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Author Namgail, T.
Title Interactions between argali and livestock, Gya-Miru Wildlife Sanctuary, Ladakh, India, Final Project Report Type Report
Year 2004 Publication Abbreviated Journal
Volume Issue Pages 1-39
Keywords (up) Interactions; interaction; argali; livestock; Gya-Miru; wildlife; sanctuary; sanctuaries; Ladakh; India; project; Report; land-use; land use; region; indian; trans-himalaya; transhimalaya; economy; Animal; products; meat; diet; people; wool; goats; goat; International; High; recent; change; population; grazing; Pressure; pasture; impact; 2000; knowledge; primary; Chundawat; wild; area; Support; ungulate; species; fox; nature; domestic; sheep; habitat; habitat use; use; tibetan; Tibetan argali; ovis; Ovis ammon hodgsoni; ammon; reserve; international snow leopard trust; International-Snow-Leopard-Trust; snow; snow leopard; snow-leopard; leopard; trust; program
Abstract Livestock production is the major land-use in Ladakh region of the Indian Trans-Himalaya, and is a crucial sector that drives the region's economy (Anon, 2002). Animal products like meat and milk provide protein to the diet of people, while products like wool and pashmina (soft fibre of goats) find their way to the international market. Such high utility of livestock and the recent socio-economic changes in the region have caused an increase in livestock population (Rawat and Adhikari, 2002; Anon. 2002), which, if continue apace, may increase grazing pressure and deteriorate pasture conditions. Thus, there is an urgent need to assess the impact of such escalation in livestock population on the regions wildlife. Although, competitive interaction between wildlife and livestock has been studied elsewhere in the Trans-Himalaya (Bhatnagar et al., 2000; Mishra, 2001; Bagchi et al., 2002), knowledge on this aspect in the Ladakh region is very rudimentary. The rangelands of Ladakh are characterised by low primary productivity (Chundawat & Rawat, 1994), and the wild herbivores are likely to compete with the burgeoning livestock on these impoverished rangelands (Mishra et al., 2002). Thus, given that the area supports a diverse wild ungulate assemblage of eight species (Fox et al., 1991b), and an increasing livestock population (Rawat and Adhikari, 2002), the nature of interaction between wildlife and livestock needs to be assessed. During this project, we primarily evaluated the influence of domestic sheep and goat grazing on the habitat use of Tibetan argali Ovis ammon hodgsoni in a prospective wildlife reserve in Ladakh.
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Notes Project funded by International Snow Leopard Trust Small Grants Program, 2003. Approved no
Call Number SLN @ rana @ 1073 Serial 711
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Author Raghavan, B.; Bhatnagar, Y.; Qureshi, Q.
Title Interactions between livestock and Ladakh urial (Ovis vignei vignei); final report Type Report
Year 2003 Publication Abbreviated Journal
Volume Issue Pages 1-46
Keywords (up) Interactions; interaction; livestock; Ladakh; urial; ovis; endangered; Animal; Iucn; 2000; Cites; indian; wildlife; protection; number; 1960; 70; hunting; meat; fox; Chundawat; population; range; species; recent; humans; Human; Pressure; habitat; areas; area; human activity; activity; activities; agriculture; pastoralism; development; dam; Base; threats; threat; poaching; grazing; trans-himalaya; transhimalaya; Competition; resource; presence; India; project; International; international snow leopard trust; International-Snow-Leopard-Trust; snow; snow leopard; snow-leopard; leopard; trust; program
Abstract The Ladakh urial (Ovis vignei vignei) is a highly endangered animal (IUCN Red List 2000) listed in the Appendix 1 of CITES and Schedule 1 of the Indian Wildlife Protection Act 1972. Its numbers had been reduced to a few hundred individuals in the 1960s and 70s through hunting for trophies and meat (Fox et al. 1991, Mallon 1983, Chundawat and Qureshi 1999, IUCN Red List 2000). However, with the protection bestowed by the IWPA 1972, and resultant decrease in hunting, the population seems to have shown a marginal increase to about 1000-1500 individuals in its range in Ladakh (Chundawat and Qureshi 1999, IUCN Red List 2000). Although the species had in the past, been able to coexist with the predominantly Buddhist society of Ladakh, the recent increase in the population of both humans and their livestock has placed immense pressures on its habitat (Shackleton 1997, Chundawat and Qureshi 1999, Raghavan and Bhatnagar 2003). This is especially important considering that the Ladakh urial habitat coincides with the areas of maximum human activity in terms of settlements, agriculture, pastoralism and development, in Ladakh (Fox et al. 1991, Chundawat and Qureshi 1999, Raghavan and Bhatnagar 2003). Increased developmental activities such as construction of roads, dams, and military bases in these areas have also increased the access to their habitat. This has consequently made the species more vulnerable to the threats of poaching and habitat destruction (Fox et al. 1991, Chundawat and Qureshi 1999, Raghavan and Bhatnagar 2002). Pressure from increased livestock grazing is one of the major threats faced by the species today (Shackleton 1997, Fox et al. 1991, Mallon 1983, IUCN Red List 2000 Chundawat and Qureshi 1999, Raghavan and Bhatnagar 2003). In the impoverished habitat provided by the Trans-Himalayas, there is great competition for the scarce resources between various animal species surviving here (Fox 1996, Mishra 2001). The presence of livestock intensifies this competition and can either force the species out of its niche (competitive exclusion) by displacing it from that area or resource, or lead to partitioning of resources between the species, spatially or temporally, for coexistence (Begon et al. 1986, Gause 1934).
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Notes Project funded by International Snow Leopard Trust Small Grants Program. Wildlife Institute of India. Approved no
Call Number SLN @ rana @ 1075 Serial 802
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Author McCarthy, T.
Title Snow leopard conservation project, Mongolia: WWF Project Summary of Field Work Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages
Keywords (up) irbis-enterprises; Mongolia; gobi; Altai; Altay; habitat; status; distribution; Uvs; conservation; parks; preserves; refuge; protected-area; herders; livestock; predator; prey; field-work; field-study; field-studies; training; Slims; transects; sign; sprays; scrapes; markings; population; browse; irbis; enterprises; protected; area; field work; field; work; field study; study; 3870
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Notes Full Text at URL: Project No. MN0004.01, reporting period 1998-1999 Approved no
Call Number SLN @ rana @ 367 Serial 658
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Author Saltz, D.; Rowen, M.; Rubenstein, D.
