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Author |
Jackson, R.; Ahlborn, G. |
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Title |
A preliminary habitat suitability model for the snow leopard, Panthera uncia, in West Nepal |
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1984 |
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International Pedigree Book of Snow Leopards |
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4 |
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43-52 |
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Nepal; Himalaya; habitat; browse; modeling; predator; prey; diet; reproduction; interspersion; cover; herders; livestock; habitat-suitability-model; Human; 2650 |
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Full text available at URL |
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SLN @ rana @ 404 |
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434 |
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Author |
Jack; Jill; Jackson, P.; Wharton, D.; Jackson, R. |
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Title |
Snow leopard, Ucia uncia |
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Miscellaneous |
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Slims; status; distribution; habitat; diet; China; Mongolia; Kyrgyzstan; discription; range; conservation; behavior; browse; 4040 |
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Full Text at URL |
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SLN @ rana @ 4 |
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426 |
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Author |
Hongguang, H.; Yongfu, X. |
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Title |
Captive snow leopards in the Chongqing Zoo |
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Conference Article |
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Year |
1994 |
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191-193 |
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China; zoos; captivity; cage; food; feeding; diet; management; zoo; browse; 3390 |
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Islt |
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Usa |
Editor |
J.L.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 228 |
Serial |
389 |
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Author |
Aramov, B. |
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Title |
The Biology of the Snow Leopard in the Gissarsky Nature Reserve |
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Conference Article |
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1997 |
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108-109 |
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breeding; diet; predator; prey; reserve; reserves; park; parks; refuge; livestock; marmot; goat; sheep; horse; ibex; habitat; Gissarsky; Tajikistan; Russia; Ussr; Soviet-Union; behavior; wolves; Dogs; herder; herders; protected-area; browse; soviet; union; soviet union; 2820 |
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Islt |
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Lahore, Pakistan |
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Jackson, R. and A.A. |
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Full Text at URLTitle, Monographic: Eighth International Snow Leopard SymposiumPlace of Meeting: Islamabad. PakistanDate of Copyright: 1997 |
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Call Number |
SLN @ rana @ 302 |
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95 |
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Author |
Brunstein, L. |
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Title |
Handrearing Snow Leopards in the Cheyenne Mountain Zoo |
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Journal Article |
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Year |
1978 |
Publication |
Int.Ped.Book of Snow Leopards |
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1 |
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44-49 |
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hand-rearing; hand; rearing; cubs; bottle; feeding; diet; browse; 3580 |
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SLN @ rana @ 43 |
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200 |
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Author |
Wharton, D.; Mainka, S.A. |
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Title |
Captive Management of the Snow Leopard |
Type |
Conference Article |
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Year |
1994 |
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135-148 |
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Keywords |
zoos; captivity; captive; management; husbandry; diet; social; behavior; housing; habitat; breeding; status; distribution; parasites; vaccination; quarantine; Disease; medical; veterinary; medicine; ceasarean; hand-rearing; browse; hand rearing; hand; rearing; 3550 |
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Islt |
Place of Publication |
Usa |
Editor |
J.L.Fox; D.Jizeng |
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Full Text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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no |
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Call Number |
SLN @ rana @ 265 |
Serial |
1017 |
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Author |
Xinchun, M. |
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Title |
Distribution in the wild and the captive raising of snow leopards in Xinjiang, China |
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Conference Article |
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Year |
1994 |
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157-162 |
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distribution; habitat; ibex; blue-sheep; argali; hides; skins; pelts; furs; coats; zoos; zoo; China; captivity; care; husbandry; feeding; diet; housing; Disease; blue; sheep; browse; 3770 |
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Islt |
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Usa |
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J.L.Fox; D.Jizeng |
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Full text at URLTitle, Monographic: Seventh International Snow Leopard SymposiumPlace of Meeting: ChinaDate of Copyright: 1994 |
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Call Number |
SLN @ rana @ 267 |
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1031 |
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Author |
Aryal, A. |
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Title |
Final Report On Demography and Causes of Mortality of Blue Sheep (Pseudois nayaur) in Dhorpatan Hunting Reserve in Nepal |
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Report |
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2009 |
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1-53 |
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Keywords |
Report; mortality; blue; blue sheep; blue-sheep; sheep; Pseudois; pseudois nayaur; Pseudois-nayaur; nayaur; Dhorpatan; hunting; reserve; Nepal; biodiversity; research; training; snow; snow leopard; snow-leopard; leopard; conservation; program; population; Population-Density; density; densities; change; Sex; study; area; High; poaching; Pressure; reducing; number; predators; predator; poison; wolf; wolves; canis; Canis-lupus; lupus; wild; wild boar; prey; prey species; prey-species; species; scats; scat; value; fox; cover; deer; diet; leopards; pika; snow leopards; snow-leopards; soil; Relationship |
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A total of 206 individual Blue sheep Pseudois nayaur were estimated in Barse and Phagune blocks of Dhorpatan Hunting Reserve (DHR) and population density was 1.8 Blue sheep/sq.km. There was not significant change in population density from last 4 decades. An average 7 animals/herd (SD-5.5) were classified from twenty nine herds, sheep per herds varying from 1 to 37. Blue sheep has classified into sex ratio on an average 75 male/100females was recorded in study area. The sex ratio was slightly lower but not significantly different from the previous study. Population of Blue sheep was seen stable or not decrease even there was high poaching pressure, the reason may be reducing the number of predators by poison and poaching which has
supported to increase blue sheep population. Because of reducing the predators Wolf Canis lupus, Wild boar population was increasing drastically in high rate and we can observed wild boar above the tree line of DHR. The frequency of occurrence of different prey species in scats of different predators shows that, excluding zero values, the frequencies of different prey species were no significantly different (ö2= 10.3, df = 49, p > 0.05). Most of the scats samples (74%) of Snow leopard, Wolf, Common Leopard, Red fox's cover one prey species while two and three species were present in 18% and 8%, respectively. Barking deer Muntiacus muntjak was the most frequent (18%) of total diet composition of common leopards. Pika Ochotona roylei was the most frequent (28%), and Blue sheep was in second position for diet of snow leopards which cover 21% of total diet composition. 13% of diet covered non-food item such as soil, stones, and vegetable. Pika was most frequent on Wolf and Red fox diet which covered 32% and 30% respectively. There was good positive relationship between the scat density and Blue sheep consumption rate, increasing the scat density, increasing the Blue sheep consumption rate. Blue sheep preference by different predators such as Snow leopard, Common leopard, Wolf and Red fox were 20%, 6%, 13% and 2% of total prey species respectively. |
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The Biodiversity Research and Training Forum (BRTF) Nepal. Email: savefauna@yahoo.com
Submitted to Snow Leopard Conservation Grants Program, USA. |
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Call Number |
SLN @ rana @ 1064 |
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104 |
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Author |
Slifka, K.; Stacewicz-Sapuntzakis, S.M.; Bowen, P.; Crissey, S. |
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Title |
A Survey of Serum and Dietary Carotenoids in Captive Wild Animals |
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Journal Article |
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1999 |
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The Journal of Nutrition |
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129 |
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380-390 |
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captive; carotenoids; dietary; Serum; snow leopard; survey; wild; Animals; Animal |
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Abstract |
Accumulation of carotenoids varies greatly among animal species and is not fully characterized.
