expert opinion, but both were constrained by limited knowledge and the difficulty of evaluating complex processes, such as connectivity across large landscapes. Here, we compile > 6000 snow leopard occurrence records from across its range and corresponding environmental covariates to build a model of global snow leopard habitat suitability. Using spatial prioritization tools, we identi!ed seven large continuous habitat patches as global snow leopard Landscape Conservation Units (LCUs). Each LCU faces differing threat levels from poaching, anthropogenic development, and climate change. We identi!ed ten po- tential inter-LCU linkages, and centrality analysis indicated that Tianshan-Pamir-Hindu Kush-Karakorum, Altai, and the linkage between them play a critical role in maintaining the global snow leopard habitat connectivity. |
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no |
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SLN @ rakhee @ |
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1490 |
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Mallon, D. P., Jackson, R. M. |
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Title |
A downlist is not a demotion: Red List status and reality |
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2017 |
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Oryx |
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1-5 |
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Cryptic, IUCN Red List, Panthera uncia, population estimate, snow leopard, species assessment |
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Assessments of biodiversity status are needed to
track trends, and the IUCN Red List has become the accepted
global standard for documenting the extinction
risk of species. Obtaining robust data on population size is
an essential component of any assessment of a species� status,
including assessments for the IUCN Red List. Obtaining
such estimates is complicated by methodological and
logistical issues, which are more pronounced in the case of
cryptic species, such as the snow leopard Panthera uncia.
Estimates of the total population size of this species have,
to date, been based on little more than guesstimates, but a
comprehensive summary of recent field research indicates
that the conservation status of the snow leopard may be
less dire than previously thought. A revised categorization,
from Endangered to Vulnerable, on the IUCN Red List was
proposed but met some opposition, as did a recent, similar
recategorization of the giant panda Ailuropoda melanoleuca.
Possible factors motivating such attitudes are discussed.
Downlisting on the IUCN Red List indicates that the species
concerned is further from extinction, and is always to be
welcomed, whether resulting from successful conservation
intervention or improved knowledge of status and trends.
Celebrating success is important to reinforce the message
that conservation works, and to incentivize donors. |
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no |
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SLN @ rakhee @ |
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1460 |
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Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species. |
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no |
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SLN @ rakhee @ |
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1428 |
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Janecka, J. E., Jackson, R., Munkhtsog, B., Murphy, W. J. |
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Characterization of 9 microsatellites and primers in snow leopards and a species-specific PCR assay for identifying noninvasive samples |
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2014 |
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Conservation Genetic Resource |
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6 |
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2 |
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369:373 |
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Microsatellites,Cytochrome b, Snow Leopard, Noninvasive genetics, Individual identification |
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Molecular markers that can effectively identify noninvasively collected samples and provide genetic
information are critical for understanding the distribution, status, and ecology of snow leopards (Panthera uncia). However, the low DNA quantity and quality in many
noninvasive samples such as scats makes PCR amplification and genotyping challenging. We therefore designed primers for 9 microsatellites loci previously isolated in the
domestic cat (Felis catus) specifically for snow leopard studies using noninvasive samples. The loci showed moderate levels of variation in two Mongolian snow leopard
populations. Combined with seven other loci that we previously described, they have sufficient variation (He = 0.504, An = 3.6) for individual identification and
population structure analysis. We designed a species species specific PCR assay using cytochrome b for identification of unknown snow leopard samples. These molecular markers
facilitate in depth studies to assess distribution, abundance, population structure, and landscape connectivity of this endangered species.
endangered species |
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SLN @ rakhee @ |
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1427 |
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Author |
Ale, S., Shrestha, B., and Jackson, R. |
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On the status of Snow Leopard Panthera Uncia (Schreber 1775) in Annapurna, Nepal |
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Journal Article |
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2014 |
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Journal of Threatened Taxa |
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6(3) |
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5534-5543 |
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Annapurna, Blue Sheep, Buddhism, camera-trapping, Himalayas, Mustang, sign-survey, Snow Leopard. |
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1407 |
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Rosen, T. Hussain, S. Mohammad, G. Jackson, R. Janecka, J, E. Michel, S. |
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Reconciling Sustainable Development of Mountain Communities With Large Carnivore Conservation |
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Journal Article |
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2012 |
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Mountain Research and Development |
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32(3) |
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286-293 |
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Carnivores; conflict; conservation; incentives; livestock; insurance scheme; community empowerment; Pakistan |
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While the world is becoming increasingly interconnected and interdependent, physically and culturally, the wildlife of remote mountain regions is being affected both positively and negatively by such interconnectedness. In the case of snow leopards, the conservation impact has been largely, and rather unexpectedly, positive: Species-focused conservation projects, such as Project Snow Leopard (PSL) in
Gilgit-Baltistan, remain mainly externally driven initiatives. PSL, initiated as a small pilot project in 1998, has relied on an approach that includes the use of an insurance scheme, the deployment of mitigation measures, and the empowerment of local governance. This approach has been successful in
reducing the conflict with snow leopards and has built greater tolerance toward them. PSL is managed by local communities and cofinanced by them. PSL communities throughout the region are bearing the burden of carnivore conservation, and they are unwittingly subsidizing their populations by ‘‘feeding’’
them their livestock even though they are an economic threat to them. In this article, we argue that external intervention in the form of efforts that help alleviate the consequences of conflict through local empowerment have had a positive impact on the local mountain societies. We also show that such interventions have resulted in tangible conservation results, with the number of snow leopards staying at least stable. Our experience also shows that while the incentive component is critical, it is also part of a larger approach—one that includes developing and supporting local governance structures, improving access to education, and offering a range of tools to reduce the conflict that can be implemented
locally. Finally, we suggest that investing in this approach— one that recognizes the species and local-context complexities surrounding the implementation of conservation incentives—can continue to inform international practices and guidelines for reducing human–wildlife conflicts worldwide. |
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1387 |
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