Title The effect of space-use patterns of reintroduced Asiatic wild ass on effective population size Type Journal Article
Year 2000 Publication Conservation Biology Abbreviated Journal
Volume 14 Issue 6 Pages 1852-1861
Keywords (up) Israel; reintroduction; ungulates; conservation; population; territorial; 5260
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Notes Full text available at URL Approved no
Call Number SLN @ rana @ 511 Serial 840
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Author Zhiryakov V.A.
Title Ecology and behavior of the Snow leopard in Kazakhstan Type Miscellaneous
Year 2002 Publication Abbreviated Journal
Volume N 1-4. Issue Pages 184-199
Keywords (up) Kazakhstan; distribution; number; density; population size; habitats; marking; Migration; diet; prey species; hunting; faeces; Sex; Age; population dynamics; reproductive activity; competitors; mortality; snow leopard.; 8810; Russian
Abstract The data on spreading, numbers and population density of snow leopard in Kazakhstan are given in this article. The total number of the snow leopard in Kazakhstan is evaluated in 100-110 individuals. The everywhere occurred numbers' reduction under the influence of the anthropogenic factors is observed. The snow leopard' inhabitation area varies from 20 to 120 square kilometers depending on its regions. Sex and composition of the population and its aggregative behavior are given. The dynamics of numbers and mortality are estimated.
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Notes Full text available in Russian.Journal Title: Selevinia. The zoological journal of Kazakhstan. Approved no
Call Number SLN @ rana @ 858 Serial 1087
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Author Zhiryakov V.A.
Title The influence of the predators on population trend of the ungulates in the Almaty nature reserve Type Miscellaneous
Year 1989 Publication Abbreviated Journal
Volume Issue Pages 199-201
Keywords (up) Kazakhstan; predators; ungulates; dencity; population trend; snow leopard.; 8770; Russian
Abstract The data on predators and ungulates population dynamics in Almaty Nature reserve (Kazakhstan) in 1983-1987s are given. The number of snow leopard is stable (3-5 individuals), the density is 0.06 indi/1000 ha. An insignificant increase of Siberian ibex' number (660 to 700) with density of 36 indi/1000 ha is recorded.
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Notes Full text available in RussianJournal Title: All-Union Conference on cadastre and censusing of the animals. Approved no
Call Number SLN @ rana @ 854 Serial 1084
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Author Anonymous
Title Livestock Predation Control Workshop Type Miscellaneous
Year 1999 Publication Abbreviated Journal
Volume Issue Pages
Keywords (up) Lahul-Spiti; Ladakh; Hemis; parks; reserves; refuge; protected-area; argali; abix; blue-sheep; wolves; distribution; status; population; poaching; hunting; trade; skins; livestock; pelts; coat; fur; bones; medicine; prey-depletion; herders; habitat; habitat-degradation; tourism; Tmi; Islt; predator; prey; conflict; compensation; trekking; blue; sheep; browse; protected; area; depletion; degradation; international snow leopard trust; 3940
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Notes Full Text at URLDate of Meeting: Ladakh (1999 Oct 6- Oct 10 ) Approved no
Call Number SLN @ rana @ 359 Serial 86
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Author Matyushkin, E.N.
Title Tracks and tracking techniques in studies of large carnivorous mammals Type Journal Article
Year 2000 Publication Zoologichesky Zhurnal Abbreviated Journal
Volume 79 Issue (4) Pages 412-429
Keywords (up) Lynx; Scent-Marking; Organization; population; behavior; Felidae; Forest; Russia; tracking; pug marks; scent; marking; browse; 60; Russian
Abstract In Russia, traditions of track observations and the use of tracking techniques in studying the ecology and behavior of mammals were founded by A.N. Formozov. An analytic review of his data on large carnivorous mammals (tiger, snow leopard, wolf, brown bear, wolverine, and others) is given. A special detailed observation of animals' tracks as a source of information on their life is shown only to start. The efficiency of track observations in various fields of studies, including counting animals, is estimated. The values of day and night distances for various animal species, given in literature, have never been properly substantiated methodically. The tracking method is the most effective in studying the use of the home range by animals, drawing the network of their movements and scent-marking behavior. The hunting behavior of large predators in dense forests is can only be deduced by observing their tracks. In some cases, the use of tracking has a distinct advantage over radio tracking. The main propositions are illustrated by the materials of the author obtained in various Russian regions (in forests of the northern Russian Plain and southern Far east) for 1958-1998.
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Notes Document Type: Russian Approved no
Call Number SLN @ rana @ 391 Serial 652
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Author Ahmad, S., Rehman, E. U., Ali, H., Din, N., Haider, J., Din, J. U., Nawaz, M. A.
Title Density Pattern of Flare-Horned Markhor (Capra falconeri) in Northern Pakistan Type Journal Article
Year 2022 Publication Sustainability Abbreviated Journal
Volume 14 Issue 9567 Pages 1-13
Keywords (up) markhor; Capra falconeri; Gilgit-Baltistan; Karakoram; population; double-observer; CGNP
Abstract Wild ungulates play vital roles in maintaining a balanced ecosystem through herbivory and are also an important determinant of carnivores’ density. The flare-horned markhor (Capra falconeri) is a threatened wild goat distributed across the mountain ranges of Pakistan, India, Afghanistan, Russia, Turkmenistan, Uzbekistan, and Tajikistan. The remote terrain and fragmented population limit our understanding of the population ecology of markhor, though knowledge of the target species population is vital for making informed management decisions. Therefore, the current study was designed to determine the markhor population across their range in Northern Pakistan and to evaluate the efforts made by the government and non-government organizations for the conservation of markhor. Double-observer surveys were conducted during 2019–2021 in nine major watersheds of Khyber Pakhtunkhwa and Gilgit-Baltistan covering an area of 4664 km2. Secondary data were collected for unassessed areas to gain a holistic overview of the markhor population and density in the region. Results revealed a markhor population of 7579, with a density of 0.30 animals per km2 in Northern Pakistan. Our analysis of the double-observer data through the Bayesian behavioral capture–recapture model estimated a population of 5993 individuals (95% CI) of markhor across

