Present and future habitat suitability of Mantheyus phuwuanensis under climate change scenario

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CHANTIP CHUAYNKERN
NUTTAPONG KHAJITMATHEE
RATCHATA PHOCHAYAVANICH
PHANSAMAI PHOMMEXAY
AINGORN CHAIYES
NATHANAËL MAURY
SOMCHIT SUDAVANH
ANCHALEE AOWPHOL
ATTAPOL RUJIRAWAN
SANTI PAILOBLEE
WARONG SUKSAVATE
PRATEEP DUENGKAE
YODCHAIY CHUAYNKERN

Abstract

Abstract. Chuaynkern C, Khajitmathee N, Phochayavanich R, Phommexay P, Chaiyes A, Maury N, Sudavanh S, Aowphol A, Rujirawan A, Pailoblee S, Suksavate W, Duengkae P, Chuaynkern Y. 2025. Present and future habitat suitability of Mantheyus phuwuanensis under climate change scenario. Biodiversitas 26: 1075-1084. The Phu Wua Rock Agama, Mantheyus phuwuanensis, is a diurnal lizard endemic to northeastern Thailand and western Laos, first described in 1991 from Phu Wua Wildlife Sanctuary (northeastern Thailand). Despite being listed as Near Threatened by the IUCN, little is known about its ecological requirements, population dynamics, and the extent of its distribution. This study aims to provide an updated assessment of the species' range and evaluate its habitat suitability under current and future climate scenarios. Field surveys complemented by literature reviews documented 1,994 occurrences of M. phuwuanensis across its range. Using 28 environmental variables, Species Distribution Modeling (SDM) in MaxEnt achieved exceptional predictive accuracy (AUC: 0.993±0.005). Precipitation during the warmest quarter (average 1,519.58±339.04 mm³; range 825-1,855 mm³), distance to unconsolidated sediments (average 6.09±7.51 km; range 0-16.70 km), and slope (average 7.26±2.64 degrees; range 0.24-11.97o) were identified as the primary environmental factors influencing habitat suitability. Current suitable habitats were estimated at 2,715.90 km², primarily concentrated in Laos. Projections for 2050 and 2070 under SSP2-4.5 and SSP5-8.5 climate scenarios revealed alarming habitat reductions of 65.93-88.87%, highlighting the species’ high sensitivity to climate change. Conservation measures are urgently needed to mitigate these impacts. We recommend designating M. phuwuanensis as a protected animal under Thai law and upgrading its CITES status to Appendix III to combat potential overexploitation. Future conservation strategies should prioritize habitat protection, ecological restoration, and cross-border collaboration between Thailand and Laos. These findings offer crucial insights into the vulnerability of M. phuwuanensis and underscore the importance of integrating habitat management with regional conservation efforts.

