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Author Meklenburtsev R.N.
Title About ecology of ibex in Pamir Type Miscellaneous
Year 1949 Publication Abbreviated Journal
Volume Vol. 28, edition 5. Issue Pages 482-483
Keywords Tajikistan; Pamir; ibex; distribution; number; diet; reproductive biology; predators; snow leopard; commercial use.; 7640; Russian
Abstract (down) Ibex is distributed all over the Pamir mountains, inhabiting rocks and canyons and ascending up to 5,500 m above sea level. In summer, ibex mostly feeds upon sedge and cereals, in winter wormwood. It keeps in herds containing 15 to 30 animals. The coupling period is December; kids being born at the beginning of June. The most dangerous predators are snow leopard and wolf. Ibex is a main commercial game species.
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Publisher Place of Publication Editor
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Area Expedition Conference
Notes Full text available in RussianJournal Title: Zoological journal. Approved no
Call Number SLN @ rana @ 742 Serial 674
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Author Fedosenko A.K.
Title Relationship between the predators and wild ungulates in North Tien Shan and Jungar Alatau Type Miscellaneous
Year 1979 Publication Abbreviated Journal
Volume Issue Pages 72-74
Keywords Kazakhstan; predators-preys relationship; snow leopard; preys.; 6670; Russian
Abstract (down) Ibex is a main prey for snow leopards. The role of marmots and snow cocks in snow leopard's consumption is negligent. It can prey on morals in the fir-wood. A case of snow leopard's attacking a dog is also known.
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Publisher Place of Publication Editor
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Area Expedition Conference
Notes Full text available in RussianJournal Title: Ecologic fundamentals of protection and sustainable use of predatory mammals. Approved no
Call Number SLN @ rana @ 645 Serial 270
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Author McCarthy, T.M.; Chapron, G.
Title Snow Leopard Survival Strategy Type Miscellaneous
Year 2003 Publication Abbreviated Journal
Volume Issue Pages
Keywords snow leopard; survival; threats; conservation; action; research; 5350
Abstract (down) I. SNOW LEOPARD: REVIEW OF CURRENT KNOWLEDGE AND STATUS

This Snow Leopard Survival Strategy (SLSS) was undertaken to provide comprehensive conservation and research guidelines to ensure a range-wide coordinated effort in the fi ght to save the endangered snow leopard and had the following specific goals:  Assess and prioritize threats to snow leopard survival on a geographic basis.

 Defi ne and prioritize conservation, education, and policy measures appropriate to alleviate threats.

 Prioritize subjects for snow leopard research and identify viable or preferred research methods.

 Build a network of concerned scientists and conservationists to facilitate open dialogue and cross-border cooperation.

 Gain consensus on a fundamental Snow Leopard Survival Strategy document that will be made available to the range states to aid conservation planning at national and local levels.

The highly participatory process started with a survey of specialists designed to gather information on perceived threats to snow leopards, appropriate actions to address threats, knowledge gaps, protected area status, policy and law issues, impediments to achieving conservation of snow leopards, and cultural relevance of snow leopards. Drafts of a Strategy were circulated and then the Snow Leopard Survival Summit was convened in Seattle, USA from 21-26 May 2002 and was attended by 58 of the specialists to debate issues and refi ne the Strategy. This SLSS document is the end product of that process. Background on the snow leopard The snow leopard (Uncia uncia) is a member of the Felidae subfamily Pantherinae and on the basis of morphology and behavior it is placed alone in a separate genus. They are found in 12 countries across Central Asia (China, Bhutan, Nepal, India, Pakistan, Afghanistan, Tajikistan, Uzbekistan, Kyrgyzstan, Kazakhstan, Russia, and Mongolia). China contains as much as 60% of the snow leopard's potential habitat. Inaccessible and difficult terrain, along with the secretive nature of this rare cat helps account for the fact that large parts of its range have yet to be surveyed. Between 4,500 and 7,350 snow leopards are thought to occur within a total potential habitat area of 1,835,000 km2. Snow leopards are generally solitary and mating usually occurs between late January and midMarch, and one to five cubs are born after a gestation period of 93 to 110 days, generally in June or July. Snow leopards are closely associated with the alpine and subalpine ecological zones, preferring broken, rocky terrain with vegetation that is dominated by shrubs or grasses. Home range size and shape is not well known. The home range size of five snow leopards in prime habitat in Nepal ranged from 12 to 39 km2, with substantial overlap between individuals and sexes. In Mongolia, where food resources may be scarcer, home ranges of both males and females exceeded 400 km2. Snow leopards are opportunistic predators capable of killing prey up to three times their own weight. They will also take small prey such as marmot or chukar partridge. In general, their most commonly taken prey consists of wild sheep and goats

