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Author Maheshwari, A. , Sathyakumar, S.
Title Snow leopard stewardship in mitigating human-wildlife conflict in Hemis National Park, Ladakh, India Type Journal Article
Year 2019 Publication Human Dimensions of Wildlife Abbreviated Journal
Volume (up) Issue Pages 1-5
Keywords Snow leopard; human-wildlife conflict; ecotourism; livelihood; India
Abstract Among large predators, snow leopards (Panthera uncia) and co-predators (e.g., wolves

Canis lupus, lynx Lynx lynx) often cause economic losses, engendering animosity from

local communities in the mountain ecosystem across south and central Asia (Din et al.,

2017; Jackson & Lama, 2016; Maheshwari, Takpa, Kujur, & Shawl, 2010; Schaller, 2012).

These economic losses range from around US $50 to nearly $300 per household,

a significant sum given per capita annual incomes of $250 – $400 (Jackson & Wangchuk,

2004; Mishra, 1997). Recent efforts such as improved livestock husbandry practices

(predator-proof livestock corrals – closed night shelters with covered roof with wiremesh

and a closely fitting iron or wooden door that can be securely locked at night) and

community-based ecotourism (e.g., home stays, guides, porters, pack animals, campsites)

are providing alternative livelihood opportunities and mitigating large carnivores – human

conflict in the snow leopard habitats (Hanson, Schutgens, & Baral, 2018; Jackson, 2015;

Jackson & Lama, 2016; Vannelli, Hampton, Namgail, & Black, 2019). Snow leopard-based

ecotourism provides an opportunity to secure livelihoods and reduce poverty of the

communities living in ecotourism sites across Ladakh (Chandola, 2012; Jackson, 2015).

To understand the role of snow leopard-based ecotourism in uplifting the financial profile

of local communities, mitigating large carnivore – human conflict and eventually changing

attitudes towards large carnivores in Hemis National Park, Ladakh, India, we compared

the estimated financial gains of a snow leopard-based ecotourism to stated livestock

predation losses by snow leopards and wolves.
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Call Number SLN @ rakhee @ Serial 1484
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Author Farhadinia, M. S., Maheshwari, A., Nawaz, M. A., Ambarli, H., Gritsina, M. A., Koshkin, M. A., Rosen, T., Hinsley, A., Macdonald, D. W.
Title Belt and Road Initiative may create new supplies for illegal wildlife trade in large carnivores Type Miscellaneous
Year 2019 Publication Nature Ecology & Evolution Abbreviated Journal
Volume (up) Issue Pages
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Call Number SLN @ rakhee @ Serial 1487
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Author Hanson, J. H., Schutgens, M., Leader-Williams, N.
Title What factors best explain attitudes to snow leopards in the Nepal Himalayas? Type Journal Article
Year 2019 Publication PLoS ONE Abbreviated Journal
Volume (up) Issue Pages 1-19
Keywords
Abstract The snow leopard Panthera uncia is a vulnerable wild felid native to mountainous regions of 12 Asian countries. It faces numerous overlapping threats, including killings by herders retaliating against livestock losses, the illegal wildlife trade, loss of prey and habitat, infra- structure, energy and mining developments, and climate change. The species ranges over large territories that often lie outside of protected areas (PA), so coexistence with human populations across its range is key to its persistence. Human attitudes to snow leopards may be an important factor to consider in reducing overlapping threats to this species. How- ever, this nexus has not been widely studied to date. Attitudes to snow leopard conserva- tion, including actors and interventions, may also be a significant aspect of coexistence. These have also received limited empirical attention. This study therefore explored human attitudes to snow leopards and to snow leopard conservation, the motivations for these atti- tudes and the individual factors that best explained them. Using systematic sampling, a quantitative questionnaire was administered to 705 households at two sites in the Nepal Himalayas: Sagarmatha National Park, with a less decentralised governance model, and Annapurna Conservation Area, with a more decentralised model. Linear regression models were the main form of analysis. Based on these, attitudes to snow leopard conservation emerged as the strongest influence on local attitudes to snow leopards, and vice versa. This was true in both PAs, despite their differing management regimes. Other important explana- tory factors included numbers of livestock owned, years of education, household livelihoods and age. Furthermore, a positive intrinsic motivation was the most common reason given by respondents to explain their attitudes to both snow leopards and snow leopard conservation. These findings demonstrate that, in addition to the usual suite of factors that influence atti- tudes to a species, the way in which its conservation is pursued and perceived also needs consideration. How the snow leopard is conserved may strongly influence its coexistence with local communities.
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Call Number SLN @ rakhee @ Serial 1489
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Author Aruge, S., Batool, H., Khan, F. M., Abbas, F. I., Janjua, S
Title A pilot study�genetic diversity and population structure of snow leopards of Gilgit-Baltistan, Pakistan, using molecular techniques. Type Journal Article
Year 2019 Publication PeerJ Abbreviated Journal
Volume (up) Issue 7672 Pages 1-14
Keywords Population, Genetics, Panthera uncia, Pakistan, Molecular markers
Abstract Background: The Hindu Kush and Karakoram mountain ranges in Pakistan�s northern areas are a natural habitat of the snow leopard (Panthera uncia syn. Uncia uncia) but the ecological studies on this animal are scarce since it is human shy by nature and lives in dif!cult mountainous tracts. The pilot study is conducted to exploit the genetic diversity and population structure of the snow leopard in this selected natural habitat of the member of the wildcat family in Pakistan.