Circulating carotenoid concentration data in captive wild animals are limited and may be useful for their management.
Serum carotenoid concentrations and dietary intakes were surveyed and the extent of accumulation
categorized for 76 species of captive wild animals at Brookfield Zoo. Blood samples were obtained opportunistically
from 275 individual animals immobilized for a variety of reasons; serum was analyzed for a- and b-carotene,
lutein 1 zeaxanthin, lycopene, b-cryptoxanthin and canthaxanthin. Total carotenoid content of diets was calculated
from tables and chemical analyses of commonly consumed dietary components. Diets were categorized as
low, moderate or high in carotenoid content as were total serum carotenoid concentrations. Animals were
classified as unknown, high, moderate or low (non-) accumulators of dietary cartenoids. Nonaccumulators had total
serum carotenoid concentrations of 0-101 nmol/L, whereas accumulators had concentrations that ranged widely,
from 225 to 35,351 nmol/L. Primates were uniquely distinguished by the widest range of type and concentration
of carotenoids in their sera. Most were classified as high to moderate accumulators. Felids had high accumulation
of b-carotene regardless of dietary intake, whereas a wide range of exotic birds accumulated only the xanthophylls,
lutein 1 zeaxanthin, canthaxanthin or cryptoxanthin. The exotic ungulates, with the exception of the bovids, had
negligible or nondetectable carotenoid serum concentrations despite moderate intakes. Bovids accumulated only
b-carotene despite moderately high lutein 1 zeaxanthin intakes. Wild captive species demonstrated a wide variety
of carotenoid accumulation patterns, which could be exploited to answer remaining questions concerning carotenoid
metabolism and function. |
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SLN @ rana @ 257 |
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896 |
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Author |
Lu, Q., Xiao, L., Cheng, C., Lu, Z., Zhao, J., Yao, M. |
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Title |
Snow Leopard Dietary Preferences and Livestock Predation Revealed by Fecal DNA Metabarcoding: No Evidence for Apparent Competition Between Wild and Domestic Prey |
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2021 |
Publication |
Frontiers in Ecology and Evolution |
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9 |
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783546 |
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1 - 14 |
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apparent mutualism, blue sheep, feeding habits, molecular dietary analysis, human-carnivore conflict, prey selection, Sanjiangyuan |
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Accurate assessments of the patterns and drivers of livestock depredation by wild carnivores are vital for designing effective mitigation strategies to reduce human-wildlife conflict. Snow leopard’s (Panthera uncia) range extensively overlaps pastoralist land- use and livestock predation there is widely reported, but the ecological determinants of livestock consumption by snow leopards remain obscure. We investigated snow leopard dietary habits at seven sites across the Sanjiangyuan region of the Qinghai– Tibetan Plateau (QTP), an area central to the species’ global range. Snow leopard abundance, wild prey composition, and livestock density varied among those sites, thus allowing us to test the effects of various factors on snow leopard diet and livestock predation. Using DNA metabarcoding, we obtained highly resolved dietary data from 351 genetically verified snow leopard fecal samples. We then analyzed the prey preferences of snow leopards and examined ecological factors related to their livestock consumption. Across the sites, snow leopard prey was composed mainly of wild ungulates (mean = 81.5% of dietary sequences), particularly bharal (Pseudois nayaur), and supplemented with livestock (7.62%) and smaller mammals (marmots, pikas, mice; 10.7%). Snow leopards showed a strong preference for bharal, relative to livestock, based on their densities. Interestingly, both proportional and total livestock consumption by snow leopards increased linearly with local livestock biomass, but not with livestock density. That, together with a slight negative relationship with bharal density, supports apparent facilitation between wild and domestic prey. We also found a significant positive correlation between population densities of snow leopard and bharal, yet those densities showed slight negative relationships with livestock density. Our results highlight the importance of sufficient wild ungulate abundance to the conservation of viable snow leopard populations. Additionally, livestock protection is critically needed to reduce losses to snow leopard depredation, especially where local livestock abundances are high. |
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SLN @ rakhee @ |
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1675 |
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