(including blue sheep, Asian ibex, markhor, and argali). Adult snow leopards kill a large prey animal every 10-15 days, and remained on the kill for an average of 3-4 days, and sometimes up to a week. Predation on livestock can be significant, which often results in retribution killing by herders. Snow Leopards are listed as Endangered on the

IUCN Red List in that they do not meet the standards of Critically Endangered but are projected to decline by 50% or more over next 3 generations due to potential levels of exploitation (trade in pelts/bones and conflict with

livestock), and due to declining: 1) area of occupancy, 2) extent of occurrence, and 3) quality of habitat (prey depletion). They appear in Appendix I of both CITES and the Convention on Conservation of Migratory Species of

Wild Animals (CMS). Snow Leopards are protected nationally over most of its range, with the probable exception of Afghanistan. However, in some countries the relevant legislation may not always be very effective, e.g. because penalties are too low to function as deterrent, or they contain some significant loopholes.

II. THREATS AND CONSERVATION ACTIONS

Regional Assessment

This document attempts to list and discuss the threats, conservation actions and information needs pertinent to snow leopard survival. However, these vary substantially across the vast extent of snow leopard range, so no prescription will be universally applicable. We used a regional approach and for purposes of grouping areas where conditions may be similar, we looked at geography, political boundaries, cultural/religious influences, and rural livelihoods. Within that framework we defined four broad regions:

 Himalaya (HIMLY),

 Karakorum/Hindu Kush (KK/HK),

 Commonwealth of Independent States and W. China (CISWC),

 The Northern Range of Russia, Mongolia and N. China (NRANG) SNOW LEOPARD SURVIVAL STRATEGY

Threats to Snow Leopard Survival

A key component of the SLSS process was to identify threats to long-term snow leopard survival across their range. The following list is the result of extensive consultations with stakeholders in Asia and the expert group at the SLSS Summit. Threats are grouped into four broad categories 1) Habitat and Prey related, 2) Direct Killing of Snow Leopards, 3) Policy and Awareness, and 4) Other Issues.

List of Threats

Category 1: Habitat and Prey Related

1.1 Habitat Degradation and Fragmentation

1.2 Reduction of Natural Prey due to Illegal Hunting

1.3 Reduction of Natural Prey due to Legal Hunting

1.4 Reduction of Natural Prey due to Competition with Livestock

1.5 Reduction of Natural Prey due to Disease

1.6 Fencing that Disrupts Natural Migration

Category 2: Direct Killing or Removal of Snow Leopards

2.1 Killing of Snow Leopards in Retribution for Livestock depredation

2.2 Poaching Snow Leopards for Trade in Hides or Bones

2.3 Museum Collection of Live Animals

2.4 Traditional Hunting of Snow Leopards

2.5 Secondary Poisoning and Trapping of Snow Leopards

2.6 Diseases of Snow Leopards

Category 3: Policy and Awareness

3.1 Lack of Appropriate Policy

3.2 Lack of Effective Enforcement

3.3 Lack of Trans-boundary Cooperation

3.4 Lack of Institutional Capacity

3.5 Lack of Awareness among Local People

3.6 Lack of Awareness among Policy Makers

Category 4: Other Issues

4.1 War and Related Military Activities

4.2 Climate Change

4.3 Human Population Growth and Poverty (indirect threat)

Potential Actions to Address Threats

Several methods are identified and elaborated in this document and they include:

 Grazing Management: Promote livestock grazing practices that reduce impacts on native wildlife, in particular snow leopard prey species.

 Wildlife-based Ecotourism: Establishing wildlife based tourism that provides jobs and financial benefits to local people will add economic value to wildlife and create incentives to protect the resource.