Method: About 50 putative scat samples of snow leopard from !ve localities of Gilgit-Baltistan (Pakistan) along with a control sample of zoo maintained male snow leopard were collected for comparison. Signi!cant quality and quantity of genomic DNA was extracted from scat samples using combined Zhang�phenol�chloroform method and successful ampli!cation of cytochrome c oxidase I gene (190 bp) using mini-barcode primers, seven simple sequence repeats (SSR) markers and Y-linked AMELY gene (200 bp) was done.

Results: Cytochrome c oxidase I gene sequencing suggested that 33/50 (66%) scat samples were of snow leopard. AMELY primer suggested that out of 33 ampli!ed samples, 21 (63.63%) scats were from male and 12 (36.36%) from female leopards. Through successful ampli!cation of DNA of 25 out of 33 (75.75%) scat samples using SSR markers, a total of 68 alleles on seven SSR loci were identi!ed, showing low heterozygosity, while high gene "ow between population.

Discussion: The low gene flow rate among the population results in low genetic diversity causing decreased diversi!cation. This affects the adaptability to climatic changes, thus ultimately resulting in decreased population size of the species.
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Call Number SLN @ rakhee @ Serial 1491
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Author Farrington, J., Tsering, D.
Title Human-snow leopard conflict in the Chang Tang region of Tibet, China Type Journal Article
Year 2019 Publication Biological Conservation Abbreviated Journal
Volume (up) 237 Issue Pages 504-513
Keywords
Abstract In April 2006, the authors conducted a preliminary human-wildlife conflict survey of 300 livestock herders in Shainza, Nyima, and Tsonyi Counties in northern Tibet's sparsely-populated Chang Tang region. This survey revealed a widespread but previously undocumented problem of snow leopard predation on livestock. In June and July 2007, an exploratory human-snow leopard conflict survey of 234 herders in the above counties found that 65.8% of respondents had experienced conflict with snow leopards in the form of livestock kills, with 77.3% of the most recent incidents occurring in the previous five years. These incidents were concentrated in winter and spring and a surprising 39.6% of incidents occurred during the day, often with herders present. Fifteen exploratory snow leopard sign transects totaling 14.85 km were conducted. Abundant snow leopard scrapes as well as pug marks were found, confirming the presence of these secretive cats. A total of 521 blue sheep were counted on and off sign transects indicating widespread availability of wild snow leopard prey. The recent surge in reported snow leopard conflict is likely due to increasing human and livestock populations, establishment of two multiple-use nature reserves accompanied by improved enforcement of wildlife protection laws, and a regional gun and trap ban launched in 2001. However, retaliatory killing of snow leopards in the survey area continues to be a potential threat. Therefore, measures are needed to reduce livestock kills by snow leopards, including corral improvements, improved guarding, establishment of livestock compensation schemes, and educating herders about snow leopard behavior.
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Call Number SLN @ rakhee @ Serial 1600
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Author Vannelli, K., Hampton, M. P., Namgail, T., Black, S. A.
Title Community participation in ecotourism and its effect on local perceptions of snow leopard (Panthera uncia) conservation Type Journal Article
Year 2019 Publication Human Dimensions of Wildlife Abbreviated Journal
Volume (up) Issue Pages 1-14
Keywords Instrumental value; snow leopard; perceptions; ecotourism; human–wildlife conflict
Abstract Local support and involvement is often essential for effective