nine study sites, with a density of 1.28 animals per km . A review of secondary data revealed that

a population of about 1586 was present in the un-surveyed area (20,033.33 km2), with a density

of 0.08 per km . A total of 146 groups of markhor were counted, with a mean group size of 23

(3–58) individuals. There were 109 males and 108 young per 100 females in the population. Among 1936 recorded males, Class I males accounted for 27.74%, followed by Class II (26.45%), Class IV (trophy-size) (23.40%), and Class III (22.42%). The overall detection probability was recorded as 0.87 and 0.68 for the first observer and second observer, respectively. Compared with the past reports, the population of markhor in Northern Pakistan appears to be increasing, particularly in protected areas (PAs) such as national parks and community-controlled hunting areas (CCHAs). Conservation programs, notably trophy hunting and PA networks, appear to be vital in sustaining markhor populations in parts of the species range. We recommend expansion in such programs in the markhor range in order to maintain a viable population of this majestic wild goat in the region.
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Call Number SLN @ rakhee @ Serial 1695
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Author Reading, R.P.; Amgalanbaatar, S.; Mix, H.; Lhagvasuren, B.
Title Argali Ovis ammon surveys in Mongolia's South Gobi Type Journal Article
Year 1997 Publication Oryx Abbreviated Journal
Volume 31 Issue 4 Pages 285-294
Keywords (up) Mongolia; argali; gobi; livestock; population; status; 5220
Abstract Claims poaching and competition with domestic livestock are threatening the argali's survival in Mongolia. The author's conducted aerial and ground surveys in the South Gobi and estimated a populaton size of approximately 3,900 argali.
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Notes Full text available at URL. Approved no
Call Number SLN @ rana @ 507 Serial 811
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Author Mongolian Biosphere & Ecology Association
Title Mongolian Biosphere & Ecology Association Report March 2010 Type Manuscript
Year 2010 Publication Abbreviated Journal
Volume Issue Pages
Keywords (up) nature; tourism; surveys; survey; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; attack; domestic; Animals; Animal; illegal; illegal hunting; hunting; territory; province; 2010; hunt; 1990; movements; movement; pasture; desert; number; species; birds; river; mountain; hunters; hunter; recent; government; structure; management; national; central; people; Report; gobi; Gobi Desert; reproduction; Adult; meat; food; ibex; wild; wild sheep; sheep; marmot; nutrition; schools; population; use; local; big; big game; big-game; game; 310; mountains; wolves; wolf; Seasons; times; zones; global; Mongolia; 40; history; ecology
Abstract In accordance with order of the Ministry of Nature and Tourism,

zoologists of our association have made surveys in three ways such as

reasons why snow leopards attack domestic animals, “Snow leopard” trial

operation to count them and illegal hunting in territories of Khovd,

Gobi-Altai, Bayankhongor, Uvurkhangai and Umnugobi provinces from

September 2009 to January 2010. As result of these surveys it has made

the following conclusions in the followings: Reason to hunt them illegally: the principal reason is that

administrative units have been increased and territories of

administrative units have been diminished. There have been four

provinces in 1924 to 1926, 18 since 1965, 21 since 1990. Such situation

limits movements of herdsmen completely and pastures digressed much than

ever before. As result of such situation, 70% of pastures become desert.

