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Author Koshkarev, E. url 
  Title Has the Snow Leopard Disappeared from Eastern Sayan and Western Hovsogol? Type Conference Article
  Year 1997 Publication Abbreviated Journal  
  Volume Issue Pages 96-107  
  Keywords (up) Sayan; Hovsogol; distribution; status; Mongolia; siberia; Russia; Ussr; Soviet-Union; park; parks; reserve; reserves; refuge; field-studies; tracks; pug; marks; scrape; scrapes; spray; marking; scat; feces; ibex; predator; prey; protected-area; Hovsogul; browse; soviet union; soviet; union; field studies; field; sutdies; pug marks; protected; area; areas; protected areas; protected area; 2850  
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  Publisher Islt Place of Publication Lahore, Pakistan Editor R.Jackson; A.Ahmad  
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  Notes Full text available at URLTitle, Monographic: Eigth International Snow Leopard SymposiumPlace of Meeting: Islamabad, PakistanDate of Copyright: 1997 Approved no  
  Call Number SLN @ rana @ 400 Serial 564  
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Author Korablev, M. P., Poyarkov, A. D., Karnaukhov, A. S., Zvychaynaya, E. Y., Kuksin, A. N., Malykh, S. V., Istomov, S. V., Spitsyn, S. V., Aleksandrov, D. Y., Hernandez-Blanco, J. A., Munkhtsog, B., Munkhtogtokh, O., Putintsev, N. I., Vereshchagin, A. S., Becmurody, A., Afzunov, S., Rozhnov, V. V. url 
  Title Large-scale and fine-grain population structure and genetic diversity of snow leopards (Panthera uncia Schreber, 1776) from the northern and western parts of the range with an emphasis on the Russian population. Type Journal Article
  Year 2021 Publication Conservation Genetics Abbreviated Journal  
  Volume Issue Pages  
  Keywords (up) Snow leopard, Panthera uncia, Microsatellites, Heterozygosity, Population structure, Noninvasive survey, Scat, Subspecies  
  Abstract The snow leopard (Panthera uncia Schreber, 1776) population in Russia and Mongolia is situated at the northern edge of the range, where instability of ecological conditions and of prey availability may serve as prerequisites for demographic instability and, consequently, for reducing the genetic diversity. Moreover, this northern area of the species distribution is connected with the western and central parts by only a few small fragments of potential habitats in the Tian-Shan spurs in China and Kazakhstan. Given this structure of the range, the restriction of gene flow between the northern and other regions of snow leopard distribution can be expected. Under these conditions, data on population genetics would be extremely important for assessment of genetic diversity, population structure and gene flow both at regional and large-scale level. To investigate large-scale and fine-grain population structure and levels of genetic diversity we analyzed 108 snow leopards identified from noninvasively collected scat samples from Russia and Mongolia (the northern part of the range) as well as from Kyrgyzstan and Tajikistan (the western part of the range) using panel of eight polymorphic microsatellites. We found low to moderate levels of genetic diversity in the studied populations. Among local habitats, the highest heterozygosity and allelic richness were recorded in Kyrgyzstan (He = 0.66 ± 0.03, Ho = 0.70 ± 0.04, Ar = 3.17) whereas the lowest diversity was found in a periphery subpopulation in Buryatia Republic of Russia (He = 0.41 ± 0.12, Ho = 0.29 ± 0.05, Ar = 2.33). In general, snow leopards from the western range exhibit greater genetic diversity (He = 0.68 ± 0.04, Ho = 0.66 ± 0.03, Ar = 4.95) compared to those from the northern range (He = 0.60 ± 0.06, Ho = 0.49 ± 0.02, Ar = 4.45). In addition, we have identified signs of fragmentation in the northern habitat, which have led to significant genetic divergence between subpopulations in Russia. Multiple analyses of genetic structure support considerable genetic differentiation between the northern and western range parts, which may testify to subspecies subdivision of snow leopards from these regions. The observed patterns of genetic structure are evidence for delineation of several management units within the studied populations, requiring individual approaches for conservation initiatives, particularly related to translocation events. The causes for the revealed patterns of genetic structure and levels of genetic diversity are discussed.  
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  Notes Approved no  
  Call Number Serial 1633  
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Author Janecka; J.E.; Jackson, R.; Yuquang, Z.; Diqiang, L.; Munkhtsog, B.; Buckley-Beason, V.; Murphy, W.J. url 
  Title Population monitoring of snow leopards using noninvasive collection of scat samples: a pilot study Type Miscellaneous
  Year 2008 Publication Animal Conservation Abbreviated Journal  
  Volume 11 Issue Pages 401-411  
  Keywords (up) snow leopard; genetics; scat; noninvasive; survey.  