wildlife conservation. This study assessed the impact of local

involvement in ecotourism schemes on perceptions of wildlife, promotion

of conservation action, types of values that communities placed on

wildlife, and contexts in which wildlife are considered to be most

valuable. The study used qualitative semi-structured interviews

conducted in seven villages in Ladakh, India, which is an important

region of snow leopard (Panthera uncia) habitat. Results indicated that

in these communities, ecotourism-based interventions encourage more

positive perceptions of wildlife species, in particular the snow

leopard. Achieving change in community perceptions of wildlife is key

when implementing ecotourism schemes to enable more effective

conservation, as well as generating local awareness and value for

wildlife toward problematic keystone species such as the snow leopard,

which are frequently the focus of human-wildlife conflict.
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Call Number Serial 1607
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Author Watts, S. W., McCarthy, T. M., Namgail, T.
Title Modelling potential habitat for snow leopards (Panthera uncia) in Ladakh, India Type Research Article
Year 2019 Publication Plos One Abbreviated Journal
Volume (up) Issue Pages 1-14
Keywords
Abstract The snow leopard Panthera uncia is an elusive species

inhabiting some of the most remote and inaccessible tracts of Central

and South Asia. It is difficult to determine its distribution and

density pattern, which are crucial for developing conservation

strategies. Several techniques for species detection combining camera

traps with remote sensing and geographic information systems have been

developed to model the habitat of such cryptic and low-density species

in challenging terrains. Utilising presence-only data from camera traps

and direct observations, alongside six environmental variables

(elevation, aspect, ruggedness, distance to water, land cover, and prey

habitat suitability), we assessed snow leopard habitat suitability

across Ladakh in northern India. This is the first study to model snow

leopard distribution both in India and utilising direct observation

data. Results suggested that elevation and ruggedness are the two most

influential environmental variables for snow leopard habitat

suitability, with highly suitable habitat having an elevation range of

2,800 m to 4,600 m and ruggedness of 450 m to 1,800 m. Our habitat

suitability map estimated approximately 12% of Ladakh’s geographical

area (c. 90,000 km2) as highly suitable and 18% as medium suitability.

We found that 62.5% of recorded livestock depredation along with over

half of all livestock corrals (54%) and homestays (58%) occurred within

highly suitable snow leopard habitat. Our habitat suitability model can

be used to assist in allocation of conservation resources by targeting

construction of livestock corrals to areas of high habitat suitability

and promoting ecotourism programs in villages in highly suitable snow

leopard habitat.
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Call Number Serial 1608
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Author Lewis, M., Songster, E.E.
Title Studying the snow leopard: reconceptualizing conservation across the China–India border Type Journal Article
Year 2016 Publication British Journal for the History of Science Abbreviated Journal BJHS
Volume (up) Themes 1 Issue 1 Pages 169-198
Keywords
Abstract The snow leopard is a highly charismatic megafauna that elicits admiration, concern and donations from individuals and NGOs in the West. In its home territories, however, it is a threat to local communities’ livestock and a potential source of income for its pelt and parts. Conservation and study are further challenged by its range; snow leopards traverse the borders separating China, India and ten other countries with long histories of tension with each other as well as internal political and economic struggles. This transnational animal provides an ideal case study for the consideration of transnational conservation science in the recent past.
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Call Number Serial 1638
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Author Esson, C. L.
Title A One Health approach to investigating the health and prevalence of zoonotic pathogens in snow leopards, sympatric wildlife, domestic animals and humans in the South Gobi Desert in Mongolia Type Journal Article
Year 2018 Publication PhD Thesis Abbreviated Journal
Volume (up) Issue Pages 1-242
Keywords
Abstract The endangered Snow leopard (Panthera uncia) inhabits the high mountain regions through central Asia and is subjected to numerous threats including poaching for traditional Chinese medicine, retribution killing for preying on domestic stock, and habitat fragmentation. However the occurrence and impact of disease on snow leopard populations is unknown. As emerging infectious diseases of wildlife can be an insidious yet important cause of population decline due to mortality or reproductive failure, my study aimed initially to gain knowledge of pathogens circulating among wild and domestic hosts in this region. I used a broad One Health approach to survey a range of species to collect data on disease occurrence that would be useful in improving human and livestock health, as well as snow leopard conservation.