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References
Ananjeva NB, Gordeev DA, Nguyen TT. 2022. Analysis of urotomy and regeneration in agamid lizards of the genus Mantheyus (Reptilia: Sauria: Agamidae: Draconinae) using X-ray methods and a computed microtomography. Biol Bull 49: 309-317. DOI: 10.1134/S1062359022040033.
Ananjeva NB, Stuart BL. 2001. The agamid lizard Ptyctolaemus phuwuanensis Manthey and Nabhitabhata, 1991 from Thailand and Laos represents a new genus. Russ J Herpetol 8: 165-170. DOI: 10.30906/1026-2296-2001-8-3-165-170.
Ceballos G, Ehrlich PR, Barnosky AD. 2015. Accelerated modern human-induced species losses: Entering the sixth mass extinction. Sci Adv 1: e1400253. DOI: 10.1126/sciadv.1400253.
Ceballos G, Ehrlich PR, Dirzo R. 2017. Biological annihilation via the ongoing sixth mass extinction signaled by vertebrate population losses and declines. Proc Natl Acad Sci USA 114: e6089-e6096. Doi.org/10.1073/pnas.1704949114.
Ceballos G, Ehrlich PR. 2023. Mutilation of the tree of life via mass extinction of animal genera. Proc Natl Acad Sci USA 120: e2306987120. DOI: 10.1073/pnas.2306987120.
Chuaynkern C, Duengkae P. 2014. Decline of amphibians in Thailand. In: Heatwole H, Das I (eds). Conservation Biology of Amphibians of Asia. Status of Conservation and Decline of Amphibians: Eastern Hemisphere. National History Publications, Borneo.
CITES. 2025. Convention on International Trade in Endangered Species of Wild Fauna and Flora. https://cites.org/eng.
de Brito Martins A, de Aguiar MA. 2016. Barriers to gene flow and ring species formation. Evolution 71: 442-448. DOI: 10.1111/evo.13121.
Geissler P, Hartmann T, Ihlow F. 2015. The Lower Mekong: An insurmountable barrier to amphibians in southern Indochina? Biol J Linn Soc Lond 114: 905-914. DOI: 10.1111/bij.12444.
Grismer JL, Schulte II JA, Alexander A. 2016. The Eurasian invasion: Phylogenomic data reveal multiple Southeast Asian origins for Indian dragon lizards. BMC Ecol Evol 16: 43. DOI: 10.1186/s12862-016-0611-6.
Hallam CD, Stuart BL, Phimmachak S. 2011. Geographic distribution: Mantheyus phuwuanensis (Phu Wua Roack Agama). Herpetol Rev 42: 112.
Hartmann J, Moosdorf N. 2012. Global Lithological Map Database v1.0 (gridded to 0.5° spatial resolution). DOI:10.1594/PANGAEA.788537.
IUCN. 2025. The IUCN Red List of Threatened Species. Version 2024-2. https://www.iucnredlist.org.
Kumar A, Verma AK. 2017. Biodiversity loss and its ecological impact in India. Intl J Biol Sci 8 (2): 156-160.
Laurance WF, Camargo JLC, Luizão RCC. 2011. The fate of Amazonian forest fragments: A 32-year investigation. Biol Conserv 144: 56-67. DOI: 10.1016/j.biocon.2010.09.021.
Lukoschek V, Osterhage JL, Karns DR. 2011. Phylogeography of the Mekong mud snake (Enhydris subtaeniata): The biogeographic importance of dynamic river drainages and fluctuating sea levels for semiaquatic taxa in Indochina. Ecol Evol 1: 330-342. DOI: 10.1002/ece3.29.
Manthey S, Manthey U. 2005. Mantheyus phuwuanensis - from capture to captive breeding. Reptilia 42: 24-28.
Manthey U, Manthey S. 2017. Amphibians and reptiles encountered in Laos: A travel report Part 1: Phou Khao Khouay NBCA (February 1998). Sauria 39 (2): 35-55.
Manthey U, Nabhitabhata J. 1991. Eine neue Agame, Ptyctolaemus phuwuanensis sp. n. (Sauria: Agamidae), aus Nordost-Thailand. Sauria 13 (4): 3-6.
McSweeney CF, Jones RG, Lee RW. 2015. Selecting CMIP5 GCMs for downscaling over multiple regions. Clim Dyn 44: 3237-3260. DOI: 10.1007/s00382-014-2418-8.
Phillips SJ, Anderson RP, Schapire RE. 2006. Maximum entropy modeling of species geographic distributions. Ecol Model 190: 231-259. DOI: 10.1016/j.ecolmodel.2005.03.026.
Phommexay P, Chaiyes A, Duengkae P. 2024a. Current and suitable habitat of the critically endangered northern white-cheeked gibbon (Nomascus leucogenys) in Lao PDR. Ecol Monten 75: 103-118. DOI: 10.37828/em.2024.75.10.
Phommexay P, Chaiyes A, Duengkae P. 2024b. Estimation of population and threats of the northern white-cheeked gibbon (Nomascus leucogenys) in Phou Khao Khouay National Biodiversity Conservation Area, Lao PDR. Agric Nat Resour 58 (4): 453-462. DOI: 10.34044/j.anres.2024.58.4.05.
Pomoim N, Hughes AC, Trisurat Y. 2022. Vulnerability to climate change of species in protected areas in Thailand. Sci Rep 12: 5705. DOI: 10.1038/s41598-022-09767-9.
Poyarkov NA, Nguyen TV, Popov ES. 2023. Recent progress in taxonomic studies, biogeographic analysis, and revised checklist of reptiles in Indochina. Russ J Herpetol 30: 255-476. DOI: 10.30906/1026-2296-2023-30-5-255-476.
Prakash S, Verma AK. 2022. Anthropogenic activities and biodiversity threats. Intl J Biol Innov 4: 94-103. DOI: 10.46505/ijbi.2022.4110.
Prayoon U, Suksavate W, Chaiyes A. 2021. Past, present and future habitat suitable for gaur (Bos gaurus) in Thailand. Agric Nat Resour 55 (5): 743-756. DOI: 10.34044/j.anres.2021.55.5.05.
Ramirez-Villegas J, Francisco C, Christian D. 2014. Using species distributions models for designing conservation strategies of Tropical Andean biodiversity under climate change. J Nat Conserv 22: 391-404. DOI: 10.1016/j.jnc.2014.03.007.
Sas-Rolfes M, Challender DWS, Hinsley A. 2019. Illegal wildlife trade: Scale, processes, and governance. Ann Rev Environ Resour 44: 201-228. DOI: 10.1146/ANNUREV-ENVIRON-101718-033253.
Steven JP, Dudík M, Schapire RE. 2024. Maxent Software for Modeling Species Niches and Distributions (Version 3.4.1). www.biodiversityinformatics.amnh.org/open_source/maxent/.
Sun J, Ding C, Lucas MC. 2024. Convolutional neural networks facilitate river barrier detection and evidence severe habitat fragmentation in the Mekong River biodiversity hotspot. Water Resour Res 60: e2022WR034375. DOI:10.1029/2022WR034375.
Tabari H. 2020. Climate change impact on flood and extreme precipitation increases with water availability. Sci Rep 10: 13768. DOI: 10.1038/s41598-020-70816-2.
Thongproh P, Chuaynkern C, Duengake P. 2019. A study of food items of reptiles in Yoddom Wildlife Sanctuary, Ubon Ratchathani Province by using fecal pellet analysis. In: Marod D (eds). Proceedings of Thai Forest Ecological Research Network, T-FERN#8. Khon Kaen Kaen University, 24-25 January 2019. [Thailand]
Tran DV, Hoang TT, Nguyen TH. 2023. Current and future suitable habitats of a range-restricted species group (Cyrtodactylus chauquangensis) in Vietnam. Raffles Bull Zoo 71: 224-236. DOI: 10.26107/RBZ-2023-0017.
Weston JNJ, Jensen EL, Hasoon MSR. 2022. Evidence from global population genomics of a cosmopolitan amphipod. Sci Adv 8: eabo6672. DOI: 10.1126/sciadv.abo6672.
Wild Animal Conservation and Protection Act. 2019. Wild Animal Conservation and Protected Act, B.E. 2562 (2019). FAO, Rome.

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