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Author |
Hochstrasser, K.; Wachter, E.; Reisinger, P.W.; Greim, M.; Albrecht, G.J.; Gebhard, W. |
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Title |
Amino acid sequences of mammalian kazal-type proteinase inhibitors from salivary glands |
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Journal Article |
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1993 |
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Comp Biochem Physiol B |
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106 |
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1 |
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103-108 |
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Amino; Acid; Sequence; Animal; Carnivora; Comparative; study; Cysteine; chemistry; Glycosylation; Mink; Molecular; Data; Protease; Inhibitors; Salivary; Proteins; species; Specificity; Submandibular; Gland; Trypsin; Inhibitor; Kazal; Pancreatic; browse; 200 |
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1. The amino acid sequences of bikazins (the double-headed Kazal-type proteinase inhibitors from submandibular glands) isolated from the snow leopard (Unica unica), the European mink (Mustela lutreola), and the European pine marten (Martes martes) were determined. 2. N-terminal domains of bikazins are characterized by a cysteine residue spacing that differs from that of C-terminal domains of bikazins and other Kazal-type proteinase inhibitor domains. 3. N-terminal sequences of bikazins seem to be specific for, and highly conserved within, each Carnivora family. |
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0305-0491 |
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Document Type: eng |
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SLN @ rana @ 202 |
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385 |
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Author |
Sunquist, F. |
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Title |
Where cats and herders mix. (snow leopards in Tibet and Mongolia) |
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Journal Article |
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1997 |
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International Wildlife |
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27 |
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1 |
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27-33 |
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Mongolia; Tibet; herder; livestock; snow-leopard; predator; prey; World-Wildlife-Foundation; habitat; reserve; park; refuge; Pakistan; China; herders; parks; protected-area; snow leopard; browse; Wwf; world wildlife foundation; 1110; snow; leopard; range; territory; central; Central Asia; asia; Animal; region; conservation; wildlife; foundation; border; sheep; Baltistan; enclosures; area; home; snow leopards; snow-leopards; leopards; countries; country; Feed; Cats; cat; mountain; peoples; people |
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The snow leopard inhabits a huge range of territory which encompasses some of Central Asia's most bleak and inhospitable terrains. The animal herders in these regions are desperately poor and yet they have agreed to cooperate with conservation groups in protecting the snow leopard. The World Wildlife Foundation has worked to create a refuge on the Pakistan-China border. Sheep herders near Askole, a village in the Baltistan region of northern Paksitan, drive their flocks past stone enclosures. The area is also home to snow leopards. With their natural prey dminished, leopards in 13 countries of central Asia occasionally feed on livestock, putting the cats on a collision course with mountain peoples. |
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COPYRIGHT 1997 National Wildlife Federation , Jan-Feb 1997 v27 n1 p26(8) Document Type: English |
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SLN @ rana @ 330 |
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950 |
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Gosselin, S.J.; Loudy, D.L.; Tarr, M.J.; Balistreri, W.F.; Setchell, K.D.; Johnston, J.O.; Kramer, L.W.; Dresser, B.L. |
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Title |
Veno-occlusive disease of the liver in captive cheetah |
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1988 |
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Vet Pathol |
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25 |
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48-57 |
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Animal; Feed; analysis; Carnivora; Cheetahs; Female; Hepatic; Veno; Occlusive; Disease; pathology; veterinary; Histocytochemistry; Liver; ultrastructure; Male; Microscopy; Electron; Support; Non-U.S.Gov't; Vitamin A; browse; non; us; gov't; government; 280 |
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Liver tissues from 126 captive cheetah were evaluated by light microscopy and histochemistry; eight animals were evaluated by electron microscopy. The main hepatic lesion, a vascular lesion resembling veno- occlusive disease (VOD) of the liver and characterized by subendothelial fibrosis and proliferation of smooth muscle-like cells in the central veins, was seen in 60% of the sexually mature cheetah. Although this hepatic vascular lesion was seen in cheetah as young as 1 year of age, the most severe lesions, usually associated with liver failure, were found in cheetah between the ages of 6 and 11. There was no sex predisposition, and in approximately 40% of the VOD cases, liver disease was not suspected clinically or at necropsy. VOD was found in other felidae, especially in the snow leopard. High levels of vitamin A in livers, as well as in diets of the cheetah, could be a contributing factor in the development of VOD in some groups of cheetah. |