This study is set in the Tost Mountains of the South Gobi Desert of Mongolia and was prompted due to the unexplained deaths of four snow leopards detected within a short timeframe during an ecological study by members of the Snow Leopard Trust. However, investigating disease occurrence in remote, rare and endangered species is a challenge due to inaccessibility of sites, difficulty of capture, and processing samples without facilities.

A One Health approach uses multidisciplinary expertise such as ecological, medical and veterinary, to understand host, pathogen and environmental disease factors. This approach is especially useful for diseases that transfer between people, domestic animals and wildlife. As snow leopards are a rare and elusive species, my surveys were aimed at assessing pathogens circulating in snow leopards as well as in sympatric wild and domestic animals. I collected samples from the following hosts: snow leopards – the target species; rodents which are ubiquitous over the study area and are a suitable sentinel species; ibex which are a native ungulate and natural prey species of the snow leopard; domestic goats which are also a prey species of the snow leopard; free-ranging domestic dogs which interact with the goats. The local indigenous people interact with all these species including snow leopards, mostly via retribution killing. Water samples were also collected from waterholes and wells, which are communal meeting places as drinking sources for all species, hence enabling pathogen exchange. Samples collected included blood samples, faecal samples or rectal swabs and ectoparasites if present. These samples were transported to laboratories in Sweden and Belgium where I conducted diagnostic assays for zoonotic pathogens that are present in other regions of Mongolia and impact the health of humans and animals. I used enzyme- linked immune assay (ELISA), polymerase chain reaction (PCR) and next-generation sequencing (NGS) for pathogens including Coxiella burnetii, Toxoplasma gondii, Leptospira spp., Brucella spp., Yersinia pestis and tick borne encephalitis virus. Serovars of Leptospira were elucidated using microscopic agglutination tests (MAT). The dog blood samples were also tested for canine distemper virus. Ticks, faeces, rectal swabs and water were tested for bacteria, Echinococcus, Giardia and Cryptosporidium using PCR and NGS.

Health records for humans and animals in the region were not available so, in addition to testing animal samples, I used questionnaire surveys to obtain information on perceptions of the herders concerning health of their families, their domestic animals and wildlife. Questions also assessed preventative health management and treatments used.

Over three field trips I caught and sampled twenty snow leopards, 177 rodents (8 species), 41 dogs and 270 goats. I also sampled 11 waterholes/wells, and preserved 18 ticks, hundreds of fleas and collected faecal samples from ibex.

Most animals that were sampled and examined clinically appeared in good health, but the serosurvey revealed a moderate to high level of exposure to serious pathogens: C. burnetii, T. gondii and Leptospira spp. There were no published reports of human infections with these pathogens in the study area, which is likely due to a lack of testing.