 Cottage Industry: Provide income generation opportunities for communities in snow leopard habitat through handicraft manufacture and marketing opportunities with direct and transparent linkages to wildlife conservation via contracts that provides positive incentives for compliance.

 Ungulate Trophy Hunting Programs: Establish or restructure trophy hunting programs that are sustainable, well monitored and provide return to local people as an incentive to protect ungulates. Community co-management of hunting program should be encouraged where ever appropriate.

 Reducing Poaching and Trade in Snow Leopard Parts:

Determine location, nature and extent of snow leopard poaching for trade and bring pressure, both legal and educational, to limit same.

 Reducing Livestock Depredation by Snow Leopards:

Encourage livestock husbandry practices that reduce depredation by snow leopards and other predators.

 Animal Husbandry: Provide training in animal husbandry and veterinary care to improve monetary return at lower stock levels, limit exposure to predation, and reduce impacts on pasture and rangelands.

 Conservation Education and Awareness: Raise awareness of snow leopard conservation issues, concerns, need for action, legal matters, etc, through variety of media among different audiences.

III. RESEARCH AND INFORMATION NEEDS

During the process of listing the threats to snow leopards and the required conservation actions, a set of information needs was also identified. Hence, the list below encompasses the knowledge required to carry-out urgent conservation actions.

Master List of Information Needs

R.1 Snow leopard distribution and “hot spots”

R.2 Snow leopard migration and dispersal routes

R.3 Snow leopard population size

R.4 Snow leopard population trends and factor responsible for changes

R.5 Protected Area coverage extent and representation of habitats (gap analysis)

R.6 Agents of habitat degradation and relative impacts

R.7 Snow leopard prey relationships

R.8 Prey species distribution and “hot spots”

R.9 Prey population baseline and trends

R.10 Dynamics of illegal ungulate hunting (sources, local need, uses, trade, etc.)

R.11 Dynamics of legal ungulate harvest and baseline statistics (sex/age, effort, trophy size, etc.)

R.12 Wild ungulate livestock interactions (competition)

R.13 Ungulate disease type, areas of occurrence, prevalence, virulence, treatment

R.14 Snow leopard poaching levels

R.15 Illegal trade in wildlife parts market demand, sources and routes, value, etc.

R.16 Livestock depredation rates

SNOW LEOPARD SURVIVAL STRATEGY | xi

R.17 Livestock depredation causes

R.18 Grazing pressure and range conditions

R.19 Snow leopard disease type, areas of occurrence, prevalence, virulence, treatment

R.20 Snow leopard home-range size and habitat use

R.21 Snow leopard social structure and behavior

R.22 Snow leopard population genetics

R.23 Snow leopard food habits

R.24 Snow leopard relationship to other predators

R.25 Economic valuation of snow leopards

R.26 Snow leopard monitoring techniques development/improvement

R.27 Socio-economic profiling of herder communities in snow leopard habitat

R.28 Methods to alleviate impacts of war

R.29 Livestock and human population status and trends

R.30 Analysis of existing policies and laws

R.31 Human attitudes to snow leopards

IV. COUNTRY ACTION PLANNING

The SLSS should be seen as a tool to aid in the development of country-specifi c Action Plans. In general Action

Planning leaders should review the SLSS and then:

 Analyze the problems and choose the proper scale,

 Identify the key stakeholders and integrate them into the planning process at the beginning, (i.e. ensure a broadly participatory process),

 Choose a multi-level approach if the problems and stakeholders are particularly diverse,

 Seek to identify achievable and appropriate actions,

 Build monitoring of results into the Plan.

The Action Planning process need not be done in a vacuum. The Snow Leopard Network (see below), can provide much needed assistance in terms of expertise and advice during the planning process. Collectively, the SLN membership has experience in nearly every area of snow leopard related conservation, research, education, and policy. They can be approached for assistance through the International Snow Leopard Trust, 4649 Sunnyside

Ave. N., Suite 325, Seattle, Washington, 98103, USA, on their website http://www.snowleopard.org/sln/ or via email at <info@snowleopard.org>.

V. TAKING THE SLSS FORWARD

A key outcome of the SLSS Workshop was the creation of the Snow Leopard Network (SLN). The SLN is a partnership of organizations and individuals from government and private sector who work together for the effective conservation of the snow leopard, its prey, and their natural habitat to the benefi t of people and biodiversity.

