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Author Jack, R. url 
  Title DNA Testing and GPS positioning of snow leopard (Panthera uncia) genetic material in the Khunjerab National Park Northern Areas, Pakistan Type Report
  Year (up) 2008 Publication Abbreviated Journal  
  Volume Issue Pages 1-15  
  Keywords project; snow; snow leopard; snow-leopard; leopard; network; conservation; program; Dna; Gps; panthera; panthera uncia; Panthera-uncia; uncia; Khunjerab; Khunjerab-National-Park; national; national park; National-park; park; areas; area; Pakistan; protection; snow leopards; snow-leopards; leopards; local; local people; people; information; number; range; Animals; Animal; study; distribution; management; professional; techniques; capture; use; field; country; China; border; work; art; Gis; Forest; manage; Wwf; maps; map; location; training; research; mountain  
  Abstract The protection of Snow Leopards in the remote and economically disadvantaged Northern Areas of Pakistan needs local people equipped with the skills to gather and present information on the number and range of individual animals in their area. It is important for the success of a conservation campaign that the people living in the area are engaged in the conservation process. Snow Leopards are elusive and range through inhospitable terrain so direct study is difficult. Consequently the major goals for this project were twofold, to gather information on snow leopard distribution in this area and to train local university students and conservation management professionals in the techniques used for locating snow leopards without the need to capture or even see the animals. This project pioneered the use of DNA testing of field samples collected in Pakistan to determine the distribution of snow leopards and to attempt to identify individuals. These were collected in and around that country's most northerly national park, the Kunjurab National Park, which sits on the Pakistan China border. Though the Northern Areas is not a well developed part of Pakistan, it does possess a number of institutions that can work together to strengthen snow leopard conservation. The first of these is a newly established University with students ready to be trained in the skills needed. Secondly WWF-Pakistan has an office in the main town and a state of the art GIS laboratory in Lahore and already works closely with the Forest Department who manage the national park. All three institutions worked together in this project with WWF providing GIS expertise, the FD rangers, and the university students carrying out the laboratory work. In addition in the course of the project the University of the Punjab in Lahore also joined the effort, providing laboratory facilities for the students. As a result of this project maps have been produced showing the location of snow leopards in

two areas. Preliminary DNA evidence indicates that there is more than one animal in this

relatively small area, but the greatest achievement of this project is the training and

experience gained by the local students. For one student this has been life changing. Due to

the opportunities provided by this study the student, Nelofar gained significant scientific

training and as a consequence she is now working as a lecturer and research officer for the

Center for Integrated Mountain Research, New Campus University of the Punjab, Lahore

Pakistan
 
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  Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program. Approved no  
  Call Number SLN @ rana @ 1067 Serial 427  
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Author Wei, L.; Wu, X.; Jiang, Z. url 
  Title The complete mitochondrial genome structure of snow leopard Panthera uncia Type Miscellaneous
  Year (up) 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 Xu, A.; Jiang, Z.; Li, C.; Guo, J.; Da, S.; Cui, Q.; Yu, S.; Wu, G. url 
  Title Status and conservation of the snow leopard Panthera uncia in the Gouli Region, Kunlun Mountains, China Type Miscellaneous
  Year (up) 2008 Publication Oryx Abbreviated Journal  
  Volume 42 Issue Pages 460-463  
  Keywords Camera trapping,China,human-wildlife conflict,Kunlun Mountains,Panthera uncia,snow leopard,trace.  
  Abstract The elusive snow leopard Panthera unica is a rare and little studied species in China. Over 1 March-15 May 2006 we conducted a survey for the snow leopard in the Gouli Region, East Burhanbuda Mountain, Kunlun Mountains, Qinghai Province, China, in an area of c. 300 km2 at altitudes of 4,000-4,700 m. We surveyed 29 linear transects with a total length of c. 440 km, and located a total of 72 traces (pug marks, scrapes and urine marks) of snow leopard along four of the transects. We obtained eight photographs of snow leopard from four of six camera traps. We also recorded 1,369 blue sheep, 156 Tibetan gazelles, 47 argali, 37 red deer and one male white-lipped deer. We evaluated human attitudes towards snow leopard by interviewing the heads of 27 of the 30 Tibetan households living in the study area. These local people did not consider that snow leopard is the main predator of their livestock, and thus there is little retaliatory killing. Prospects for the conservation of snow leopard in this area therefore appear to be good. We analysed the potential threats to the species and propose the establishment of a protected area for managing snow leopard and the fragile alpine ecosystem of this region. (c) 2008 Fauna & Flora International.  
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  Call Number SLN @ rana @ 900 Serial 1032  
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Author Wegge, P., Shrestha, R., Flagstad, O. url 
  Title Snow leopard Panthera uncia predation on livestock and wild prey in a mountain valley in northern Nepal: implications for conservation management Type Journal Article
  Year (up) 2012 Publication Wildlife Biology Abbreviated Journal  
  Volume 18 Issue 10.2981/11-049 Pages 131-141  
  Keywords bharal, blue sheep, diet, genetic sampling, naur, Panthera uncia, predation, Pseudois nayaur, scat analysis, snow leopard, wildlife conflict  
  Abstract The globally endangered snow leopard Panthera uncia is sparsely distributed throughout the rugged mountains in Asia.

