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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 | 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 | Polking, V.F. | ||||
Title | Schneelleopard | Type | Journal Article | ||
Year | 1996 | Publication | Das Tier | Abbreviated Journal | |
Volume | Issue | Pages | 8-15 | ||
Keywords | german; McCarthy; Mongolia; snow leopard | ||||
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Notes | Document Type: German; color magazine | Approved | no | ||
Call Number | SLN @ rana @ 297 | Serial | 783 | ||
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Author | Pohl, J. | ||||
Title | Tracking the Big Cat | Type | Newspaper Article | ||
Year | 1996 | Publication | Juneau Empire (AK) | Abbreviated Journal | |
Volume | Issue | Pages | 5 | ||
Keywords | poaching; hunting; medicine; habitat; parks; reserve; refuge; pelt; fur; coat; McCarthy; Tom; Mongolia; bones; bone; browse; 1140 | ||||
Abstract | Juneau biologist Tom McCarthy will make one last trip to Mongolla to finish researching snow leopards – which are poached for their pelts and killed for the medicinal value of their bones – so he can recommend ways to preserve the elusive animals and their habitat | ||||
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Publisher | Place of Publication | Juneau, AK | Editor | ||
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Notes | Approved | no | |||
Call Number | SLN @ rana @ 294 | Serial | 777 | ||
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Author | OGara, B.W. | ||||
Title | Snow Leopards and Sport Hunting in The Mongolian Peoples Republic | Type | Conference Article | ||
Year | 1988 | Publication | Abbreviated Journal | ||
Volume | Issue | Pages | 215-225 | ||
Keywords | Mongolia; gobi; Altai; ibex; argali; hunting; conservation; predator; prey; livestock; herder; herders; browse; 1790 | ||||
Abstract | Logging, overgrazing, cultivating steep slopes and overhunting are endangering wildlife, especially big game, in many areas I am familiar with in China Nepal and Pakistan. Attempted solutions have included the formation of parks and closing hunting seasons. But, without hunting seasons in poor countries, little money is available to enforce gamelaws except in the parks. | ||||
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Publisher | International Snow Leopared Trust | Place of Publication | India | Editor | H.Freeman |
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Notes | Full Text at URLTitle, Monographic: Fifth International Snow Leopard SymposiumPlace of Meeting: Srinagar, IndiaDate of Copyright: 1988 | Approved | no | ||
Call Number | SLN @ rana @ 123 | Serial | 736 | ||
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Author | Jackson. R | ||||
Title | Fostering Community-Based Stewardship of Wildlife in Central Asia: Transforming Snow Leopards from Pests into Valued Assets | Type | Book Chapter | ||
Year | 2012 | Publication | Springer Science and Business Media | Abbreviated Journal | |
Volume | Issue | Pages | 357-380 | ||
Keywords | Gurvan Saikhan National Park,Annapurna National Park,Nepal,Pakistan,India,Mongolia,China,Tibet,Mining,Poaching,PRA,Holistic,Community engagement,Fuel,Habitat fragmentation | ||||
Abstract | Book Title: Rangeland Stewardship in Central Asia: Balancing Improved Livelihoods, Biodiversity Conservation and Land Protection, 2012. Edited by Victor Squires. Published Springer Science+Business Media. 458 p. 91 illus., 61 in color. Addressing human–wildlife conflict is an important requisite to managing rangelands for livestock and wildlife. Despite high altitudes, aridity, and relatively low primary productivity, the rangelands of Central Asia support a rich and diverse biodiversity—including the endangered snow leopard that many herders perceive as a predator to be eliminated. Conserving this and other wildlife species requires carefully crafted interventions aimed at curbing depredation losses and/or reducing competition for forage, along with offering locally sustainable, environmentally friendly income-generating activities for supplementing pastoral household livelihoods. This is best achieved through a combination of incentives designed to foster sound rangeland and wildlife stewardship, along penalties or disincentives targeting herders who violate mutually agreed rules and regulations (including grazing norms and wildlife disturbance or poaching). When working toward the harmonious coexistence of people and wildlife, conservationists and rangeland practitioners need to seek the cooperation and build goodwill among herders and other stakeholders, including local government and private industry (especially the livestock production, mining, and tourism sectors). |
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1393 | ||
