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Author Kuznetsov B.A. url 
  Title The cats – Felidae Type Miscellaneous
  Year 1975 Publication Abbreviated Journal  
  Volume (up) Part 3. Issue Pages 161, 164-165  
  Keywords Ussr; Felidae; taxonomy; distribution; snow leopard.; 7530; Russian  
  Abstract An identification table for genus and species of Felidae family of USSR is given. Snow leopard Panthera uncia (Schreher) described for Pamir, Tien Shan, Altai and mountains of Tuva.  
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  Notes Full text available in RussianJournal Title: Guide of vertebrate species of USSR. Mammals. Approved no  
  Call Number SLN @ rana @ 731 Serial 601  
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Author Ishunin G.I. url 
  Title Irbis, or snow leopard Felis (Uncia) uncia S¤hr†b†a 1778 Type Miscellaneous
  Year 1961 Publication Abbreviated Journal  
  Volume (up) Vol. 3. Issue Pages 127-131  
  Keywords Uzbekistan; snow leopard; taxonomy; distribution; behavior; practical use.; 6880; Russian  
  Abstract It describes diagnostic signs and taxonomy of snow leopard as well as its distribution, behavioral patterns and use in Uzbekistan. This predator inhabits the Ugam, Pskem, Chatkal, Turkistan, and Gissar ridges. It mainly preys on ibex, and marmots, vole-mouse, and snow-cocks. Sometimes it attacks domestic sheep. Snow leopard is of low commercial value. The cost of skin is 4 roubles 70 kopecks. Only a few skins are purchased.  
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  Notes Full text available in RussianJournal Title: Fauna of the Uzbek SSR. Mammals (predators and ungulates). Approved no  
  Call Number SLN @ rana @ 666 Serial 412  
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Author Yu, N.Z.C.; Wang, X.; He, G.; Zhang, Z.; Zhang, A.; Lu, W.; Tang, F. url 
  Title A revision of genus Uncia Gray, 1854 based on mitochondrial DNA restriction site maps Type Journal Article
  Year 1996 Publication Acta Theriologica Sinica Abbreviated Journal  
  Volume (up) 16 Issue 2 Pages 105-108  
  Keywords taxonomy; uncia; panthera; snow-leopard; snow leopard; browse; 1350; Chinese  
  Abstract The Snow leopard (Panthera uncia) is one of the most threatened wild big cats within its range of distribution, however, the question of its systematic status is a matter of debate. Is it a member of genus Panthera, or is it in its own genus (Uncia)? The analysis of genetic difference at the DNA level may provide useful data to clarify the issue. In the present study, ten hexanucleotide-specific restriction endonucleases were used to evaluate the patterns of mitochondrial DNA variation between the Snow leopard and leopard (P. pardus). The molecular size of mtDNA from the two species was about 16.5 kb. Ten enzymes surveyed 32-34 restriction sites, which corresponded to 192 apprx 204 base pairs, or 1.16% apprx 1.24% of the total mtDNA molecule. A total of 45 restriction sites were mapped; of these sites, twenty-four, which correspond to 53.3% of the total sites, were variable. The sequence divergence between them was 0.075 33, which was undoubtedly in the species-level distinction but did not reach the genus level. Therefore, the Snow leopard should be placed in the genus Panthera rather than in its own ganus. It also seems reasonable to recognize Uncia as a valid subgenus. This conclusion not only support but also supplement the viewpoint of Simpson who treated Uncia as a subgenus within Panthera.  
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  Notes Document Type: Chinese Approved no  
  Call Number SLN @ rana @ 295 Serial 1063  
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Author Olaf, R.P.; Edmonds, B.; Gittleman, J.; Purvis, A. url 
  Title Building large trees by combining phylogenetic information: a complete phylogeny of the extant Carnivora (Mammalia) Type Journal Article
  Year 1999 Publication Biological Reviews of the Cambridge Philosophical Society Abbreviated Journal  
  Volume (up) 74 Issue Pages 143-175  
  Keywords Carnivora; character-congruence; taxonomic-congruence; supertree; matrix-representation; parsimony; divergence-times; fossil-dates; molecular-clock; macroevolution; taxonomy; Evolution; browse; character; congruence; taxonomic; matrix; representation; divergence; times; fossil; dates; Molecular; clock; 1220  
  Abstract One way to build larger, more comprehensive phylogenies is to combine the vast amount of phylogenetic information already available. We review the two main strategies for accomplishing this (combining raw data versus combining trees), but employ a relatively new variant of the latter: supertree construction. The utility of one supertree technique, matrix representation using parsimony analysis (MRP), is demonstrated by deriving a complete phylogeny for all 271 extant species of the Carnivora from 177 literature sources. Beyond providing a `consensus' estimate of carnivore phylogeny, the tree also indicates taxa for which the relationships remain controversial (e.g. the red panda; within canids, felids, and hyaenids) or have not been studied in any great detail (e.g. herpestids, viverrids, and intrageneric relationships in the procyonids). Times of divergence throughout the tree were also estimated from 74 literature sources based on both fossil and molecular data. We use the phylogeny to show that some lineages within the Mustelinae and Canidae contain significantly more species than expected for their age, illustrating the tree's utility for studies of macroevolution. It will also provide a useful foundation for comparative and conservational studies involving the carnivores.

(Received June 2 1998)(Revised November 27 1998)(Accepted December 16 1998)
 
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  Notes Copyright c Cambridge Philosophical Society 1999 Document Type: English Approved no  
  Call Number SLN @ rana @ 371 Serial 739  
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