Spatial risk patches of the Indian crested porcupine crop damage in southeastern Iran


  • Woodroffe, R., Thirgood, S. spsampsps Rabinowitz, A. The impact of human–wildlife conflict on natural systems. People Wildl. 1–12. https://doi.org/10.1017/CBO9780511614774.002 (2005).

  • Mpakairi, K., Ndaimani, H., Vingi, K., Madiri, T. H. & Nekatambe, T. Ensemble modelling predicts human carnivore conflict for a community adjacent to a protected area in Zimbabwe. Afr. J. Ecol. 56, 957–963 (2018).


    Google Scholar
     

  • Mackenzie, C. A. & Ahabyona, P. Elephants in the garden: financial and social costs of crop raiding. Ecol. Econ. 75, 72–82 (2012).


    Google Scholar
     

  • Ji, Y., Wei, X., Liu, F., Li, D. & Li, J. Spatial-temporal patterns of human-wildlife conflicts under coupled impact of natural and anthropogenic factors in Mt. Gaoligong, Western Yunnan, China. Glob. Ecol. Conserv. 40, e02329 (2022).


    Google Scholar
     

  • Franchini, M. et al. Get out from my field! The role of agricultural crops in shaping the habitat selection by and suitability for the crested Porcupine in Central Italy. Mamm. Res. 69, 411–421 (2024).


    Google Scholar
     

  • Almasieh, K., Zamani, N. & Piri, R. An ensemble modeling approach to predict spatial risk patches of the Persian leopard-livestock conflicts in Lorestan Province, Iran. Environ. Sci. Pollut. Res. 30, 93002–93013 (2023).


    Google Scholar
     

  • Anand, S. & Radhakrishna, S. Investigating trends in human-wildlife conflict: is conflict escalation real or imagined? J. Asia-Pac. Biodivers. 10, 154–161 (2017).


    Google Scholar
     

  • Mohammadi, A., Alambeigi, A., López-Bao, J. V., Taghavi, L. & Kaboli, M. Living with wolves: lessons learned from Iran. Conserv. Sci. Pract. 4, e12667 (2022).


    Google Scholar
     

  • Kaartinen, S., Luoto, M. & Kojola, I. Carnivore-livestock conflicts: determinants of Wolf (Canis lupus) depredation on sheep farms in Finland. Biodivers. Conserv. 18, 3503–3517 (2009).


    Google Scholar
     

  • Khorozyan, I., Ghoddousi, S., Soufi, M., Soofi, M. & Waltert, M. Cattle selectivity by leopards suggests ways to mitigate human–leopard conflict. Ecol. Evol. 8, 8011–8018 (2018).

    PubMed 
    PubMed Central 

    Google Scholar
     

  • Dai, Y. et al. Human-carnivore conflicts and mitigation options in Qinghai Province, China. J. Nat. Conserv. 53, 125776 (2020).


    Google Scholar
     

  • Davoli, M. et al. Changing patterns of conflict between humans, carnivores and crop-raiding prey as large carnivores recolonize human-dominated landscapes. Biol. Conserv. 269, 109553 (2022).


    Google Scholar
     

  • Nyhus, P. J. Human-wildlife conflict and coexistence. Annu. Rev. Environ. Resour. 41, 143–171 (2016).


    Google Scholar
     

  • Hystrix indica: Amori, G., Hutterer, R., Kryštufek, B., Yigit, N., Mitsainas, G. & Palomo, L. IUCN Red List of Threatened Species (2016). https://doi.org/10.2305/IUCN.UK.2021-1.RLTS.T10751A197516522.EN

  • Nolan, V., Kaky, E. D., Alatawi, A. S. & Gilbert, F. Mapping the Indian crested Porcupine across Iraq: the benefits of species distribution modelling when species data are scarce. Mamm. Biol. 102, 1851–1866 (2022).


    Google Scholar
     

  • National Red data book of mammals in. Jordan-resource | IUCN. https://iucn.org/resources/grey-literature/national-red-data-book-mammals-jordan

  • Bilimleri, Y., Doç Gökhan YÜRÜMEZ Batman Üniversitesi Fen Edb Fak Biyoloji Bölümü, Y., Doç Servet ULUTÜRK Batman Üniversitesi, Y. & Edb Fak Biyoloji Bölümü, F. Batman Üniversitesi Batman University Distribution of Indian Crested Porcupine Hystrix indica (Kerr, 1792) (Mammalia: Rodentia) in Batman Province. J. Life Sci. 1 (2016).

  • Ziaie, H. A Field Guide to The Mammals of Iran. 1th Edition, Iran Wildlife Center, Tehran. References – Scientific Research Publishing (2008). https://www.scirp.org/reference/referencespapers?referenceid=1757158

  • Determinants of occupancy and burrow site selection by Indian crested porcupine in Keoladeo National Park, Bharatpur, Rajasthan, India on JSTOR. https://www.jstor.org/stable/26163993

  • Hafeez, S., Ashfaq, M., Khan, G. S. & Khan, Z. H. Damage inflicted by the Indian crested Porcupine, Hystrix indica, on forestry and agricultural systems in Punjab, Pakistan. J. Asian Afr. Stud. 47, 168–175 (2012).