Such digression caused not only heads of animals and also number of

species. Guarantee is that birds such as owls, cuckoo, willow grouse in

banks of Uyert river, Burkhanbuudai mountain, located in Biger soum,

Gobi-Altai province, which are not hunted by hunters, are disappearing

in the recent two decades. For that reason we consider it is urgently

necessary for the government to convert administrative unit structures

into four provinces. This would influence herdsmen moving across

hundreds km and pastures could depart from digression.

Second reason: cooperative movement won. The issues related to management and strengthening of national

cooperatives, considered by Central Committee of Mongolian People's

Revolutionary Party in the meeting in March 1953 was the start of

cooperatives' movement. Consideration by Yu. Tsedenbal, chairman of

Ministers Council, chairman of the MPRP, on report “Result of to unify

popular units and some important issues to maintain entity management of

agricultural cooperatives” in the fourth meeting by the Central

Committee of Mongolian People's Revolutionary Party /MPRP/ on December

16-17, 1959, proclaimed complete victory of cooperative. At the end of

1959, it could unify 767 small cooperative into 389 ones, unify 99.3 %

of herdsmen and socialize 73.3 % of animals. The remaining of animals

amount 6 million 163 thousands animals, and equals to 26.7% of total

animals. This concerned number of animals related to the article

mentioned that every family should have not more that 50 animals in

Khangai zone and not more 75 animals in Gobi desert. It shows that such

number could not satisfy needs of family if such number is divided into

five main animals in separating with reproduction animals and adult

animals. So herdsmen started hunt hoofed animals secretly and illegally

in order to satisfy their meat needs. Those animals included main food

of snow leopard such as ibex, wild sheep, and marmot. Third reason is that the state used to hunt ibex, which are main

nutrition of snow leopards, every year. The administrative unit of the

soum pursued policy to hunt ibex in order to provide meat needs of

secondary schools and hospitals. That's why this affected decrease of

ibex population. Preciously from 1986 to 1990 the permissions to hunt

one thousands of wild sheep and two thousands of ibexes were hunt for

domestic alimentary use every year. Not less than 10 local hunters of every soum used to take part in big

game of ibexes. Also they hunted many ibexes, chose 3-10 best ibexes and

hid them in the mountains for their consummation during hunting.

Fourth reason: hunting of wolves. Until 1990 the state used to give

prizes to hunter, who killed a wolf in any seasons of the year. Firstly

it offered a sheep for the wolf hunter and later it gave 25 tugrugs /15

USD/. Every year, wolf hunting was organized several times especially

picking wolf-cubs influenced spread and population of wolves. So snow

leopard came to the places where wolves survived before and attack

domestic animals. Such situation continued until 1990. Now population of

ibexes has decreased than before 1990 since the state stopped hunting

wolves, population of wolves increased in mountainous zones. We didn't

consider it had been right since it was natural event. However

population of ibexes decreased. Fifth reason: Global warming. In recent five years it has had a drought