Its habit of preying on livestock poses a main challenge to management. In the remote Phu valley in northern Nepal, we

obtained reliable information on livestock losses and estimated predator abundance and diet composition from DNA

analysis and prey remains in scats. The annual diet consisted of 42%livestock. Among the wild prey, bharal (blue sheep/

naur) Pseudois nayaur was by far the most common species (92%). Two independent abundance estimates suggested that

there were six snow leopards in the valley during the course of our study. On average, each snow leopard killed about one

livestock individual and two bharal permonth. Predation loss of livestock estimated fromprey remains in scats was 3.9%,

which was in concordance with village records (4.0%). From a total count of bharal, the only large natural prey in the area

and occurring at a density of 8.4 animals/km2 or about half the density of livestock, snow leopards were estimated to

harvest 15.1% of the population annually. This predation rate approaches the natural, inherent recruitment rate of this

species; in Phu the proportion of kids was estimated at 18.4%. High livestock losses have created a hostile attitude against

the snow leopard and mitigation measures are needed. Among innovative management schemes now being implemented

throughout the species’ range, compensation and insurance programmes coupled with other incentive measures are

encouraged, rather than measures to reduce the snow leopard’s access to livestock. In areas like the Phu valley, where the

natural prey base consists mainly of one ungulate species that is already heavily preyed upon, the latter approach, if

implemented, will lead to increased predation on this prey, which over time may suppress numbers of both prey and

predator.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1386  
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Author Suryawanshi, K.R., Bhatnagar, Y. V. B., Redpath, S., Mishra, C. url 
  Title People, predators and perceptions: patterns of livestock depredation by snow leopards and wolves Type Journal Article
  Year (up) 2013 Publication Journal of Applied Ecology Abbreviated Journal  
  Volume 50 Issue Pages 550-560  
  Keywords Canis lupus, Capra ibex, human–wildlife conflict, large carnivores, Panthera uncia, Pseudois nayaur, trans-Himalaya  
  Abstract 1. Livestock depredation by large carnivores is an important conservation and economic concern

and conservation management would benefit from a better understanding of spatial variation

and underlying causes of depredation events. Focusing on the endangered snow leopard

Panthera uncia and the wolf Canis lupus, we identify the ecological factors that predispose

areas within a landscape to livestock depredation. We also examine the potential mismatch

between reality and human perceptions of livestock depredation by these carnivores whose

survival is threatened due to persecution by pastoralists.

2. We assessed the distribution of the snow leopard, wolf and wild ungulate prey through field

surveys in the 4000 km2 Upper Spiti Landscape of trans-Himalayan India. We interviewed local

people in all 25 villages to assess the distribution of livestock and peoples’ perceptions of the risk

to livestock from these carnivores. We monitored village-level livestock mortality over a 2-year

period to assess the actual level of livestock depredation. We quantified several possibly influential

independent variables that together captured variation in topography, carnivore abundance

and abundance and other attributes of livestock. We identified the key variables influencing livestock

depredation using multiple logistic regressions and hierarchical partitioning.

3. Our results revealed notable differences in livestock selectivity and ecological correlates of

livestock depredation – both perceived and actual – by snow leopards and wolves. Stocking

density of large-bodied free-ranging livestock (yaks and horses) best explained people’s threat

perception of livestock depredation by snow leopards, while actual livestock depredation was

explained by the relative abundance of snow leopards and wild prey. In the case of wolves,

peoples’ perception was best explained by abundance of wolves, while actual depredation by

wolves was explained by habitat structure.