    Google Scholar
     

  • Ashraf, R. Z. et al. Evaluation of economic loss caused by Indian crested Porcupine (Hystrix indica) in agricultural land of district Muzaffarabad, Azad Jammu and Kashmir, Pakistan. Braz. J. Biol. 83, 1–12 (2023).


    Google Scholar
     

  • Wilson, D. E., Lacher, T. E. & Mittermeier, R. A. Handbook of the mammals of the world. 6, Lagomorphs and rodents I. 987 (2016).

  • Ehtisham et al. Identification and crop damage assessment of Indian crested porcupine (Hystrix indica) in selected zones of Abbottabad, Pakistan. Braz. J. Biol. 82, 1–10 (2022).


    Google Scholar
     

  • Yusefi, G. H., Faizolahi, K., Darvish, J., Safi, K. & Brito, J. C. The species diversity, distribution, and conservation status of the terrestrial mammals of Iran. J. Mamm. 100, 55–71 (2019).


    Google Scholar
     

  • Karami, M., Ghadirian, T. & Faizolahi, K. The Atlas of Mammals of Iran; Jahad Daneshgahi, Kharazmi Branch (Department of the Environment of Iran, 2016).

  • Mori, E., Molteni, R., Ancillotto, L., Ficetola, G. F. & Falaschi, M. Spatial ecology of crested porcupine in a metropolitan landscape. Urban Ecosyst. 25, 1797–1803 (2022).

    PubMed 
    PubMed Central 

    Google Scholar
     

  • Mawere, K. K. et al. Application of maximum entropy (MaxEnt) to understand the spatial dimension of human–wildlife conflict (HWC) risk in areas adjacent to Gonarezhou National Park of Zimbabwe. Ecol. Soc. https://doi.org/10.5751/ES-14420-280318 (2023).

    Article 

    Google Scholar
     

  • Behdarvand, N. et al. Spatial risk model and mitigation implications for wolf–human conflict in a highly modified agroecosystem in Western Iran. Biol. Conserv. 177, 156–164 (2014).


    Google Scholar
     

  • Miller, J. R. B. Mapping attack hotspots to mitigate human–carnivore conflict: approaches and applications of spatial predation risk modeling. Biodivers. Conserv. 24, 2887–2911 (2015).


    Google Scholar
     

  • Hipólito, D. et al. Brown bear damage: patterns and hotspots in Croatia. Oryx 54, 511–519 (2020).


    Google Scholar
     

  • Eshtiaghi, A., Naderi, S., Mohammadi, A. & Wan, H. Y. Identifying wild Boar (Sus scrofa) crop damage hotspots to mitigate human-wild Boar conflicts in Northern Iran. Glob. Ecol. Conserv. 54, e03065 (2024).


    Google Scholar
     

  • Nair, R. P. & Jayson, E. A. Occurrence of the Indian crested porcupine (Hystrix indica Kerr.1792) and the damage on plantation crops in the Nilambur forest divisions of Southern Western Ghats, Kerala, India. Agric. Sci. Dig. 39, 301–305 (2019).


    Google Scholar
     

  • Khattak, R. H. et al. Understanding the dynamics of human–wildlife conflicts in north-western Pakistan: implications for sustainable conservation. Sustainability 13, 10793 (2021).


    Google Scholar
     

  • Almasieh, K., Kaboli, M. & Beier, P. Identifying habitat cores and corridors for the Iranian black bear in Iran. Ursus 27, 18–30 (2016).


    Google Scholar
     

  • Brown, J. L. SDMtoolbox: A python-based GIS toolkit for landscape genetic, biogeographic and species distribution model analyses. Methods Ecol. Evol. 5, 694–700 (2014).


    Google Scholar
     

  • Venter, O. et al. Global terrestrial human footprint maps for 1993 and 2009. Sci. Data 3, 1–10 (2016).

  • Sanderson, E. W. et al. The human footprint and the last of the wild. BiSci 52, 891 (2002).


    Google Scholar
     

  • Almasieh, K., Rouhi, H. & Hasti, F. Identifying core habitats and connectivity paths for the conservation of mouflon (Ovis gmelini) in Western Iran. Glob. Ecol. Conserv. 41, e02377 (2023).


    Google Scholar
     

  • Mori, E. et al. How the south was won: current and potential range expansion of the crested porcupine in Southern Italy. Mamm. Biol. 101, 11–19 (2021).


    Google Scholar
     

  • Fick, S. E. & Hijmans, R. J. WorldClim 2: new 1-km spatial resolution climate surfaces for global land areas. Int. J. Climatol. 37, 4302–4315 (2017).


    Google Scholar
     

  • Esri. ArcGIS 10.1. Environ. Syst. Res. Institute, Redlands, CA, USA (2012).