and natural disaster from excessive snow in the places where it has

never had such natural disasters before. But Mongolia has 40 million

heads of domestic animals it has never increased like such quantity in

its history before. We consider it is not incorrect that decrease of

domestic animals could give opportunities to raise population of wild

animals. Our next survey is to make attempt to fix heads of snow leopards

correctly with low costs.
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Notes Approved no
Call Number SLN @ rana @ 1100 Serial 705
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Author Jackson, R.; Ahlborn, G.
Title The role of protected areas in Nepal in maintaining viable populations of snow leopards Type Journal Article
Year 1990 Publication Int.Ped.Book of Snow Leopards Abbreviated Journal
Volume 6 Issue Pages 51-69
Keywords (up) Nepal; conservation; management; parks; park; reserve; refuge; protected-area; browse; protected area; protected; area; island-biology-theory; population-limits; habitat; suitability; 3040
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Notes Full text at URL Approved no
Call Number SLN @ rana @ 165 Serial 444
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Author Robinson, J. J., Crichlow, A. D., Hacker, C. E., Munkhtsog, B., Munkhtsog, B., Zhang, Y., Swanson, W. F., Lyons, L. A., Janecka, J. E.
Title Genetic Variation in the Pallas’s Cat (Otocolobus manul) in Zoo-Managed and Wild Populations Type Journal Article
Year 2024 Publication Diversity Abbreviated Journal
Volume 16 Issue 228 Pages 1-13
Keywords (up) Otocolobus manul; microsatellites; zoo-managed population; mitochondrial 12S ribosomal RNA; endothelial PAS domain protein 1
Abstract The Pallas’s cat (Otocolobus manul) is one of the most understudied taxa in the Felidae family. The species is currently assessed as being of “Least Concern” in the IUCN Red List, but this assessment is based on incomplete data. Additional ecological and genetic information is necessary for the long-term in situ and ex situ conservation of this species. We identified 29 microsatellite loci with sufficient diversity to enable studies into the individual identification, population structure, and phylogeography of Pallas’s cats. These microsatellites were genotyped on six wild Pallas’s cats from the Tibet Autonomous Region and Mongolia and ten cats from a United States zoo-managed population that originated in Russia and Mongolia. Additionally, we examined diversity in a 91 bp segment of the mitochondrial 12S ribosomal RNA (MT-RNR1) locus and a hypoxia-related gene, endothelial PAS domain protein 1 (EPAS1). Based on the microsatellite and MT-RNR1 loci, we established that the Pallas’s cat displays moderate genetic diversity. Intriguingly, we found that the Pallas’s cats had one unique nonsynonymous substitution in EPAS1 not present in snow leopards (Panthera uncia) or domestic cats (Felis catus). The analysis of the zoo-managed population indicated reduced genetic diversity compared to wild individuals. The genetic information from this study is a valuable resource for future research into and the conservation of the Pallas’s cat.
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Notes Approved no
Call Number SLN @ rakhee @ Serial 1749
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Author Sokov, A.I.
Title The present status of the snow leopard population in the south western Pamir-Altai Mountains (Tadzhikistan) Type Journal Article
Year 1990 Publication Int.Ped.Book of Snow Leopards Abbreviated Journal
Volume 6 Issue Pages 33-36
Keywords (up) Pamir; Altai; Tadzhikistan; status; distribution; Tajikistan; browse; Ussr; pelts; furs; hunting; trapping; population; 3230
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Notes Full text available at URL Approved no
Call Number SLN @ rana @ 167 Serial 915
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Author Karanth, K.U., Nichols, J.D., Seidensticker, J., Dinerstein, E., David Smith, J.L., McDougal, C., Johnsingh, A.J.T., Chundawat, R.S., Thapar, V.
Title Science deficiency in conservation practice: the monitoring of tiger populations in India Type Journal Article
Year 2003 Publication Animal Conservation Abbreviated Journal
Volume 6 Issue Pages 141-146
Keywords (up) population monitoring, sampling, tiger, pugmark, census, pugmark census
Abstract Conservation practices are supposed to get refined by advancing scientific knowledge. We study this phenomenon in the context of monitoring tiger populations in India, by evaluating the ‘pugmark census method’ employed by wildlife managers for three decades. We use an analytical framework of modern animal population sampling to test the efficacy of the pugmark censuses using scientific data on tigers and our field observations. We identify three critical goals for monitoring tiger populations, in order of increasing sophistication: (1) distribution mapping, (2) tracking relative abundance, (3) estimation of absolute abundance. We demonstrate that the present census-based paradigm does not work because it ignores the first two simpler goals, and targets, but fails to achieve, the most difficult third goal. We point out the utility and ready availability of alternative monitoring paradigms that deal with the central problems of spatial sampling and observability. We propose an alternative sampling-based approach that can be tailored to meet practical needs of tiger monitoring at different levels of refinement.
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Publisher The Zoological Society of London Place of Publication United Kingdom Editor
Language English Summary Language Original Title
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Notes Approved no
Call Number SLN @ rana @ Serial 1307
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Author Aruge, S., Batool, H., Khan, F. M., Abbas, F. I., Janjua, S
Title A pilot study�genetic diversity and population structure of snow leopards of Gilgit-Baltistan, Pakistan, using molecular techniques. Type Journal Article
Year 2019 Publication PeerJ Abbreviated Journal
Volume Issue 7672 Pages 1-14
Keywords (up) Population, Genetics, Panthera uncia, Pakistan, Molecular markers
Abstract Background: The Hindu Kush and Karakoram mountain ranges in Pakistan�s northern areas are a natural habitat of the snow leopard (Panthera uncia syn. Uncia uncia) but the ecological studies on this animal are scarce since it is human shy by nature and lives in dif!cult mountainous tracts. The pilot study is conducted to exploit the genetic diversity and population structure of the snow leopard in this selected natural habitat of the member of the wildcat family in Pakistan.

Method: About 50 putative scat samples of snow leopard from !ve localities of Gilgit-Baltistan (Pakistan) along with a control sample of zoo maintained male snow leopard were collected for comparison. Signi!cant quality and quantity of genomic DNA was extracted from scat samples using combined Zhang�phenol�chloroform method and successful ampli!cation of cytochrome c oxidase I gene (190 bp) using mini-barcode primers, seven simple sequence repeats (SSR) markers and Y-linked AMELY gene (200 bp) was done.

Results: Cytochrome c oxidase I gene sequencing suggested that 33/50 (66%) scat samples were of snow leopard. AMELY primer suggested that out of 33 ampli!ed samples, 21 (63.63%) scats were from male and 12 (36.36%) from female leopards. Through successful ampli!cation of DNA of 25 out of 33 (75.75%) scat samples using SSR markers, a total of 68 alleles on seven SSR loci were identi!ed, showing low heterozygosity, while high gene "ow between population.

Discussion: The low gene flow rate among the population results in low genetic diversity causing decreased diversi!cation. This affects the adaptability to climatic changes, thus ultimately resulting in decreased population size of the species.
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Call Number SLN @ rakhee @ Serial 1491
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Author Subbotin, A.E.; Istomov, S.V.
Title The population status of snow leopards Uncia uncia (Felidae, Carnivora) in the western Sayan Mountain Ridge Type Journal Article
Year 2009 Publication Doklady Biologicl Sciences Abbreviated Journal
Volume 425 Issue Pages 183-186
Keywords (up) population; status; snow; snow leopards; snow leopard; snow-leopards; snow-leopard; leopards; leopard; uncia; Uncia uncia; Uncia-uncia; Felidae; Carnivora; Sayan; mountain; Russian; Test; species; cat; Russia; area; range; Data; study; activity; activities; behavior; habitats; habitat; humans; Human; number; description; Animal; structure
Abstract The snow leopard (Uncia uncial Schreber, 1776) is the most poorly studied species of the cat family in the world and, in particular, in Russia, where the northern periphery of the species area (no more than 3% of it) is located in the Altai-Hangai-Sayan range [1]. It is generally known that the existing data on the Russian part of the snow leopard population have never been a result of targeted studies; at best, they have been based on recording the traces of the snow leopard vital activity [2]. This is explained by the snow leopard's elusive behavior, inaccessibility of its habitats for humans, and its naturally small total numbers in the entire species area. All published data on the population status of the snow leopard in Russia, from the first descriptions of the species [3-6] to the latest studies [7, 8] are subjective, often speculative, and are not confirmed by

