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Author | Maming, R. | ||||
Title | Market prices for the tissues and organs of snow leopards in China | Type | Journal Article | ||
Year | 2012 | Publication | Selevinia | Abbreviated Journal | |
Volume | Issue | 20 | Pages ![]() |
119-122 | |
Keywords | trade; cases; products; prices; bazaars; snow leopards; extinction; Xinjiang | ||||
Abstract | The population of snow leopard (Uncia uncia) is plummeting as waterfall in the last ten years. The illegal trade of snow leopard products is one of the fatal factors. The biggest range and the biggest population of snow leopard both are in China, and the largest trade is also in the country. Through questionnaires and investigation with informants from 2002 to 2012, a lot of data were collected through variety ways in different regions. In this paper 387 cases of snow leopard poaching including smuggling routes, product list, price system and product usages from Xinjiang Uygur Autonomous Region were collected for analysis and discussion. In the face of rapid development in the west of China, the results showed that our government did not try to protect the snow leopards, and the text of law was practically useless. International organizations such as WWF, WCS, IUCN, PANTHERA, SLT & SLN with SLSS were also powerless and helpless to stop snow leopard poaching and trading. As a result, the fate of the snow leopard is very bad, and this is worrying. |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1395 | ||
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Author | Lovari, S., Minder, I., Ferretti, F., Mucci, N., Randi, E., Pellizzi, B. | ||||
Title | Common and snow leopards share prey, but not habitats: competition avoidance by large predators | Type | Journal Article | ||
Year | 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 | Forrest, J. L.,Wikramanayake, E., Shrestha, R., Areendran, G., Gyeltshen, K., Maheshwari, A., Mazumdar, S., Naidoo, R., Thapa, G. J., Thapa, K. | ||||
Title | Conservation and climate change: Assessing the vulnerability of snow leopard habitat to treeline shift in the Himalaya | Type | Journal Article | ||
Year | 2012 | Publication | Biological Conservation | Abbreviated Journal | |
Volume | 150 | Issue | Pages ![]() |
129-135 | |
Keywords | Snow leopard Climate adaptation Conservation planning Endangered species Climate change Himalaya | ||||
Abstract | Climate change is likely to affect the persistence of large, space-requiring species through habitat shifts, loss, and fragmentation. Anthropogenic land and resource use changes related to climate change can also impact the survival of wildlife. Thus, climate change has to be integrated into biodiversity conservation plans. We developed a hybrid approach to climate-adaptive conservation landscape planning for snow leopards in the Himalayan Mountains. We first mapped current snow leopard habitat using a mechanistic approach that incorporated field-based data, and then combined it with a climate impact model using a correlative approach. For the latter, we used statistical methods to test hypotheses about climatic drivers of treeline in the Himalaya and its potential response to climate change under three IPCC greenhouse gas emissions scenarios. We then assessed how change in treeline might affect the distribution of snow leopard habitat. Results indicate that about 30% of snow leopard habitat in the Himalaya may be lost due to a shifting treeline and consequent shrinking of the alpine zone, mostly along the southern edge of the range and in river valleys. But, a considerable amount of snow leopard habitat and linkages are likely to remain resilient to climate change, and these should be secured. This is because, as the area of snow leopard habitat fragments and shrinks, threats such as livestock grazing, retaliatory killing, and medicinal plant collection can intensify. We propose this approach for landscape conservation planning for other species with extensive spatial requirements that can also be umbrella species for overall biodiversity. 2012 Elsevier Ltd. All rights reserved |
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Call Number | SLN @ rakhee @ | Serial | 1385 | ||
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Author | Wegge, P., Shrestha, R., Flagstad, O. | ||||
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 | 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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Call Number | SLN @ rakhee @ | Serial | 1386 | ||
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Author | Shah, K.B., Baral, H.S. | ||||
Title | Nepalma Hiun Chituwako Sankanshan | Type | Book Whole | ||
Year | 2012 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages ![]() |
138 | ||
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Abstract | The Snow Leopard is protected by the National Parks and Wildlife Conservation Act 1973 in Nepal. Some grassroots' conservation measures have been initiated in the Protected Areas (PAs), including the Annapurna Conservation Area (ACA). Although, some initiatives have been formulated by WWF-Nepal and ACA project, major threats to the species still exist throughout its known range in the country. In this regard, the book a Nepali book titled 'Nepalma Hiunchituwako Sanrakshan'[Conservation of the Snow Leopard in Nepal]with a firm belief that the threats to snow leopard and its habitats could be minimized with the light of education and conservation awareness to all stakeholders including the local villagers. The book contributes in the overall conservation of the species by creating conservation awareness, enhancing their knowledge on Snow Leopard, its prey species and its importance to the mountain ecosystem. In addition, it is hoped to help in strengthening economic well being of local people by linking the conservation of the species to eco-tourism. A total of 1000 copies were published and are in the process of free of charge distribution in all the Snow Leopard range within the country. | ||||
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Language | Hindi | Summary Language | Original Title | ||
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Notes | Hindi | Approved | no | ||
Call Number | SLN @ rakhee @ | Serial | 1383 | ||
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Author | Chalise, M.K. | ||||