The initial members of the SLN are the specialist who worked together on the SLSS. Carrying the SLSS forward was the impetus for developing the Network.
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Corporate Author Thesis
Publisher International Snow Leopard Trust and Snow Leopard Network Place of Publication Seattle, USA Editor
Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN ISBN Medium
Area Expedition Conference
Notes Approved no
Call Number SLN @ rana @ 520 Serial 668
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Author Oli, M.
Title Snow leopards and blue sheep in Nepal: Densities and predator: Prey ratio Type Miscellaneous
Year 1994 Publication Journal of Mammalogy Abbreviated Journal
Volume 75 Issue Pages 998-1004
Keywords snow leopard,Panthera uncia,blue sheep,Pseudois nayaur,density,predator:prey ratio,harvest rate,livestock predation,Nepal
Abstract (down) I studied snow leopards (Panthera uncia) and blue sheep (Pseudois nayaur) in Manang District, Annapurna Conservation Area, Nepal, to estimate numbers and analyze predatorprey interactions. Five to seven adult leopards used the 105-km2 study area, a density of 4.8 to 6.7 leopards/100 km2. Density of blue sheep was 6.6-10.2 sheep/km2, and biomass density was 304 kg/km2. Estimated relative biomass consumed by snow leopards suggested that blue sheep were the most important prey; marmots (Marmota himalayana) also contributed significantly to the diet of snow leopards. Snow leopards in Manang were estimated to harvest 9-20% of total biomass and 11-24% of total number of blue sheep annually. Snow leopard :blue sheep ratio was 1 :1 14-1 :159 on a weight basis, which was considered sustainable given the importance of small mammals in the leopard's diet and the absence of other competing predators.
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Notes Approved no
Call Number SLN @ rana @ 894 Serial 741
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Author Oli, M.K.
Title Snow leopards and blue sheep in Nepal: Densities and predator: prey ratio Type Journal Article
Year 1994 Publication Journal of Mammalogy Abbreviated Journal
Volume 75 Issue 4 Pages 998-1004
Keywords Nepal; blue-sheep; prey; livestock; predation; blue; sheep; browse; 740; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; blue sheep; densities; density; predator
Abstract (down) I studied snow leopards (Panthera uncia) and blue sheep (Pseudois nayaur) in Manang District, Annapurna Conservation Area, Nepal, to estimate numbers and analyze predator-prey interactions. Five to seven adult leopards used the 10-5-km-2 study area, a density of 4.8 to 6.7 leopards/100 km-2. Density of blue sheep was 6.6 10.2 sheep/km-2, and biomass density was 304 kg/km-2. Estimated relative biomass consumed by snow leopards suggested that blue sheep were the most important prey; marmots (Marmota himalayana) also contributed significantly to the diel of snow leopards Snow leopards in Manang were estimated to harvest 9-20% of total biomass and 11-24% of total number of blue sheep annually. Snow leopard: blue sheep ratio was 1:114-1:159 on a weight basis, which was considered sustainable given the importance of small mammals in the leopard's diet and the absence of other competing predators.
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Publisher Place of Publication Editor
Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
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ISSN ISBN Medium
Area Expedition Conference
Notes Document Type: English Call Number: 599.05 JO Approved no
Call Number SLN @ rana @ 236 Serial 746
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Author Bagchi, S., Sharma, R. K., Bhatnagar, Y.V.
Title Change in snow leopard predation on livestock after revival of wild prey in the Trans-Himalaya Type Journal Article
Year 2020 Publication Wildlife Biology Abbreviated Journal
Volume Issue Pages 1-11
Keywords arid ecosystems, diet analysis, human-wildlife conflict, Panthera, predator, rangeland
Abstract (down) Human–wildlife conflict arising from livestock-losses to large carnivores is an important challenge faced by conservation. Theory of prey–predator interactions suggests that revival of wild prey populations can reduce predator’s dependence on livestock in multiple-use landscapes. We explore whether 10-years of conservation efforts to revive wild prey could reduce snow leopard’s Panthera uncia consumption of livestock in the coupled human-and-natural Trans-Himalayan ecosystem of northern India. Starting in 2001, concerted conservation efforts at one site (intervention) attempted recovery of wild- prey populations by creating livestock-free reserves, accompanied with other incentives (e.g. insurance, vigilant herding). Another site, 50km away, was monitored as status quo without any interventions. Prey remains in snow leopard scats were examined periodically at five-year intervals between 2002 and 2012 to determine any temporal shift in diet at both sites to evaluate the effectiveness of conservation interventions. Consumption of livestock increased at the status quo site, while it decreased at the intervention-site. At the intervention-site, livestock-consumption reduced during 2002–2007 (by 17%, p = 0.06); this effect was sustained during the next five-year interval, and it was accompanied by a persistent increase in wild prey populations. Here we also noted increased predator populations, likely due to immigration into the study area. Despite the increase in the predator population, there was no increase in livestock-consumption. In contrast, under status quo, dependence on livestock increased during both five-year intervals (by 7%, p=0.08, and by 16%, p=0.01, respectively). These contrasts between the trajectories of the two sites suggest that livestock-loss can potentially be reduced through the revival of wild prey. Further, accommodating counter-factual scenarios may be an important step to infer whether conservation efforts achieve their targets, or not.
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Notes Approved no
Call Number Serial 1623
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Author Jamtsho, Y., Katel, O.
Title Livestock depredation by snow leopard and Tibetan wolf: Implications for herders&#65533; livelihoods in Wangchuck Centennial National Park, Bhutan Type Journal Article
Year 2019 Publication Springer Open Abbreviated Journal
Volume Issue 9:1 Pages 1-10
Keywords Wildlife-livestock conflicts, Endangered predators, Protected area, Income loss
Abstract (down) Human-wildlife conflict (HWC) is a serious problem in many parts of the world, and Bhutan&#65533;s Wangchuck Centennial