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0300-9858 |
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Document Type: Eng |
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SLN @ rana @ 127 |
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339 |
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De Groot, H.; Van Swieten, P.; Aalberse, R.C. |
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Title |
Evidence for a Fel d I-like molecule in the “big cats” (Felidae species) |
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Journal Article |
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1990 |
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J Allergy Clin Immunol |
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86 |
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1 |
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107-116 |
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Adolescence; Adult; Allergens; immunology; Animal; Antibodies; Monoclonal; diagnostic; use; Antibody; Specificity; Carnivora; Cats; Comparative; study; Cross; Reactions; Hair; Histamine; Release; Human; IgE; analysis; IgG; Middle; Age; Radioallergosorbent; Test; methods; Support; Non-U.S.Gov't; browse; us; government; gov't; 240 |
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In this study, we investigated the cross-reactivity pattern of IgE and IgG4 antibodies to the major feline allergen, Fel d I. We studied the IgE and IgG4 response of 11 cat-allergic patients against Fel d I-like structures in eight members of the Felidae family: ocelot, puma, serval, siberian tiger, lion, jaguar, snow leopard, and caracal. Hair from these “big cats” was collected, extracted, and used in a RAST system and histamine-release test. By means of a RAST-inhibition assay with affinity-purified Fel d I from cat dander, it was established that, in the Felidae species, a Fel d I equivalent is present that reacts with IgE and IgG4 antibodies. We found that all patients had cross-reacting IgE antibodies to seven of the Felidae tested; no IgE antibodies reactive with the caracal were found. Eight of 10 patients with IgG4 antibodies directed to cat dander also had IgG4 antibodies directed to several Felidae species, including the caracal. However, the correlation between the IgE and the IgG4 antibody specificity was low, indicating that, in the case of Fel d I IgE and IgG4, antibodies do not necessarily have the same specificity. |
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0091-6749 |
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Document Type: eng |
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SLN @ rana @ 157 |
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233 |
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Author |
Kovshar A.F. |
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Soils. Plants and animals. Vertical zones |
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Miscellaneous |
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1972 |
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21-41 |
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Kazakhstan; Aklu Jabagly nature reserve; establishment; soil; climate; physiographic factors; researching; plants; Animals; snow leopard.; 7340; Russian |
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A description of the Aksu Jabagly nature reserve is given and includes as follows: data of establishment, location, physic and geographic description, types of soils, climate, flora and fauna. In the nature reserve there are 238 birds, 42 mammals, 9 reptiles and 2 fishes. Snow leopard inhabited in the nature reserve. |
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Full text available in RussianJournal Title: Aksu Jabagly nature reserve. Guidebook for nature reserve. |
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SLN @ rana @ 712 |
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579 |
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Potapov R. |
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On the top of ridges |
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Miscellaneous |
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1986 |
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146-162 |
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Tajikistan; Pamir; Animals; snow leopard; ibex.; 7970; Russian |
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In a popular form, it says about wildlife of Pamir, unique animal kingdom of highlands. The author describes his personal encounter with snow leopard following a herd of ibex and thinks of peculiarities of this large predator and reasons for hunting it. |
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Tiger gully. Unknown world. |
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Full text available in Russian |
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SLN @ rana @ 775 |
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785 |
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Author |
Yazan Yu.P. |
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The Almaty state nature reserve |
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Miscellaneous |
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1980 |
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162-164 |
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Kazakhstan; Almaty nature reserve; establishment; climate; physiographic factors; plants; Animals; insects; reptiles; birds; mammals; snow leopard.; 8590; Russian |
