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Author Janecka, J. E., Alves, P., Karmacharya, D., Samsel, N., Cheng, E., Tallmom, D., Schwartz, M. url 
  Title Wildlife Genetics in Mountainous Rugged Asian Landscapes: Methods, Applications and Examples Type Book Chapter
  Year 2013 Publication Wildlife Research Techniques in rugged Mountainous Asian Landscapes Abbreviated Journal  
  Volume Issue Pages 44-91  
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  Call Number SLN @ rakhee @ Serial 1429  
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Author Bischof, R.,Hameed, S.,Ali, H.,Kabir, M.,Younas, M.,Shah, K. A.,Din, J. U.,Nawaz, M. A. url 
  Title Using time-to-event analysis to complement hierarchical methods when assessing determinants of photographic detectability during camera trapping Type Journal Article
  Year 2013 Publication Methods in Ecology and Evolution Abbreviated Journal  
  Volume Issue Pages  
  Keywords Cox proportional hazards model, cumulative incidence, Martes foina, Panthera Uncia, survival anaalysis, Vulpes Vulpes, weighted observations  
  Abstract (up) 1. Camera trapping, paired with analytical methods for estimating occupancy, abundance and other ecological parameters, can yield information with direct consequences for wildlife management and conservation. Although ecological information is the primary target of most camera trap studies, detectability influences every aspect from design to interpretation.

2. Concepts and methods of time-toevent analysis are directly applicable to camera trapping, yet this statistical field has thus far been ignored as a way to analyze photographic capture data. to illustrate the use to time-to-event statistics and to better understand how photographic evidence accumulates, we explored patterns in tow related measure of detectability: Detection probability and time to detection. We analyzed camera trap data for three sympatric carnivores ( snow Leopard, red fox and stone marten) in the mountains of northern Pakistan and tested predictions about patterns in detectability across species, sites and time.

3. We found species-specific differences in the magnitude of detectability and the factors influencing it, reinforcing the need to consider determinants of detectability in study design and to account for them during analysis. Photographic detectability of snow leopard was noticeably lower than that of red fox, but comparable to detectability of stone marten. Site-specific attributes such as the presence of carnivore sign ( snow Leopard), terrain ( snow leopard and red fox) and application for lures ( red fox) influenced detectability. For the most part, detection probability was constant over time.

4. Species- specific differences in factors determining detectability make camera trap studies targeting multiple species particularly vulnerable to misinterpretation if the hierarchical origin of the data is ignored. Investigators should consider not only the magnitude of detectability, but also the shape of the curve describing the cumulative process of photographic detection, as this has consequences for both determining survey effort and the election of analytical models. Weighted time-to -event analysis can complement occupancy analysis and other hierarchal methods by providing additional tools for exploring camera trap data and testing hypotheses regarding the temporal aspect of photographic evidence accumulation.
 
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  Call Number SLN @ rakhee @ Serial 1405  
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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 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 (up) 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 Underwood, R. url 
  Title The snow leopard, and its association with the dawn of wildlife management in India Type Book Chapter
  Year 2013 Publication Abbreviated Journal  
  Volume Issue Pages 1-10  
  Keywords Snow Leopard,wildlife management,colonial forestry,forest and land management  
  Abstract (up) As part of a project looking at the history of ‘colonial forestry’ I have been studying forest and land management in India during the period from about 1860 to 1920. The subject is of interest because the forest conservation policies and management practices developed in India at that time later became a template for early forest policies and practices in Australia (where I have worked nearly all of my life as a forester), New Zealand, South Africa and the United States of America.

An unexpected outcome of my research was to find that 19th and early 20th century Indian foresters were also deeply concerned about Indian wildlife, and that in their published writings on this issue can be discerned some of the earliest concepts of professional wildlife management.

The outcome was unexpected because a notable aspect of forestry in India in the 19th century was the widespread love of hunting wild animals, or shikar, amongst officers of the Indian Forest Service. Sometimes this was done in the line of duty, a forester being called out to dispatch a rogue elephant or a man-eating tiger. But hunting was also regarded by many (especially those who had transferred from the Army into the Forest Service) as a sport, a contest between man and beast. And despite his firepower, it was a contest in which 19th century man did not always come out on top.
 