National Park (WCNP) is no exception. Located in the remote alpine areas of the eastern Himalaya, wildlife species

such as snow leopard (SL) and Tibetan wolf (TW) are reported to kill livestock in many parts of the Park. Such

depredation is believed to have affected the livelihoods of high-altitude herding communities, resulting in conflicts

between them. This study provides analysis on the extent of livestock depredation by wildlife predators such as SL

and TW and examines its implications for the livelihoods of herding communities of Choekhortoe and Dhur regions

of WCNP. Using semi-structured questionnaires, all herders (n = 38) in the study area were interviewed. The questions

pertained to livestock population, frequency of depredation and income lost due to depredation in the last five years

from 2012 to 2016. This study recorded 2,815 livestock heads in the study area, with an average herd size of 74.1 stock.

The average herd size holding showed a decreasing trend over the years, and one of the reasons cited by the herders

is depredation by SL and TW and other predators. This loss equated to an average annual financial loss equivalent to

10.2% (US$837) of their total per capita cash income. Such losses have resulted in negative impacts on herders&#65533;

livelihood; e.g. six herders (2012-2016) even stopped rearing livestock and resorted to an alternate source of cash

income. The livestock intensification programmes, including pasture improvement through allowing controlled

burning, and financial compensation, may be some potential short-term solutions to reduce conflict between herders

and predators. Issuing permits for cordyceps (Ophiocordyceps sinensis) collection only to the herders and instilling the