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Author | Johansson, O., Alexander, J. S., Lkhagvajav, P., Mishra, C., Samelius, G. | ||||
Title | Natal dispersal and exploratory forays through atypical habitat in the mountain-bound snow leopard | Type | Journal Article | ||
Year | 2024 | Publication | Ecology | Abbreviated Journal | |
Volume | 2024 | Issue | e4264 | Pages | 1-4 |
Keywords | connectivity, Gobi Desert, landscape permeability, Mongolia, Panthera uncia, resistance, steppe | ||||
Abstract | Understanding how landscapes affect animal movements is key to effective conservation and management (Rudnick et al., 2012; Zeller et al., 2012). Movement defines animal home ranges, where animals generally access resources such as food and mates, and also their dispersal and exploratory forays. These movements are important for individual survival and fitness through genetic exchange within and between populations and for colonization of unoccupied habitats (Baguette et al., 2013; MacArthur & Wilson, 1967). Dispersal and exploratory movements typically occur when young animals leave their natal range and establish more permanent home ranges (Greenwood, 1980; Howard, 1960). In mammals, natal dispersal of males is usually more frequent and happens over greater distances compared with that of females (Clobert et al., 2001; Greenwood, 1980). | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1742 | ||
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Author | Esson, C., Samelius, G., Strand, T. M., Lundkvist, A., Michaux, J. R., Rasback, T., Wahab, T., Mijiddorj, T. N., Berger, L., Skerratt, L. F., Low, M. | ||||
Title | The prevalence of rodent-borne zoonotic pathogens in the South Gobi desert region of Mongolia | Type | Journal Article | ||
Year | 2023 | Publication | Infection Ecology & Epidemiology | Abbreviated Journal | |
Volume | 13 | Issue | 2270258 | Pages | 1-10 |
Keywords | Rodent; zoonoses; leptospira; hantavirus; haematology; Mongolia | ||||
Abstract | The alpine ecosystems and communities of central Asia are currently undergoing large-scale ecological and socio-ecological changes likely to affect wildlife-livestock-human disease interactions and zoonosis transmission risk. However, relatively little is known about the prevalence of pathogens in this region. Between 2012 and 2015 we screened 142 rodents in Mongolia’s Gobi desert for exposure to important zoonotic and livestock pathogens. Rodent seroprevalence to Leptospira spp. was>1/3 of tested animals, Toxoplasma gondii and Coxiella burnetii approximately 1/8 animals, and the hantaviruses being between 1/20 (Puumala-like hantavirus) and<1/100 (Seoul-like hantavirus). Gerbils trapped inside local dwellings were one of the species seropositive to Puumala-like hantavirus, suggesting a potential zoonotic transmission pathway. Seventeen genera of zoonotic bacteria were also detected in the faeces and ticks collected from these rodents, with one tick testing positive to Yersinia. Our study helps provide baseline patterns of disease prevalence needed to infer potential transmission between source and target populations in this region, and to help shift the focus of epidemiological research towards understanding disease transmission among species and proactive disease mitigation strategies within a broader One Health framework. | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1734 | ||
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Author | Allen, M. L., Rovero, F., Oberosler, V., Augugliaro, C., Krofel, M. | ||||
Title | Effects of snow leopards (Panthera uncia) on olfactory communication of Pallas’s cats (Otocolobus manul) in the Altai Mountains, Mongolia | Type | Journal Article | ||
Year | 2023 | Publication | Behaviour | Abbreviated Journal | |
Volume | Issue | Pages | 1-9 | ||
Keywords | behaviour, camera trap, Mongolia, Otocolobus manul, Panthera uncia, scent marking. | ||||
Abstract | Olfactory communication is important for many solitary carnivores to delineate territories and communicate with potential mates and competitors. Pallas’s cats (Otocolobus manul) are small felids with little published research on their ecology and behaviour, including if they avoid or change behaviours due to dominant carnivores. We studied their olfactory communication and visitation at scent-marking sites using camera traps in two study areas in Mongolia. We documented four types of olfactory communication behaviours, and olfaction (sniffing) was the most frequent. Pallas’s cats used olfactory communication most frequently at sites that were not visited by snow leopards (Panthera uncia) and when they used communal scent-marking sites, they were more likely to use olfactory communication when a longer time had elapsed since the last visit by a snow leopard. This suggests that Pallas’s cats may reduce advertising their presence in response to occurrence of snow leopards, possibly to limit predation risk. | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1721 | ||