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  Call Number SLN @ rakhee @ Serial 1392  
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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 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 (up) 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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  Call Number SLN @ rakhee @ Serial 1399  
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Author Thapa, K., Pradhan, N, M, B., Barker, J., Dhakal, M., Bhandari, A, R., Gurung, G, S., Rai, D, P., Thapa, G, J., Shrestha, S., Singh, G, R. url 
  Title High elevation record of a leopard cat in the Kangchenjunga Conservation Area, Nepal Type Journal Article
  Year 2013 Publication Cat News Abbreviated Journal  
  Volume Issue No 58 Pages 26-27  
  Keywords leopard cat, camera trapping survey, Nepal  
  Abstract (up) During a camera trapping survey in Khambachen valley of Kangchenjunga Conservation

Area KCA from 24 April to 26 May 2012 we camera trapped one leopard cat

Prionailurus bengalensis at an altitude of 4,474 meter. This is probably the highest

altitudinal record for the species in its range. Additionally, one melanistic leopard

Panthera pardus was captured at an altitude of 4,300 m, which is probably as well the

highest documented record in the country. Yet at this stage, no obvious reason can

explain these unusual high records for both species, thus more surveys are recommended

for this region.
 
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  Call Number SLN @ rakhee @ Serial 1394  
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Author Mallon, D. url 
  Title Trophy Hunting of Cites-Listed Species in Central Asia Type Report
  Year 2013 Publication Abbreviated Journal  
  Volume Issue Pages  
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  Abstract (up) Executive Summary:

The report is part of a project aiming to strengthen capacities to implement CITES, especially in

Central Asia and to satisfy the CITES‐related requirements of trading partners, to prevent

overexploitation and to ensure legal international trade in wild fauna and flora does not exceed

sustainable levels. The objective is to enhance the policies and regulations concerning trophy

hunting in selected range States of the Argali Ovis ammon: Kazakhstan, Kyrgyzstan, the Russian

Federation, Tajikistan and Uzbekistan and to provide a framework for the establishment of

sustainable hunting programmes that support conservation. This report is focused on the relevance

of trophy hunting for conservation and associated local livelihoods.

Sustainable use of biological diversity is an integral part of the Convention on Biodiversity (1992) and

is seen as a valuable tool in conserving biological diversity. The Addis Ababa Principles and Guidelines

(AAPG) set out the basis for sustainable use of natural resources. The IUCN SSC1 Guiding Principles on

Trophy Hunting as a Tool for Creating Conservation Incentives, and the European Charter on Hunting

and Biodiversity provide further guidance on the sustainability of trophy hunting, including on highly

threatened species. The International Council for Game and Wildlife Conservation (CIC) together

with the Food and Agriculture Organization of the United Nations (FAO) has also developed Best

Practice Guidelines for trophy hunting.

All five project countries are Parties to CITES, except Tajikistan, which has begun the accession

process. Argali are the focus of the trophy hunting in the region and they represent the most

expensive trophy in the five project countries. Other CITES‐listed hunting species are Brown Bear

Ursus arctos, Wolf Canis lupus, Musk Deer Moschus moschiferus, Eurasian Lynx Lynx lynx (all mainly

in Russia) and Houbara Bustard Chlamydotis undulata. Markhor Capra falconeri and Urial Ovis

orientalis have also been hunted at times but are not the object of regular trophy hunting

programmes at present. Other widely hunted species are not listed in the CITES Appendices.

A recent analysis by TRAFFIC of the CITES trade database showed that 10 245 hunting trophy items

from species listed in the CITES Appendices were exported from the project countries between 2000

and 2010. Almost all trophy items consisted of Argali, Brown Bear and Wolf. Most were exported

from Russia (9473 trophies), with smaller numbers from Tajikistan (705), Kyrgyzstan (668), and

Kazakhstan (126), and 13 from Uzbekistan.

In the region, wildlife is generally the property of the State, which awards rights to use it to

individuals or other entities. National legislation covering hunting and wildlife protection may refer

to sustainable use but this is undefined. The legal rights of local communities are also not generally

specified. FAO and CIC produced a review of national legislation that set out in detail the basic

principles of sustainable wildlife management laws (2008). One of the main findings was that

legislative frameworks in the region frequently consisted of different legal instruments that were not

always harmonized and sometimes overlapped. In some cases, there was also a lack of institutional

clarity, with overlapping jurisdictions among different agencies.

Poaching for meat and trophies or commercial products is a significant factor across the whole

region, negatively affecting all the main hunting species, as well as protected species. Wild

populations have been reduced, sometimes drastically so. Poaching of Argali and other mountain

ungulates may be carried out by military or border personnel and is not restricted to areas outside

formal nature reserves: indeed, law enforcement and protected area staff are sometimes complicit

in illegal hunting, driven in part by the very low salaries. There are numerous recent examples of

poaching and illegal trade in trophies of CITES‐listed species. The actual level of illegal off‐take is

unknown. Known cases may represent a very small fraction of the real total. The wildlife

conservation sector is under‐resourced across the region with a lack of funding, trained personnel,

transport and other equipment severely limiting the effectiveness of anti‐poaching efforts.

