IJMEC_2024v14n3

International Journal of Molecular Ecology and Conservation 2024, Vol.14, No.2, 109-121 http://ecoevopublisher.com/index.php/ijmec 120 McFarland R., Barrett L., Costello M., Fuller A., Hetem R., Maloney S., Mitchell D., and Henzi P., 2019, Keeping cool in the heat: behavioral thermoregulation and body temperature patterns in wild vervet monkeys, American Journal of Physical Anthropology, 171(3): 407-418. https://doi.org/10.1002/ajpa.23962 PMid:31713853 Mekonnen A., Fashing P.J., Bekele A., Hernandez-Aguilar R.A., Rueness E.K., Nguyen N., and Stenseth N., 2017, Impacts of habitat loss and fragmentation on the activity budget, ranging ecology and habitat use of Bale monkeys (Chlorocebus djamdjamensis) in the southern Ethiopian Highlands, American Journal of Primatology, 79(7): e22644. https://doi.org/10.1002/ajp.22644 PMid:28185282 Mendoza I., Peres C.A., and Morellato L.P.C., 2017, Continental-scale patterns and climatic drivers of fruiting phenology: a quantitative Neotropical review, Global and Planetary Change, 148: 227-241. https://doi.org/10.1016/j.gloplacha.2016.12.001 Moraes A.M., Ruiz-Miranda C., Ribeiro M., Grativol A.D., Carvalho C.S., Dietz J., et al., 2017, Temporal genetic dynamics of reintroduced and translocated populations of the endangered golden lion tamarin (Leontopithecus rosalia), Conservation Genetics, 18: 995-1009. https://doi.org/10.1007/s10592-017-0948-4 Moraes B., Razgour O., Souza-Alves J.P., Boubli J., and Bezerra B., 2020, Habitat suitability for primate conservation in northeast Brazil, Oryx, 54: 803-813. https://doi.org/10.1017/S0030605319001388 Nunney L., 2016, Adapting to a changing environment: modeling the interaction of directional selection and plasticity, Journal of Heredity, 107(1): 15-24. https://doi.org/10.1093/jhered/esv084 PMid:26563131 Osman N.A., Abdul-Latiff M.A., Mohd-Ridwan A.R., Yaakop S., Karuppannan K., and Md-Zain B.M., 2022, Metabarcoding data analysis revealed the plant dietary variation of long-tailed macaque Macaca fascicularis (Cercopithecidae, Cercopithecinae) living in disturbed habitats in Peninsular Malaysia, Biodiversity Data Journal, 10: e89617. https://doi.org/10.3897/BDJ.10.e89617 PMid:36761533 PMCid:PMC9848512 Raghunathan N., François L., Huynen M., Oliveira L., and Hambuckers A., 2015, Modelling the distribution of key tree species used by lion tamarins in the Brazilian Atlantic forest under a scenario of future climate change, Regional Environmental Change, 15: 683-693. https://doi.org/10.1007/s10113-014-0625-9 Rezende G.C., Sobral-Souza T., and Culot L., 2020, Integrating climate and landscape models to prioritize areas and conservation strategies for an endangered arboreal primate, American Journal of Primatology, 82(12): e23202. https://doi.org/10.1002/ajp.23202 PMid:33040387 Rocha D.G., Sollmann R., and Sollmann R., 2023, Habitat use patterns suggest that climate-driven vegetation changes will negatively impact mammal communities in the Amazon, Animal Conservation, 26(5): 663-674. https://doi.org/10.1111/acv.12853 Sales L., Ribeiro B.R., Chapman C.A., and Loyola R., 2020, Multiple dimensions of climate change on the distribution of Amazon primates, Perspectives in Ecology and Conservation, 18(2): 83-90. https://doi.org/10.1016/j.pecon.2020.03.001 Scheun J., Greeff D., and Nowack J., 2019, Urbanisation as an important driver of nocturnal primate sociality, Primates, 60(4): 375-381. https://doi.org/10.1007/s10329-019-00725-0 PMid:30968257 Setchell J., Fairet E., Shutt K.A., Waters S., and Bell S., 2016, Biosocial conservation: integrating biological and ethnographic methods to study human–primate interactions, International Journal of Primatology, 38(2): 401-426. https://doi.org/10.1007/s10764-016-9938-5 PMid:28546653 PMCid:PMC5422492 ShikhMaidin M., 2021, Environmental stress on the reproduction of non-human primates, Biotropia, 28: 2. https://doi.org/10.11598/btb.2021.28.2.1296 Souza-Alves J.P., Chagas Alves R.R.D., Hilário R.R., Barnett A.A., and Bezerra B.M., 2021, Species-specific resource availability as potential correlates of foraging strategy in Atlantic Forest edge-living common marmosets, Ethology Ecology and Evolution, 34: 449-470. https://doi.org/10.1080/03949370.2021.1949751 Stewart B.M., Turner S.E., and Matthews H., 2020, Climate change impacts on potential future ranges of non-human primate species, Climatic Change, 163(1): 1-18. Xue Q., Zeng X., Du Y., and Long W., 2023, Reproductive phenology and climatic drivers of plant species used as food by the Hainan gibbon, Nomascus hainanus (Primates: Hylobatidae), Forests, 14(9): 1732. https://doi.org/10.3390/f14091732

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