  Abstract The endangered snow leopard Panthera uncia occurs in rugged, high-altitude regions of Central Asia. However, information on the status of this felid is limited in many areas. We conducted a pilot study to optimize molecular markers for the analysis of snow leopard scat samples and to examine the feasibility of using noninvasive genetic methods for monitoring this felid. We designed snow leopard-specific primers for seven microsatellite loci that amplified shorter segments and avoided flanking sequences shared with repetitive elements. By redesigning primers we maximized genotyping success and minimized genotyping errors. In addition, we tested a Y chromosome-marker for sex identification and designed a panel of mitochondrial DNA primers for examining genetic diversity of snow leopards using scat samples. We collected scats believed to be from snow leopards in three separate geographic regions including north-western India, central China and southern Mongolia. We observed snow leopard scats in all three sites despite only brief 2-day surveys in each area. There was a high rate of species misidentification in the field with up to 54% of snow leopard scats misidentified as red fox. The high rate of field misidentification suggests sign surveys incorporating scat likely overestimate snow leopard abundance. The highest ratio of snow leopard scats was observed in Ladakh (India) and South Gobi (Mongolia), where four and five snow leopards were detected, respectively. Our findings describe a species-specific molecular panel for analysis of snow leopard scats, and highlight the efficacy of noninvasive genetic surveys for monitoring snow leopards. These methods enable large-scale noninvasive studies that will provide information critical for conservation of snow leopards.  
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  Notes Supplemental information may be found at http:snowleopardnetwork.org/bibliography/JaneckaSupplemental2008.pdf Approved no  
  Call Number SLN @ rana @ 883 Serial 488  
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Author Kyes, R.; Chalise, M.K. url 
  Title Assessing the Status of the Snow Leopard Population in Langtang National Park, Nepal Type Report
  Year 2005 Publication Abbreviated Journal  
  Volume Issue Pages 1-22  
  Keywords (up) status; snow; snow leopard; snow-leopard; leopard; population; Langtang; national; national park; National-park; park; Nepal; project; International; international snow leopard trust; International-Snow-Leopard-Trust; trust; program; biodiversity; research; study; Support; Islt; approach; Data; conservation; snow leopards; snow-leopards; leopards; survey; distribution; abundance; prey; prey species; prey-species; species; populations; programs; local; sign; pugmarks; scats; scat; primary; Himalayan; areas; area; Response; Pressure; domestic; domestic livestock; livestock; grazing  
  Abstract This project is part of an ongoing snow leopard study established in 2003 with support from the ISLT. The study involves a multifaceted approach designed to provide important baseline data on the status of the snow leopard population in Langtang National Park (LNP), Nepal and to generate long-term support and commitment to the conservation of snow leopards in the park. The specific aims include: 1) conducting a population survey of the snow leopards in LNP, focusing on distribution and abundance; 2) assessing the status of prey species populations in the park; and 3) providing educational outreach programs on snow leopard conservation for local school children (K-8) living in the park. During the 2004 study period, snow leopard signs were observed (including pugmarks and scats) although somewhat fewer than in 2003. Similarly, the average herd size of the snow leopards' primary prey species in LNP (the Himalayan thar) was a bit lower than in 2003. There is speculation that the thar populations and the snow leopards may be moving to more remotes areas of the park perhaps in response to increasing pressure from domestic livestock grazing. This possibility is being addressed during the 2005 study period.  
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  Notes Project funded by International Snow Leopard Trust Small Grants Program, 2004. University of Washington and Nepal Biodiversity Research Society/Tribhuvan University. Approved no  
  Call Number SLN @ rana @ 1072 Serial 607  
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Author Hung, L.; Talipu; Hua, L.; Mingjiang, Q.; Schaller, G.B. url 
  Title A Snow Leopard Survey in the Taxkorgan Region, XInjiang, China Type Miscellaneous
  Year 1985 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords (up) Taxkorgan; China; Xinjiang; field; study; browse; survey; K2; pamirs; prey; habitat; herders; scat; analysis; 4190  
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  Notes Full text available at URL Approved no  
  Call Number SLN @ rana @ 407 Serial 390  
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Author Zhirjakov, V.A. url 
  Title On the ecology of the snow leopard in the Zailisky-Alatau (Northern Tien Shan) Type Journal Article
  Year 1990 Publication Int Ped Book of Snow Leopards Abbreviated Journal  
  Volume 6 Issue Pages 25-30  
  Keywords (up) Tien-Shan; ecology; China; browse; Kazakhstan; Russia; Soviet-Union; distribution; population; prey; behavior; food-habits; scat-analysis; 3240  
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  Notes Full text available at URL Approved no  
  Call Number SLN @ rana @ 168 Serial 1078  
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