Protrusive influence of climate change on the ecological niche of endemic brown mongoose (Herpestes fuscus fuscus): a MaxEnt approach from Western Ghats, India

被引:0
作者
Sreehari Raman
Thekke Thumbath Shameer
Raveendranathanpillai Sanil
Pooja Usha
Sanjayan Kumar
机构
[1] Chinese Academy of Sciences,Center for Integrative Conservation, Xishuangbanna Tropical Botanical Garden
[2] University of Chinese Academy of Sciences,Department of Wildlife Sciences, College of Forestry
[3] Kerala Agricultural University,Molecular Biodiversity Lab, Department of Zoology and Wildlife Biology
[4] Government Arts College,College of Veterinary and Animal Sciences
[5] Udhagamandalam,Kerala Forest and Wildlife Department
[6] Kerala Veterinary and Animal Sciences University,undefined
[7] Forest Headquarters Vazhuthacaud,undefined
来源
Modeling Earth Systems and Environment | 2020年 / 6卷
关键词
Western Ghats; Climate change; Ecological niche modeling; Brown mongoose;
D O I
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学科分类号
摘要
Climate change and its effects on natural surroundings primarily affect the small mammals, especially the habitat specialists. Herpestes fuscus fuscus is an endemic small mammal confined to the high altitudes of Western Ghats (WG). Global warming and the latent increase in temperature with unprecedented variations in the climate have a potential hazard for the endurance of these subtle species. We selected H.f. fuscus as a model species for niche modeling to predict the impact of climate change on the distribution pattern using MaxEnt. We assessed the appropriation in present and future climatic situations to comprehend the niche loss. The best fit model was decided based on the AUC (0.991) and TSS (0.949) which indicates the robustness in our model. Our outcomes recommend an anticipated decrease in the extremity of the high potential territory of 20%, 18%, and 55% in RCP 4.5, 6.0, and 8.5 respectively. The influencing component of the H.f. fuscus niche was the isothermality, precipitation of the coldest quarter, and the elevation. The model likewise predicted the impact may be high towards the northern side, the Nilgiri hill complex, than the southern region, the Anamalai, Periyar and Agasthyamalai complex. Convenient preservation measures are required to minimize the effect of climate change in the high altitude mammalian network. Our results inform managers to make a fitting move by looking at the appropriate example of this species to climatic change. We look for a prompt and  broad consideration towards the conservation of the territories of this lesser-known subtle species and their future protection. 
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页码:1795 / 1806
页数:11
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共 177 条
  • [1] Aiello-Lammens ME(2015)spThin: An R package for spatial thinning of species occurrence records for use in ecological niche models Ecography 38 541-545
  • [2] Boria RA(2006)Assessing the accuracy of species distribution models: prevalence, kappa and the true skill statistic (TSS) J Appl Ecol 43 1223-1232
  • [3] Radosavljevic A(2018)Observations on the Nilgiri Marten J Threat Taxa 10 11226-11230
  • [4] Allouche O(2007) (Mammalia: Carnivora: Mustelidae) from Pampadum Shola National Park, southern Western Ghats, India Ecol Model 200 1-19
  • [5] Tsoar A(2019)Species distribution models and ecological theory: A critical assessment and some possible new approaches Reg Environ Change 19 2423-2435
  • [6] Kadmon R(2018)Insights from present distribution of an alpine mammal Royle’s pika ( Ecol Entomol 43 192-203
  • [7] Anil G(2007)) to predict future climate change impacts in the Himalaya Holocene 17 195-205
  • [8] Kishor N(2000)Nature protection areas of Europe are insufficient to preserve the threatened beetle Nature 404 990-992
  • [9] Naseef G(2019) (Coleoptera: Cerambycidae): evidence from species distribution models and conservation gap analysis Peer J 7 e6281-270
  • [10] Ommer N(2008)Spatial heterogeneity of land cover response to climatic change in the Nilgiri highlands (southern India) since the last glacial maximum Evol Appl 1 252-31