  • Jueterbock, A. ‘MaxentVariableSelection’ vignette (2015).

  • Team, R. C. R: A Language and Environment for Statistical Computing (R Foundation for Statistical Computing, 2019).

  • Zuur, A. F., Ieno, E. N. & Elphick, C. S. A protocol for data exploration to avoid common statistical problems. Methods Ecol. Evol. 1, 3–14 (2010).


    Google Scholar
     

  • Naimi, B., Hamm, N. A. S., Groen, T. A., Skidmore, A. K. & Toxopeus, A. G. Where is positional uncertainty a problem for species distribution modelling? Ecography (Cop.) 37, 191–203 (2014).

    ADS 

    Google Scholar
     

  • Thuiller, W., Lafourcade, B., Engler, R. & Araújo, M. B. BIOMOD—A platform for ensemble forecasting of species distributions. Ecography (Cop.) 32, 369–373 (2009).

    ADS 

    Google Scholar
     

  • Araújo, M. B. & New, M. Ensemble forecasting of species distributions. Trends Ecol. Evol. 22, 42–47 (2007).

    PubMed 

    Google Scholar
     

  • Almasieh, K. & Mohammadi, A. Assessing landscape suitability and connectivity for effective conservation of two semi-desert ungulates in Iran. Conserv. Sci. Pract. 5, e13047 (2023).


    Google Scholar
     

  • Ashrafzadeh, M. R., Naghipour, A. A., Haidarian, M. & Khorozyan, I. Modeling the response of an endangered flagship predator to climate change in Iran. Mamm. Res. 64, 39–51 (2019).


    Google Scholar
     

  • Rezaei, S., Mohammadi, A., Shadloo, S., Ranaie, M. & Wan, H. Y. Climate change induces habitat shifts and overlaps among carnivores in an arid and semi-arid ecosystem. Ecol. Inf. 77, 102247 (2023).


    Google Scholar
     

  • Eskildsen, A. et al. Testing species distribution models across space and time: high latitude butterflies and recent warming. Glob Ecol. Biogeogr. 22, 1293–1303 (2013).


    Google Scholar
     

  • Mohammadi, A., Almasieh, K. & Vaissi, S. Ungulates conservation in the face of human development: mining and roads’ influences on habitat and connectivity in Iran’s central plateau. Ecol. Inf. 81, 102656 (2024).


    Google Scholar
     

  • Barbet-Massin, M., Jiguet, F., Albert, C. H. & Thuiller, W. Selecting pseudo-absences for species distribution models: how, where and how many? Methods Ecol. Evol. 3, 327–338 (2012).


    Google Scholar
     

  • Calambás-Trochez, L. F. et al. Climate and land-use changes coupled with low coverage of protected areas threaten palm species in South Brazilian grasslands. Perspect. Ecol. Conserv. 19, 345–353 (2021).


    Google Scholar
     

  • Ahmadi, M. et al. Species and space: a combined gap analysis to guide management planning of conservation areas. Landsc. Ecol. 35, 1505–1517 (2020).


    Google Scholar
     

  • Mori, E., Sforzi, A. & Di Febbraro, M. From the apennines to the Alps: recent range expansion of the crested porcupine Hystrix cristata L., 1758 (Mammalia: Rodentia: Hystricidae) in Italy. Ital. J. Zool. 80, 469–480 (2013).


    Google Scholar
     

  • Torretta, E., Orioli, V., Bani, L., Mantovani, S. & Dondina, O. En route to the north: modelling crested porcupine habitat suitability and dispersal flows across a highly anthropized area in Northern Italy. Mamm. Biol. 101, 1067–1077 (2021).


    Google Scholar
     

  • Lovari, S., Corsini, M. T., Guazzini, B., Romeo, G. & Mori, E. Suburban ecology of the crested porcupine in a heavily poached area: a global approach. Eur. J. Wildl. Res. 63, 1–10 (2017).


    Google Scholar
     

  • Safeer, B., Rasheed, Z., Altaf, M., Manzoor, I. & Yasrub, S. Assessment of human-Indian crested porcupine (Hystrix indica) conflict in district Bagh. Azad Jammu Kashmir J. Wildl. Ecol. 2, 1–12 (2018).


    Google Scholar
     

  • Wu, Q., Dai, Y. & Sun, Q. Human–wildlife conflict patterns and hotspot prediction in the southern foothills of the Daba mountains, China. Front. Ecol. Evol. 12, 1435811 (2024).


    Google Scholar
     

  • Redpath, S. M. et al. Understanding and managing conservation conflicts. Trends Ecol. Evol. 28, 100–109 (2013).

    PubMed 

    Google Scholar
     

  • Khan, A. A., Ahmad, S., Hussain, I. & Munir, S. Deterioration impact of Indian crested porcupine, Hystrix indica, on forestry and agricultural systems in Pakistan. Int. Biodeterior. Biodegrad. 45, 143–149 (2000).


    Google Scholar
     



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