Title | Snow Leopard (Uncia uncia), Prey Species and Outreach in Langtang National, Park, Nepal | Type | Journal Article | ||
Year | 2011 | Publication | Our Nature | Abbreviated Journal | |
Volume | Issue | 9 | Pages ![]() |
138-145 | |
Keywords | Snow leopard, Langtang, prey species, threats, outreach. | ||||
Abstract | Presence of snow leopard (Uncia uncia) in Langtang National Park was obscure till 2003. It was confirmed by a research team trained for the wildlife biology in the field. Along with the study of ecology and behavior of snow leopard sufficient effort were made to generate data on pre species. The study also dealt with threat perceived for the leopard survival while basic unit of conservation- local outreach programs were also initiated. |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1388 | ||
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Author | Xu, G.,MaMing, R.,Buzzard, P.,Blank, D. | ||||
Title | Nature reserve in Xingjiang: a snow leopard paradise or refuge for how long? | Type | Journal Article | ||
Year | 2014 | Publication | Selevinia | Abbreviated Journal | |
Volume | 22 | Issue | Pages ![]() |
144-149 | |
Keywords | Snow Leopards | ||||
Abstract | The snow leopard Uncia uncia is an endangered species, which is widely but thinly distributed throughout its range in the mountains of Central Asia. China contains as much as 60% of the snow leopard’s potential habitat and has the largest population of this species. Xinjiang is the largest province in China, covering an area of 1.66 million km² or about one-sixth of the land area of China. Xinjiang is one of the most important areas for snow leopards with much potential habitat in mountain ranges such as the north and south Tienshan and Kunlun containing almost 30% of the world’s snow leopard population. By the end of 2013, total 35 natural reserves have been established in Xinjiang, and 20 of these areas have snow leopards (Ma et al, 2013). In this paper, we report on the status of snow leopards in these protected areas and show that they play an important role in protecting snow leopards and their habitats. Then, we discuss the many problems and challenges faced by these protected areas. |
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Call Number | SLN @ rakhee @ | Serial | 1423 | ||
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Author | Mukherjee, S., Ashalakshmi, C. N., Home, C., Ramakrishnan, U. | ||||
Title | SAhonrt Reepvoartluation of the PCR-RFLP technique to aid molecular-based monitoring of felids and canids in India | Type | Journal Article | ||
Year | 2010 | Publication | BMC Research Notes | Abbreviated Journal | |
Volume | 3 | Issue | Pages ![]() |
159-166 | |
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Abstract | Background: The order Carnivora is well represented in India, with 58 of the 250 species found globally, occurring here. However, small carnivores figure very poorly in research and conservation policies in India. This is mainly due to the dearth of tested and standardized techniques that are both cost effective and conducive to small carnivore studies in the field. In this paper we present a non-invasive genetic technique standardized for the study of Indian felids and canids with the use of PCR amplification and restriction enzyme digestion of scat collected in the field. Findings: Using existing sequences of felids and canids from GenBank, we designed primers from the 16S rRNA region of the mitochondrial genome and tested these on ten species of felids and five canids. We selected restriction enzymes that would cut the selected region differentially for various species within each family. We produced a restriction digestion profile for the potential differentiation of species based on fragment patterns. To test our technique, we used felid PCR primers on scats collected from various habitats in India, representing varied environmental conditions. Amplification success with field collected scats was 52%, while 86% of the products used for restriction digestion could be accurately assigned to species. We verified this through sequencing. A comparison of costs across the various techniques currently used for scat assignment showed that this technique was the most practical and cost effective. Conclusions: The species-specific key developed in this paper provides a means for detailed investigations in the future that focus on elusive carnivores in India and this approach provides a model for other studies in areas of Asia where many small carnivores co-occur. |
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Language | English | Summary Language | Original Title | ||
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Notes | Approved | no | |||
Call Number | SLN @ rana @ | Serial | 1124 | ||
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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 | Themes 1 | Issue | 1 | Pages ![]() |
169-198 |
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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 | Wu, D., Maming, R., Xu, G., Zhu X., Buzzard, P. | ||||
Title | Relationship between ibex and snow leopard about food chain and population density in Tian Shan | Type | Journal Article | ||
Year | 2015 | Publication | Selevinia | Abbreviated Journal | |
Volume | Issue | Pages ![]() |
186-190 | ||
Keywords | diet, ibex, snow leopard | ||||
Abstract | Many studies have demonstrated that ibex (Capra sibirica) are the most frequently eaten prey of snow leopards (Panthera uncia) in Xinjiang, the west of China. Thus, an understanding of interactions between these species may have significant management and conservation of implications for both. In this study, we provide information on ibex grouping and density over a 24 month period in the Tian Shan of Xinjiang, China. We then use ibex density to estimate the density of snow leopards. We observed ibex primarily in ewe-lamb groups (N=880), but ibex sexual segregation and grouping changed seasonally with more mixed-sex groups during the winter rut. We observed the most ibex in April 2014 and 2015 with an average of (2422 ± 119 ibex). Over the 1643 km2 study area we then estimated an ibex density of 154 ± 23 ibex /100 km2 from which we estimated a density of 1.31~2.58 snow leopards/100 km2. |
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Call Number | SLN @ rakhee @ | Serial | 1439 | ||
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