Memoranda of Understanding under the Convention on Migratory Species (CMS MoUs) and their

associated action plans for Saiga Saiga tatarica and Bukhara Deer Cervus elaphus bactrianus have

proven to be effective instruments in facilitating species recovery. A CMS Single Species Action Plan

for Argali is in preparation (Roettger & Singh, in prep) and will provide a framework for conservation.

Trophy hunting in the region is predominantly organized on a commercial basis. Community‐based

hunting initiatives in the region are in their infancy and face some legal and institutional obstacles.

There are however promising developments: for example, five community‐based NGOs in Tajikistan

are managing wildlife in legally assigned areas and three of them have hosted hunting clients (on

non‐CITES species). Well‐developed community‐based trophy hunting programmes operate in

Pakistan, targeted at Markhor Capra falconeri which is listed in CITES Appendix I, and in Namibia,

which is widely seen as a leader in such programmes, and while the specific conditions and sociopolitical

background of both differ in several ways from those in the region, they nonetheless

provide instructive guidance on the principles of successful community conservancy organization.

There is an extensive literature on trophy hunting, its potential to contribute to conservation of

biodiversity and local livelihoods, and the potential negative effects of selective harvesting on

species. The consensus view seems to be that selective harvest of trophy‐age males does not impact

negatively in the short term, if only a low proportion of the available trophy‐age individuals are

harvested, but uncontrolled harvest can lead to a decline in horn size and thus trophy quality, as well

as have negative demographic effects. Trophy hunting programmes raise substantial revenues in

some African countries, and in the best cases significant sums are received at community or

conservancy level. However, this is not universally the case and inequitable benefit sharing remains

a major challenge to be overcome. Good governance is an essential requirement when developing

hunting and other forms of community based management initiative.

A possible decline in size of Argali trophies in Kyrgyzstan has been reported and determining

whether this is actually the case, and the causes, is a priority. Standardized monitoring, involvement

of independent experts, transparency in quota setting and allocation of licences are all seen as

prerequisites of well‐managed and sustainable hunting operations. Allocation of long‐term leases for

concessions is needed to motivate managers to invest in anti‐poaching and other conservation

measures and remove the temptation for short‐term profit that threatens the sustainability of the

resource.

Developing all forms of Community‐based Natural Resource Management (CBNRM) – trophy hunting

and tourism – is also recommended. As the concept is still new to many parts of the region, and the

legal‐political background is not always sympathetic, building on examples of existing community

conservancies (in Tajikistan) or where there is an administrative basis for local management of

resources (Kyrgyzstan), is likely to be effective. Ensuring that communities and conservancies are

legally empowered to manage and utilise wildlife and to receive revenues for such use is a basic

requirement.

Recommendations on good practice are set out in several publications and salient points relevant to the region are highlighted.
 
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  Call Number SLN @ rakhee @ Serial 1415  
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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 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 (up) 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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  Call Number SLN @ rakhee @ Serial 1403  
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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 2013 Publication Oryx Abbreviated Journal  
  Volume Issue Pages 1-7  
  Keywords Canis lupus, Central Asia, food habits, intraguild competition, Panthera uncia, scat analysis  
  Abstract (up) 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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  Call Number SLN @ rakhee @ Serial 1397  
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Author Rodgers, T. W.,Janecka, J. E. url 
  Title Applications and techniques for non-invasive faecal genetics research in felid conservation Type Journal Article
  Year 2013 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords Conservation . Elusive species . Faecal DNA . Felidae . Non-invasive genetics  
  Abstract (up) Non-invasive genetic techniques utilising DNA extracted from faeces hold great promise for felid conservation research. These methods can be used to establish species

distributions, model habitat requirements, analyse diet, estimate abundance and population density, and form the basis for population, landscape and conservation genetic analyses. Due to the elusive nature of most felid species, non-invasive genetic methods have the potential to provide

valuable data that cannot be obtained with traditional observational or capture techniques. Thus, these methods are particularly valuable for research and conservation of endangered

felid species. Here, we review recent studies that use non-invasive faecal genetic techniques to survey or study wild felids; provide an overview of field, laboratory and analysis techniques; and offer suggestions on how future non-invasive genetic studies can be expanded or improved to more effectively support conservation.
 
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  Notes Approved no  
  Call Number SLN @ rakhee @ Serial 1430  
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