quantitative estimates. It is obvious, however, that every accurate observation of this animal is of particular interest [9]. The purpose of our study was to determine the structure and size of the population group presumably inhabiting the Western Sayan mountain ridge at the northern boundary of the species area
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Publisher Pleiades Publishing, Ltd. Place of Publication Editor
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ISSN 0012-4966 ISBN Medium
Area Expedition Conference
Notes Original Russian test published in Doklady Akademii Nauk, Vol. 425, No.6, pp.846-849. Approved no
Call Number SLN @ rana @ 1005 Serial 941
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Author Ferretti, F., Lovari, S., Minder, I., Pellizzi, B.
Title Recovery of the snow leopard in Sagarmatha (Mt.Everest) National Park: effects on main prey Type Journal Article
Year 2014 Publication European Journal of Wildlife Research Abbreviated Journal
Volume Issue 60 Pages 559-562
Keywords (up) Predator–prey relationships . Small populations . Snow leopard . Himalayan tahr
Abstract Consequences of predation may be particularly

heavy on small populations of herbivores, especially if they

are threatened with extinction. Over the 2006–2010 period, we

documented the effects of the spontaneous return of the endangered

snow leopard on the population of the vulnerable

Himalayan tahr. The study area was an area of central

Himalaya where this cat disappeared c. 40 years before, because

of persecution by man. Snow leopards occurred mainly

in areas close to the core area of tahr distribution. Tahr was the

staple (56.3 %) of snow leopards. After the arrival of this cat,

tahr decreased by more than 2/3 from 2003 to 2010 (mainly

through predation on kids). Subsequently, the density of snow

leopards decreased by 60%from2007 to 2010. The main prey

of snow leopards in Asia (bharal, marmots) were absent in our

study area, forcing snow leopards to specialize on tahr. The

restoration of a complete prey spectrum should be favoured

through reintroductions, to conserve large carnivores and to

reduce exploitation of small populations of herbivores, especially

if threatened.
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Notes Approved no
Call Number SLN @ rakhee @ Serial 1408
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Author Shrestha, B.
Title Prey Abundance and Prey Selection by Snow Leopard (uncia uncia) in the Sagarmatha (Mt. Everest) National Park, Nepal Type Report
Year 2008 Publication Abbreviated Journal
Volume Issue Pages 1-35
Keywords (up) project; snow; snow leopard; snow-leopard; leopard; network; conservation; program; prey; abundance; selection; uncia; Uncia uncia; Uncia-uncia; Sagarmatha; national; national park; National-park; park; Nepal; resource; predators; predator; ecological; impact; region; community; structure; number; research; population; status; density; densities; wild; prey species; prey-species; species; Himalayan; tahr; musk; musk-deer; deer; game; birds; diet; livestock; livestock depredation; livestock-depredation; depredation; awareness; co-existence; ungulates; ungulate; Human; using; areas; area; monitoring; transect; Hair; identification; scat; attack; patterns; sighting; 1760; populations; birth; Male; Female; young; domestic; domestic livestock; 120; scats; yak; Dog; pika; wildlife; Seasons; winter; horse; study; cover; land; predation; Pressure; development; strategy; threatened; threatened species; threatened-species; conflicts; conflict; people; control; husbandry; compensation; reintroduction; blue; blue sheep; blue-sheep; sheep; free ranging
Abstract Predators have significant ecological impacts on the region's prey-predator dynamic and community structure through their numbers and prey selection. During April-December 2007, I conducted a research in Sagarmatha (Mt. Everest) National Park (SNP) to: i) explore population status and density of wild prey species; Himalayan tahr, musk deer and game birds, ii) investigate diet of the snow leopard and to estimate prey selection by snow leopard, iii) identify the pattern of livestock depredation by snow leopard, its mitigation, and raise awareness through outreach program, and identify the challenge and opportunities on conservation snow leopard and its co-existence with wild ungulates and the human using the areas of the SNP. Methodology of my research included vantage points and regular monitoring from trails for Himalayan tahr, fixed line transect with belt drive method for musk deer and game birds, and microscopic hair identification in snow leopard's scat to investigate diet of snow leopard and to estimate prey selection. Based on available evidence and witness accounts of snow leopard attack on livestock, the patterns of livestock depredation were assessed. I obtained 201 sighting of Himalayan tahr (1760 individuals) and estimated 293 populations in post-parturient period (April-June), 394 in birth period (July -October) and 195 November- December) in rutting period. In average, ratio of male to females was ranged from 0.34 to 0.79 and ratio of kid to female was 0.21-0.35, and yearling to kid was 0.21- 0.47. The encounter rate for musk deer was 1.06 and density was 17.28/km2. For Himalayan monal, the encounter rate was 2.14 and density was 35.66/km2. I obtained 12 sighting of snow cock comprising 69 individual in Gokyo. The ratio of male to female was 1.18 and young to female was 2.18. Twelve species (8 species of wild and 4 species of domestic livestock) were identified in the 120 snow leopard scats examined. In average, snow leopard predated most frequently on