4. Synthesis and applications. Our results show that (i) human perceptions can be at odds

with actual patterns of livestock depredation, (ii) increases in wild prey populations will intensify

livestock depredation by snow leopards, and prey recovery programmes must be accompanied

by measures to protect livestock, (iii) compensation or insurance programmes should

target large-bodied livestock in snow leopard habitats and (iv) sustained awareness

programmes are much needed, especially for the wolf.
 
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  Call Number SLN @ rakhee @ Serial 1396  
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Author Jumabay, K., Wegge, P., Mishra, C., Sharma, K url 
  Title Large carnivores and low diversity of optimal prey: a comparison of the diets of snow leopards Panthera uncia and wolves Canis lupus in Sarychat-Ertash Reserve in Kyrgyzstan Type Journal Article
  Year (up) 2013 Publication Oryx Abbreviated Journal  
  Volume Issue Pages 1-7  
  Keywords Canis lupus, Central Asia, food habits, intraguild competition, Panthera uncia, scat analysis  
  Abstract In the cold and arid mountains of Central Asia, where the diversity and abundance of wild ungulates

are generally low, resource partitioning among coexisting carnivores is probably less distinct than in prey-rich areas. Thus, similar-sized carnivores are likely to compete for food. We compared the summer diets of snow leopards Panthera uncia and wolves Canis lupus in Sarychat-Ertash Reserve in the Tien-Shan mountains of Kyrgyzstan, based on analysis of genetically confirmed scats. Abundances of

the principal prey species, argali Ovis ammon and Siberian ibex Capra sibirica, were estimated from field surveys. The diets consisted of few species, with high interspecific overlap (Pianka’s index50.91). Argali was the predominant prey, with .50% frequency of occurrence in both snow leopard and wolf scats. This was followed by Siberian ibex and marmots Marmota baibacina. Being largely unavailable, remains of livestock were not detected in any of the scats. In the snow leopard diet, proportions of argali and ibex were in

line with the relative availabilities of these animals in the Reserve. This was in contrast to the diet of wolf, where argali occurred according to availability and ibex was significantly underrepresented. The high diet overlap indicates that the two predators might compete for food when the diversity of profitable, large prey is low. Competition may be more intense in winter, when marmots are not available. Hunting of argali and ibex outside the Reserve may be unsustainable and therefore reduce their abundances over time. This will

affect both predators negatively and intensify competition for food. Reduction in ibex populations will directly affect the snow leopard, and the wolf is likely to be indirectly affected as a result of increased snow leopard predation of argali.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1397  
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Author Li, J., Yin, H., Wang, D., Jiagong, Z., Lu, Zhi url 
  Title Human-snow leopard conflicts in the Sanjiangyuan Region of the Tibetan Plateau Type Journal Article
  Year (up) 2013 Publication Biological Conservs Abbreviated Journal  
  Volume Issue 166 Pages 118-123  
  Keywords Panthera uncia, Human-wildlife conflict, Traditional use, Livestock depredation, Economic value, Cultural image, Attitude  
  Abstract 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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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1399  
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Author LI. J, WANG. D, YIN. H,ZHAXI. D, JIAGONG. Z,SCHALLER. G. B,MISHRA. C,MCCARTHY. T. M, WANG. H,WU. L,XIAO. L,BASANG. L,ZHANG. Y,ZHOU. Y,LU. Z url 
  Title Role of Tibetan Buddhist Monasteries in Snow Leopard Conservation Type Journal Article
  Year (up) 2013 Publication Conservation Biology Abbreviated Journal  
  Volume 00 Issue Pages 1-8  
  Keywords conservation strategy, distribution, MaxEnt, nature reserve, Panthera uncia, sacred mountain  
  Abstract The snow leopard (Panthera uncia) inhabits the rugged mountains in 12 countries of Central Asia,