Snow leopards had the highest prevalence of C. burnetii antibodies (25%), followed by rodents (16%), dogs (10%) and goats (9.5%). Goats had the highest prevalence of T. gondii antibodies (90%), dogs (66%), snow leopards (20%) and rodents (16%). Rodents had the highest prevalence of Leptospira spp. (34%), followed by snow leopards (20%) and dogs (5%). Serovars interrogans Australis was identified in the rodents and snow leopards and interrogans Ictohaemorrhagiae was identified in the rodents and dogs. Other serovars were also present from the results of the ELISA but did not match those listed in the MAT panel, so could not be identified. Goats were not tested for infection with leptospirosis. Brucella was not identified in the goats even though it occurs at high prevalence in stock in the rest of Mongolia where it is a large health and economic concern. In rodents, the zoonotic Puumala and Seoul hantavirus were identified for the first time in Mongolia. Analysis of data from rodents showed the pathogens detected (C. burnetii, T.gondii, Hanta virus and Leptospira spp.) differed significantly in prevalence, with a strong year effect driven mainly by Leptospira, which increased in prevalence across the three year study period. Toxoplasma gondii differed slightly in prevalence among rodent species. There was no significant difference in prevalence of interaction of pathogens among years or rodent species.

Poor health was detected in goats with 10 out of the 14 goats tested via haematology and biochemistry being anaemic with haematocrits less than 20%. Haematology and biochemistry values for the other animal species appeared normal. I established haematology and biochemistry reference tables for two rodent species – red-cheeked ground squirrels and jerboas.

Water samples were negative for serious pathogens. Fleas were negative for Yersinia pestis. However, ticks were positive for several genera of potential zoonoses, including Anaplasma, Bacillus, Coxiella, Clostridia, Francisella, Rickettsia, Staphylococcus, Streptococcus and Yersinia. Faecal samples were also positive for genera of potentially zoonotic bacteria including those listed above plus Bacteroides, Bordetella, Campylobacter and Enterococcus.

Results from the two questionnaire surveys revealed the main reported illness in people were colds and flu. However, the local doctor also reported hepatitis as common. She also said that the local people contracted brucellosis whereas I did not identify this pathogen in their livestock. The herders thought their main loss of stock was from predation, with wolves identified as the main predator and snow leopards as the second. Other causes of stock loss perceived as important were adverse climatic conditions such as drought or severe winters while infectious disease was not a concern. Results from these surveys also highlighted gaps in health care for humans and livestock, especially around vaccination and parasite treatments.

In summary, I found that snow leopards and other wild and domestic animals within the study area tested positive for previous exposure to several important zoonotic pathogens. These pathogens were likely circulating among species via contamination of pasture and via predation and have potential to cause illness and reproductive loss. However, I detected no adverse effects on the health of the animals due to infection with these pathogens, and observed no related mortality or illness during my field trips. Hence the deaths of the four snow leopards that were the impetus for my study have not been explained, and monitoring and surveillance of this population should continue.

My findings on wildlife and domestic animal pathogens have relative importance to improving productivity of livestock and the health of the nomadic herders. I recommend improving the health of goats through vaccination and anti-parasite programmes, which will improve their fecundity and survival and thus increase herder income. These programmes will also have flow-on effects to improve the health of the native ungulates that share the grazing areas by decreasing the risk of pathogen transfer between them and also to the snow leopards that prey on them. Demonstrating the importance of herd health may also help mitigate herder wildlife conflict as increased productivity could decrease the perceived importance of predation on herd numbers.

Coxiella burnetii and Leptospires spp are a likely cause of illness in people, despite the lack of reported diagnoses. As rodents had a moderate prevalence of all pathogens tested and inhabit the gers of the local people, it is important to raise awareness of the risk of pathogen transfer to people via rodent excrement contaminating stored food and eating utensils. Risk of human exposure to pathogens during goat slaughter can also be reduced via improved hygiene practices.

By identifying pathogens with broad host ranges in a variety of species in this remote mountainous region, my study provides the basis for understanding health risks to wildlife, domestic animals and humans. Consideration of likely transmission routes for pathogens between species can inform current recommendations to improve health, productivity and hence conservation, of the endangered snow leopard – The Ghost of the Mountain.
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Call Number SLN @ rakhee @ Serial 1744
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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
Title Role of Tibetan Buddhist Monasteries in Snow Leopard Conservation Type Journal Article
Year 2013 Publication Conservation Biology Abbreviated Journal
Volume (up) 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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Call Number SLN @ rakhee @ Serial 1400
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