Himalayan tahr and it was detected in 26.5% relative frequency of occurrence while occurred in 36.66% of all scats, then it was followed by musk deer (19.87%), yak (12.65%), cow (12.04%), dog (10.24%), unidentified mammal (3.61%), woolly hare (3.01%), rat sp. (2.4%), unidentified bird sp. (1.8%), pika (1.2%), and shrew (0.6%) (Table 5.8 ). Wild species were present in 58.99% of scats whereas domestic livestock with dog were present in 40.95% of scats. Snow leopard predated most frequently on wildlife species in three seasons; spring (61.62%), autumn (61.11%) and winter (65.51%), and most frequently on domestic species including dog in summer season (54.54%). In term of relative biomass consumed, in average, Himalayan tahr was the most important prey species contributed 26.27% of the biomass consumed. This was followed by yak (22.13%), cow (21.06%), musk deer (11.32%), horse (10.53%), wooly hare (1.09%), rat (0.29%), pika (0.14%) and shrew (0.07%). In average, domestic livestock including dog were contributed more biomass in the diet of snow leopard comprising 60.8% of the biomass consumed whilst the wild life species comprising 39.19%. The annual prey consumption by a snow leopard (based on 2 kg/day) was estimated to be three Himalayan tahr, seven musk deer, five wooly hare, four rat sp., two pika, one shrew and four livestock. In the present study, the highest frequency of attack was found during April to June and lowest to July to November. The day of rainy and cloudy was the more vulnerable to livestock depredation. Snow leopard attacks occurred were the highest at near escape cover such as shrub land and cliff. Both predation pressure on tahr and that on livestock suggest that the development of effective conservation strategies for two threatened species (predator and prey) depends on resolving conflicts between people and predators. Recently, direct control of free – ranging livestock, good husbandry and compensation to shepherds may reduce snow leopard – human conflict. In long term solution, the reintroduction of blue sheep at the higher altitudes could also “buffer” predation on livestock.
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Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program. Forum of Natural Resource Managers, Nepal. Approved no
Call Number SLN @ rana @ 1076 Serial 887
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Author Suryawanshi, K.R.
Title Towards snow leopard prey recovery: understanding the resource use strategies and demographic responses of bharal Pseudois nayaur to livestock grazing and removal; Final project report Type Report
Year 2009 Publication Abbreviated Journal
Volume Issue Pages 1-43
Keywords (up) project; snow; snow leopard; snow-leopard; leopard; network; conservation; program; prey; recovery; resource; use; strategy; demographic; Response; bharal; Pseudois; pseudois nayaur; Pseudois-nayaur; nayaur; livestock; grazing; Report; decline; wild; populations; population; Himalayan; region; Competition; threats; threat; uncia; Uncia uncia; Uncia-uncia; study; diet; winter; Test; browse; nutrition; areas; area; young; Female; times; High; Adult; mortality; species; predators; predator; endangered; trans-himalaya; transhimalaya
Abstract Decline of wild prey populations in the Himalayan region, largely due to competition with livestock, has been identified as one of the main threats to the snow leopard Uncia uncia. Studies show that bharal Pseudois nayaur diet is dominated by graminoids during summer, but the proportion of graminoids declines in winter. We explore the causes for the decline of graminoids from bharal winter diet and resulting implications for bharal conservation. We test the predictions generated by two alternative hypotheses, (H1) low graminoid availability caused by livestock grazing during winter causes bharal to include browse in their diet, and, (H2) bharal include browse, with relatively higher nutrition, to compensate for the poor quality of graminoids during winter. Graminoid availability was highest in areas without livestock grazing, followed by areas with moderate and intense livestock grazing. Graminoid quality in winter was relatively lower than that of browse, but the difference was not statistically significant. Bharal diet was dominated by graminoids in areas with highest graminoid availability. Graminoid contribution to bharal diet declined monotonically with a decline in graminoid availability. Bharal young to female ratio was three times higher in areas with high graminoid availability than areas with low graminoid availability. No starvation-related adult mortalities were observed in any of the areas. Composition of bharal winter diet was governed predominantly by the availability of graminoids in the rangelands. Since livestock grazing reduces graminoid availability, creation of livestock free areas is necessary for conservation of grazing species such as the bharal and its predators such as the endangered snow leopard in the Trans-Himalaya.
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Notes Project funded by Snow Leopard Network's Snow Leopard Conservation Grant Program, 2008. Nature Conservation Foundation, Mysore. Post-graduate Program in Wildlife Biology and Conservation, National Centre for Biological Sciences, Wildlife Conservation Society -India program, Bangalore, India. Approved no
Call Number SLN @ rana @ 1077 Serial 952
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Author Aryal, A.
Title Final Report On Demography and Causes of Mortality of Blue Sheep (Pseudois nayaur) in Dhorpatan Hunting Reserve in Nepal Type Report
Year 2009 Publication Abbreviated Journal
Volume Issue Pages 1-53
