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Scale dependency of Liolaemus lizards' home range in response to different environmental variables 被引量:1
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作者 Oscar Anibal STELLATELLI carolina block +3 位作者 Debora Lina MORENO-AZOCAR Laura Estela VEGA Juan Pablo ISACCH Felix Benjamin CRUZ 《Current Zoology》 SCIE CAS CSCD 2016年第6期521-530,共10页
关键词 环境变量 依赖性 蜥蜴 栖息地结构 活动范围 净初级生产力 生态模式 空间尺度
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Latitudinal pattern of the thermal sensitivity of running speed in the endemic lizard Liolaemus multimaculatus
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作者 Oscar Aníbal STELLATELLI Laura EVEGA +4 位作者 carolina block Camila ROCCA Patricio BELLAGAMBA Juan Esteban DAJIL Félix Benjamín CRUZ 《Integrative Zoology》 SCIE CSCD 2022年第4期619-637,共19页
Physiological performance in lizards may be affected by climate across latitudinal or altitudinal gradients.In the coastal dune barriers in central-eastern Argentina,the annual maximum environmental temperature decrea... Physiological performance in lizards may be affected by climate across latitudinal or altitudinal gradients.In the coastal dune barriers in central-eastern Argentina,the annual maximum environmental temperature decreases up to 2℃ from low to high latitudes,while the mean relative humidity of the air decreases from 50%to 25%.Liolaemus multimaculatus,a lizard in the family Liolaemidae,is restricted to these coastal dunes.We investigated the locomotor performance of the species at 6 different sites distributed throughout its range in these dune barriers.We inquired whether locomotor performance metrics were sensitive to the thermal regime attributable to latitude.The thermal performance breadth increased from 7%to 82%with latitude,due to a decrease in its critical thermal minimum of up to 5℃ at higher latitudes.Lizards from high latitude sites showed a thermal optimum,that is,the body temperature at which maximum speed is achieved,up to 4℃lower than that of lizards from the low latitude.At relatively low temperatures,the maximum running speed of high-latitude individuals was faster than that of low-latitude ones.Thermal parameters of locomotor performance were labile,decreasing as a function of latitude.These results show populations of L.multimaculatus adjust thermal physiology to cope with local climatic variations.This suggests that thermal sensitivity responds to the magnitude of latitudinal fluctuations in environmental temperature. 展开更多
关键词 LATITUDE Liolaemus REPTILE running speed TEMPERATURE thermal sensitivity
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