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History of the Alma-Ata nature reserve establishment, its location physical and geographic data, climate, and vegetation zones are described. Fauna of the protected area is represented by 64 mammal species, and about 200 bird species. Briefly described are behavioural patterns of roe deer, moral, wild boar, Siberian ibex, snow leopard, lynx, brown bear, and marten, and other mammals of the mountainous area. |
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Full text available in RussianJournal Title: Nature reserves of the USSR. |
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SLN @ rana @ 836 |
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1058 |
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Author |
Zhiryakov V.A. |
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The influence of large predators on wild mammal populations in the Almaty nature reserve |
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Miscellaneous |
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1979 |
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37-39 |
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Kazakhstan; Almaty nature reserve; Animals; predators; snow leopard; wolf; preys.; 8760; Russian |
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There are following large predators in the Almaty nature reserve: wolf (5-6), snow leopard (single occasions), Turkistan lynx (single occasions), and Tien Shan brown bear (15-20). The share of wild mammals (roe-deer, ibex, wild boar, argali, gazelle, moral, and badger) being eaten by predators is 18.2 percent, about 60 percent of the entire prey falling to the share of wolf. |
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Full text available in RussianJournal Title: Ecologic fundamentals of protection and sustainable use of predatory mammals. |
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SLN @ rana @ 853 |
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1083 |
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Author |
Nikolaevskiy A.G. |
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The Kyrgyz state nature park “Ala-Archa”. People's park of the Uzbek SSR |
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Miscellaneous |
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1985 |
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89-92 |
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Kyrgyzsatn; Ala-Archa national park; location; climate; soils; relief; plants; Animals; mammals; snow leopard.; 7750 |
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It provides general information about the Kyrgyz state nature park ®Ala-Archa", its physico-geographical features, relief, landscape zoning, and description of flora and fauna. Snow leopard, Tien-Shan brown bear, ibex (more than 300 animals), porcupine, stone marten, ermine, and marmot, etc. are mentioned as the most interesting animals. |
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1950Journal Title: National parks. |
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SLN @ rana @ 753 |
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720 |
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Moheb, Z., Sahel, K., Fazli, M., Hakimi, M., Ismaily, S. |
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Snow Leopard Intrusions into Livestock Corrals in Badakhshan, Afghanistan: Challenges and Solutions |
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2023 |
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Snow Leopard Reports |
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1-5 |
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Panthera uncia, corral intrusion, livestock predation, occurrence record, problematic animal |
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Snow leopards (Panthera uncia) frequently prey on livestock throughout their range, posing a potential threat to human livelihoods and endangering the predator’s own survival. In this study, we document seven incidents of snow leopards intruding into livestock corrals and engaging in surplus killing in three districts of Badakhshan, Afghanistan. Six of the predation incidents were attributed to a single individual, occurring in five locations of Wakhan District and eventually in Yumgan District, where the captured animal was relocated. The remaining predation incident occurred in Keran-wa Munjan District, marking the first recorded evidence of snow leopards in this area. In all but one of the incidents, the predator was trapped in the corral it intruded and safely released back to the wild with the support of the National Environmental Protection Agency (NEPA) and Wildlife Conservation Society (WCS) team in Afghanistan. Local communities have been supportive in releasing the snow leopard despite losses of over 50 livestock. To mitigate negative interactions between snow leopards and livestock, conservation efforts should focus on conserving prey species, implementing predator- proof measures for livestock corrals, and utilizing collar tracking when a trapped snow leopard is found in a corral. Unfortunately, when an individual repeatedly enters livestock corrals and continues killing livestock, capture and relocation to captivity often become the only viable option to address the problem and ensure the animal’s safety from retaliatory action by affected herders. |
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SLN @ rakhee @ |
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1728 |
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