sense of stewardship to highland herders may be one of the long-term solutions.
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Publisher Place of Publication Editor
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Series Editor Series Title Abbreviated Series Title
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Area Expedition Conference
Notes Approved no
Call Number SLN @ rakhee @ Serial 1479
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Author Khan, B., Ablimit, A., Nawaz, M. A., Ali, R., Khan, M. Z., Jaffaruddin, Karim, R.
Title Pastoralist experience and tolerance of snow leopard, wolf and lynx predation in Karakoram Pamir Mountains Type Journal Article
Year 2014 Publication Journal of Biodiversity and Envirnomental Sciences Abbreviated Journal
Volume 5 Issue 4 Pages 214-229
Keywords Carnivore, herbivores, interaction, Karakoram, Pamir, Khunjerab, Taxkorgan, China, Pakistan
Abstract (down) Human-carnivore conflict is a common conservation and livelihood issue in mountain communities. This study was conducted to understand nature and extent of socio-ecological interaction between pastoralism and wildlife conservation in cold deserts of Karakoram Pamir Mountains (KPM) between China and Pakistan. Study revealed that livestock depredation is a burning issue in KPM with varying intensity from place to place, depending upon wild prey abundance, herd size, herding practices, predator type and age. Snow leopard, wolf and lynx were the major predators, while Brown bear despite its presence was reported being less fatal to livestock. Snow leopard killed highest number of animals (88.7% n=1440) mostly sheep and goats whereas, wolf killed more juvenile yaks. Lynx was found occasionally predating on young domestic crop. Highest number of kills was recorded from pastures during summer months (July-Aug) when animals were free grazing or were kept inside pens at night. Wild prey base being abysmally low, livestock seemed offering a considerable portion of diet to carnivores. Despite considerable losses from carnivores, more respondents in KNP (Pakistan) buffer zone had sympathies for predators compared to those in TNR (China) who were annoyed of the carnivores. Although people attributed escalating human-carnivore conflict to a higher level of protection to wild animals in Protected Areas (PA) but efforts are still needed to judiciously integrate conservation with local livelihood and development needs, otherwise herders may continue losing their livestock to predators and retaliatory killing of endangered carnivore species i.e., Snow leopard and Wolf may continue unabated and would further destabilize the fragile mountain ecosystem.
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Publisher Place of Publication Editor
Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
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Area Expedition Conference
Notes Approved no
Call Number SLN @ rakhee @ Serial 1418
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Author Kadamshoev M.
Title Establishment of highland nature reserves required Type Miscellaneous
Year 1990 Publication Abbreviated Journal
Volume Part 1. Issue Pages 227-228
Keywords Tajikistan; Pamir; Mountain Badakhshan; nature reserves; endemics; rare species; snow leopard; tourism.; 7030; Russian
Abstract (down) Human population growth in the Mountain Badakhshan autonomous province will result in changes of wild life habitat. The first highland nature reserve (Muksu river basin) is proposed to be established within the habitat of Marco Polo sheep, Siberian ibex, Tien Shan brown bear, snow leopard, Himalayan and Tibetan snow-cock, bar-headed goose, bearded and Himalayan vultures. The Mountain Badakhshan nature reserve will serve as a reference for other highland landscapes of the USSR, a `fiduciary' of gene bank containing valuable endemic, rare, and endangered animal and plant species.
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Notes Full text available in RussianJournal Title: Nature reserves of the USSR. Approved no
Call Number SLN @ rana @ 681 Serial 509
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Author Alexander, J., S., Gopalaswamy, A., M., Shi, K., Hughes, J., Riordan, P.
Title Patterns of Snow Leopard Site Use in an Increasingly Human-Dominated Landscape Type Journal Article
Year 2016 Publication PLoS ONE Abbreviated Journal
Volume Issue Pages 1-15
Keywords
Abstract (down) Human population growth and concomitant increases in demand for natural resources pose threats to many wildlife populations. The landscapes used by the endangered snow leopard (Panthera uncia) and their prey is increasingly subject to major changes in land use. We aimed to assess the influence of 1) key human activities, as indicated by the presence of mining and livestock herding, and 2) the presence of a key prey species, the blue sheep (Pseudois nayaur), on probability of snow leopard site use across the landscape. In Gansu Province, China, we conducted sign surveys in 49 grid cells, each of 16 km2 in size, within a larger area of 3392 km2. We analysed the data using likelihood-based habitat occupancy models that explicitly account for imperfect detection and spatial auto-correlation between survey transect segments. The model-averaged estimate of snow leopard occupancy was high [0.75 (SE 0.10)], but only marginally higher than the naïve estimate (0.67). Snow leop- ard segment-level probability of detection, given occupancy on a 500 m spatial replicate, was also high [0.68 (SE 0.08)]. Prey presence was the main determinant of snow leopard site use, while human disturbances, in the form of mining and herding, had low predictive power. These findings suggest that snow leopards continue to use areas very close to such disturbances, as long as there is sufficient prey. Improved knowledge about the effect of human activity on large carnivores, which require large areas and intact prey populations, is urgently needed for conservation planning at the local and global levels. We highlight a number of methodological considerations that should guide the design of such research.
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Publisher Place of Publication Editor
Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
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Area Expedition Conference
Notes Approved no
Call Number SLN @ rakhee @ Serial 1440
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