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The role of environmental temperature on movement patterns of giant anteaters

查看全文 作  者:Aline [1]GIROUX;Zaida [1]ORTEGA;Alessandra [2,3]BERTASSONI;Arnaud Léonard Jean [4,5,6]DESBIEZ;Danilo [4,6,7]KLUYBER;Gabriel Favero [4,6,8]MASSOCATO;Guilherme DE [9]MIRANDA;Guilherme [10]MOURÃO;Luciana [11]SURITA;Nina [4,12]ATTIAS;Rita de Cassia [13]BIANCHI;Vinícius Peron de Oliveira [3,14,15]GASPAROTTO;Luiz Gustavo Rodrigues OLIVEIRA-[1]SANTOS 高影响力作者 机构地区:[1]Ecology Department,Federal University of Mato Grosso do Sul(UFMS),Campo Grande,Mato Grosso do Sul,Brazil;[2]Post Graduate Program of Ecology and Evolution,Federal University of Goiás(UFG),Goiânia,Goiás,Brazil;[3]Institute of Research and Conservation of Anteaters in Brazil(PROJETO TAMANDUÁ),Parnaíba,Piauí,Brazil;[4]Institute for the Conservation of Wild Animals(ICAS),Campo Grande,Mato Grosso do Sul,Brazil;[5]Royal Zoological Society of Scotland(RZSS),Murrayfield,Edinburgh,UK;[6]Institute for Ecological Research(IPÊ),NazaréPaulista,São Paulo,Brazil;[7]Naples Zoo at Caribbean Gardens,Naples,Florida,USA;[8]The Houston Zoo,Houston,Texas,USA;[9]National Institute of Criminalistics-Federal Police,Brasília,Brazil;[10]Embrapa Pantanal,Corumbá,Mato Grosso do Sul,Brazil;[11]Natural Resources Graduate Program(PRONAT)-Federal University of Roraima(UFRR),Boa Vista,Roraima,Brazil;[12]Animal Biology Graduate Program,Federal University of Mato Grosso do Sul(UFMS),Campo Grande,Mato Grosso do Sul,Brazil;[13]Animal Biology Department,São Paulo State University(UNESP),São Josédo Rio Preto,São Paulo,Brazil;[14]Department of Preventive Veterinary Medicine and Animal Health,School of Veterinary Medicine,University of São Paulo(USP),São Paulo,SP,Brazil;[15]Brazilian Institute for Conservation Medicine(TRÍADE),Recife,Pernambuco,Brazil高影响力机构 出  处:《Integrative Zoology》索引2022年第17卷第2期,共12页高影响力期刊 基  金:This work was supported by the Brasilian Conselho Nacional de Desenvolvimento Científico e Tecnológico-CNPQ(133623/2017-3 to AG and 308934/2017-2 to GM);National Program of post doctorate of Coordenação de Aperfeiçoamento de Pessoal de Nível Superior-CAPES(PNPD 1694744 to ZO);São Paulo Research Foundation-FAPESP(2013/18526-9 and 2013/04957-8 to AB). 摘  要:Mammals can show conspicuous behavioral responses to thermal variation,including changes in movement patterns.We used an integrative approach to understand how environmental temperature can drive the movement behavior of a mammal with low capacity for physiological thermoregulation,the giant anteater(Myrmecophaga tridactyla).We tracked 52 giant anteaters in 7 areas throughout the Brazilian savannah.We estimated the distance moved,area used,use of forest areas,and mean environmental temperature for each monitoring day of each individual.We modeled these data with Mixed Structural Equations—considering the possible interactions between our variables and controlling for sex and body mass.Giant anteaters reduced displacement and increased forest use with decreasing environmental temperature,probably because of their low body heat production.It is possible that they reduce distance moved and area used by reducing the duration of activity.With decreasing temperature,forest habitats become warmer than open ones,besides buffer rain and chilly winds.Reducing displacement and using forests are important strategies to reduce body heat loss and the energetic costs of thermoregulation.However,decreasing movement can limit food access and,consequently,fitness.Therefore,we highlight the importance of forests as thermal shelters.With increasing frequency and intensity of extreme weather events,we showed the need to preserve forest patches to offer suitable conditions for tropical mammals’behavioral thermoregulation.In this context,policies favoring deforestation on Brazilian territory are especially worrisome.Finally,we emphasize the need of integrative approaches to understand the complex interactions between organisms and the environment. 关 键 词:behavioral thermoregulation BIOLOGGING habitat use mixed structural equations movement ecology
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