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Author | Franchini, M., Atzeni, L., Lovari, S., Nasanbat, B., Ravchig, S., Herrador, F. C., Bombieri, G., Augugliaro, C. | ||||
Title | Spatio-temporal behaviour of predators and prey in an arid environment of Central Asia | Type | Journal Article | ||
Year | 2022 | Publication | Current Zoology | Abbreviated Journal | |
Volume | Issue | zoac093 | Pages | ||
Keywords | avoidance, facilitation, Mongolia, Panthera uncia, ungulates, Vulpes vulpes. | ||||
Abstract | The mechanisms of interactions between apex and smaller carnivores may range from competition to facilitation. Conversely, interactions between predators and prey are mainly driven by the prey reducing the likelihood of encounters with predators. In this study, we investigated (i) the spatio-temporal interactions between an apex (the snow leopard) and a meso-predator (the red fox), and (ii) the temporal interactions between the snow leopard and its potential prey (Siberian ibex, argali, Asian wild ass, Tolai hare) through camera-trapping in the Mongolian Great Gobi-A. The probability of occurrence for the red fox was higher in presence of the snow leopard than in its absence. Moreover, the red fox activity pattern matched that of the snow leopard, with both species mostly active at sunset. This positive spatio-temporal interaction suggests that the presence of the snow leopard may be beneficial for the red fox in terms of scavenging opportunities. However, other explanations may also be possible. Amongst prey, the Siberian ibex and the argali were mainly active during the day, whereas the Asian wild ass and the Tolai hare were more nocturnal. These findings suggest that potential prey (especially the Siberian ibex and the argali) may shape their behaviour to decrease the opportunity of encounters with the snow leopard. Our results have revealed complex interactions between apex and smaller predators and between apex predator and its potential prey. | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1706 | ||
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Author | Oberosler, V., Tenan, S., Groff, C., Krofel, M., Augugliaro, C., Munkhtsog, B., Rovero, F. | ||||
Title | First spatially‐explicit density estimate for a snow leopard population in the Altai Mountains | Type | Journal Article | ||
Year | 2021 | Publication | Biodiversity and Conservation | Abbreviated Journal | |
Volume | Issue | Pages | 15 | ||
Keywords | Camera trapping · Conservation · Abundance · Felids · Activity range · Mongolia · Panthera uncia · Spatial capture-recapture | ||||
Abstract | The snow leopard Panthera uncia is an elusive and globally-threatened apex predator occurring in the mountain ranges of central Asia. As with other large carnivores, gaps in data on its distribution and abundance still persist. Moreover, available density estimates are often based on inadequate sampling designs or analytical approaches. Here, we used camera trapping across a vast mountainous area (area of the sampling frame 850 km2; analysed habitat extent 2600 km2) and spatially-explicit capture-recapture (SECR) models to provide, to our knowledge, the first robust snow leopard population density estimate for the Altai Mountains. This region is considered one of the most important conservation areas for snow leopards, representing a vast portion of suitable habitat and a key ecological corridor. We also provide estimates of the scale parameter (σ) that reflects ranging behaviour (activity range) and baseline encounter probability, and investigated potential drivers of density and related parameters by assessing their associations with anthropogenic and environmental factors. Sampling yielded 9729 images of snow leopards corresponding to 224 independent detections that belonged to a minimum of 23 identified adult individuals. SECR analysis resulted in an overall density of 1.31 individuals/100 km2 (1.15%–1.50 95% CI), which was positively correlated with terrain slope. This estimate falls within the mid-values of the range of density estimates for the species globally. We estimated significantly different activity range size for females and males (79 and 329 km2, respectively). Base- line encounter probability was negatively associated with anthropogenic activity. Our study contributes to on-going efforts to produce robust global estimates of population abundance for this top carnivore. | ||||
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Notes | Approved | no | |||
Call Number | SLN @ rakhee @ | Serial | 1662 | ||
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