Keywords (up) 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
Abstract 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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Notes The Biodiversity Research and Training Forum (BRTF) Nepal. Email: savefauna@yahoo.com Submitted to Snow Leopard Conservation Grants Program, USA. Approved no
Call Number SLN @ rana @ 1064 Serial 104
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Author International Snow Leopard Trust
Title Snow Leopard News Spring 2000 Type Miscellaneous
Year 2000 Publication Snow Leopard News Abbreviated Journal
Volume Issue Pages
Keywords (up) Rutherford; Freeman; Morse; Jackson; Hillard; Natural-Partnerships-Program; Pakistan; Islt; Slims; training; Chitrol-Gol; parks; preserves; reserves; protected-areas; surveys; Hemis; Conflict-Resolution-Workshop; conflict; herders; leh; Jammu; Kashmir; Ladakh; corrals; predator; prey; livestock; depradation; human-wildlife-conflict; Uzbekistan; Gissar; Peace-Corps; Mongolia; Macne; fiction; populations; browse; 4390
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Publisher Islt Place of Publication Seattle, Wa Editor
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Notes Full Text at URLTable of Contents1.Transitions at the Trust2.Message From ISLT Founder Helen Freeman and President Charles Morse3.Jakson and Hillard to Leave ISLT for New Pursuits4. News and Notes5. ISLT's Natural Partnerships Program6.Thoughts from a Snow Leopard7. Snow Leopards, Local People,and Livestock losses: Solutions through Paticipation8.U.S. Peace Corps and ISLT Team Up in Mongolia Approved no
Call Number SLN @ rana @ 427 Serial 930
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Author Smirnov, M.N.; Sokolov, G.A.; Zyryanov, A.N.
Title The Snow Leopard (Uncia Uncia Scherber 1776) in Siberia Type Journal Article
Year 1990 Publication Int.Nat.Ped.Book of Snow Leopards Abbreviated Journal
Volume 6 Issue Pages 9-15
Keywords (up) siberia; status; distribution; Russia; Ussr; Soviet-Union; browse; soviet union; soviet; union; Altai; Sayan; population; tracks; tracking; petroglyphs; skins; pelts; prey; 2880
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Notes Full text available at URL Approved no
Call Number SLN @ rana @ 77 Serial 901
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Author Jackson, R.; Fox, J.L.
Title Report on Fifth Slims Training Workshop (Nepal) Type Miscellaneous
Year 2000 Publication Snow Line Abbreviated Journal
Volume xvii Issue Pages 6-15
Keywords (up) Slims; Nepal; training; techniques; Gps; field-work; surveys; Tibet; habitat; China; hunting; poaching; livestock; population; Shey-Phoksundo; parks; protected-area; reserves; annapurna; Dhorpatan; Manaslu; Sagarmatha; Langtang; Islt; Wwf; Hmg; Dnpwc; browse; 4460
Abstract Nepal's snow leopards (Uncia uncia) are mostly found along the northern border with Tibet (China). The largest populations are in Dolpa, Mugu, Manang, and Myagdi Districts. Potential habitat totals about 30,000 square kilometers. Numbers are estimated at 300-500, but surveys are urgently needed to confirm this rough guess. Like elsewhere, the primary threats center on poaching, depletion of natural prey, livestock depredation and resultant retributive killing of snow leopards by herders, and the lack of public awareness and support for conserving snow leoaprds, especially among local herders.
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Publisher International Snow Leopard Trust Place of Publication Seattle Editor
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Notes Approved no
Call Number SLN @ rana @ 434 Serial 466
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Author McCarthy, T.; Murray, K.; Sharma, K.; Johansson, O.
Title Preliminary results of a long-term study of snow leopards in South Gobi, Mongolia Type Journal Article
Year 2010 Publication Cat News Abbreviated Journal
Volume Autumn Issue 53 Pages 15-19
Keywords (up) snow leopard, Mongolia, monitor, population, Panthera, Snow Leopard Trust, Snow Leopard Conservation Fund, South Gobi, ecology, radio collar, GPS-satellite collar, home range, camera trapping, fecal genetics, occupancy modeling
Abstract Snow leopards Panthera uncia are under threat across their range and require urgent conservation actions based on sound science. However, their remote habitat and cryptic nature make them inherently difficult to study and past attempts have provided insufficient information upon which to base effective conservation. Further, there has been no statistically-reliable and cost-effective method available to monitor snow leopard populations, focus conservation effort on key populations, or assess conservation impacts. To address these multiple information needs, Panthera, Snow Leopard Trust, and Snow Leopard Conservation Fund, launched an ambitious long-term study in Mongolia’s South Gobi province in 2008. To date, 10 snow leo-pards have been fitted with GPS-satellite collars to provide information on basic snow leopard ecology. Using 2,443 locations we calculated MCP home ranges of 150 – 938 km2, with substantial overlap between individuals. Exploratory movements outside typical snow leopard habitat have been observed. Trials of camera trapping, fecal genetics, and occupancy modeling, have been completed. Each method ex-hibits promise, and limitations, as potential monitoring tools for this elusive species.
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Language English Summary Language Original Title
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Notes Approved no
Call Number SLN @ rana @ Serial 1151
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