including the Tibetan Plateau. Due to poaching, decreased abundance of prey, and habitat degradation, it was listed as endangered by the International Union for Conservation of Nature in 1972. Current conservation strategies, including nature reserves and incentive programs, have limited capacities to protect snow leopards. We investigated the role of Tibetan Buddhist monasteries in snow leopard conservation in the Sanjiangyuan region in China’s Qinghai Province on the Tibetan Plateau. From 2009 to 2011, we systematically surveyed snow leopards in the Sanjiangyuan region. We used the MaxEnt model to determine the relation of their presence to environmental variables (e.g., elevation, ruggedness) and to predict snow leopard distribution. Model results showed 89,602 km2 of snow leopard habitat in the Sanjiangyuan region, of which 7674 km2 lay within Sanjiangyuan Nature Reserve’s core zones. We analyzed the spatial relation between snow leopard habitat and Buddhist monasteries and found that 46% of monasteries were located in snow leopard habitat and 90% were within 5 km of snow leopard habitat. The 336 monasteries in the Sanjiangyuan region could protect more snow leopard habitat (8342 km2) through social norms and active patrols than the nature reserve’s core zones. We conducted 144 household interviews to identify local herders’ attitudes and behavior toward snow leopards and other wildlife. Most local herders claimed that they did not kill wildlife, and 42% said they did not kill wildlife because it was a sin in Buddhism. Our results indicate monasteries play an important role in snow leopard conservation. Monastery-based snow leopard conservation could be extended to other Tibetan Buddhist regions that in total would encompass about 80% of the global range of snow leopards.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1400  
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Author Lovari, S., Minder, I., Ferretti, F., Mucci, N., Randi, E., Pellizzi, B. url 
  Title Common and snow leopards share prey, but not habitats: competition avoidance by large predators Type Journal Article
  Year (up) 2013 Publication Journal of Zoology Abbreviated Journal  
  Volume 291 Issue Pages 127-135  
  Keywords coexistence; resource partitioning; food habits; Panthera uncia; Panthera pardus.  
  Abstract Resource exploitation and behavioural interference underlie competition among

carnivores. Competition is reduced by specializing on different prey and/or spatiotemporal

separation, usually leading to different food habits. We predicted that

two closely related species of large cats, the endangered snow leopard and the

near-threatened common leopard, living in sympatry, would coexist through

habitat separation and exploitation of different prey species. In central Himalaya,

we assessed (2006–2010) habitat and diet overlap between these carnivores. The

snow leopard used grassland and shrubland, whereas the common leopard

selected forest. Contrary to our prediction, snow leopard and common leopard

preyed upon similar wild (Himalayan tahr, musk deer) and domestic species (Bos

spp., dogs). Dietary overlap between snow leopard and common leopard was 69%

(yearly), 76% (colder months) and 60% (warmer months). Thus, habitat separation

should be the result of other factors, most likely avoidance of interspecific

aggression. Habitat separation may not always lead to the use of different prey.

Avoidance of interspecific aggression, rather than exploitation of different

resources, could allow the coexistence of potentially competing large predators.
 
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  Call Number SLN @ rakhee @ Serial 1402  
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Author Lovari, S., Ventimiglia, M., Minder, I. url 
  Title Food habits of two leopard species, competition, climate change and upper treeline: a way to the decrease of an endangered species? Type Journal Article
  Year (up) 2013 Publication Ethology Ecology & Evolution Abbreviated Journal  
  Volume 25 Issue 4 Pages 305-318  
  Keywords carnivore evolution, coexistence, sympatric species, diet, Panthera uncia, Panthera pardus.  
  Abstract For carnivore species, spatial avoidance is one of the evolutionary solutions to

coexist in an area, especially if food habits overlap and body sizes tend to coincide.

We reviewed the diets of two large cats of similar sizes, the endangered snow leopard

(Panthera uncia, 16 studies) and the near-threatened common leopard (Panthera par-

dus, 11 studies), in Asia. These cats share ca 10,000 km2 of their mountainous range,

although snow leopards tend to occur at a significantly higher altitude than common

leopards, the former being a cold-adapted species of open habitats, whereas the latter

is an ecologically flexible one, with a preference for woodland. The spectrum of prey

of common leopards was 2.5 times greater than that of snow leopards, with wild prey

being the staple for both species. Livestock rarely contributed much to the diet. When

the breadth of trophic niches was compared, overlap ranged from 0.83 (weight categories)

to one (main food categories). As these leopard species have approximately

the same size and comparable food habits, one can predict that competition will arise

when they live in sympatry. On mountains, climate change has been elevating the

upper forest limit, where both leopard species occur. This means a habitat increase

for common leopards and a substantial habitat reduction for snow leopards, whose

range is going to be squeezed between the forest and the barren rocky altitudes, with

medium- to long-term undesirable effects on the conservation of this endangered cat
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1403  
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