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变温动物数量的热和能量限制:使用蜥蜴的全球测试

Thermal and energetic constraints on ectotherm abundance: a global test using lizards.

作者信息

Buckley Lauren B, Rodda Gordon H, Jetz Walter

机构信息

Santa Fe Institute, Santa Fe, New Mexico 87501, USA.

出版信息

Ecology. 2008 Jan;89(1):48-55. doi: 10.1890/07-0845.1.

Abstract

Population densities of birds and mammals have been shown to decrease with body mass at approximately the same rate as metabolic rates increase, indicating that energetic needs constrain endotherm population densities. In ectotherms, the exponential increase of metabolic rate with body temperature suggests that environmental temperature may additionally constrain population densities. Here we test simple bioenergetic models for an ecologically important group of ectothermic vertebrates by examining 483 lizard populations. We find that lizard population densities decrease as a power law of body mass with a slope approximately inverse to the slope of the relationship between metabolic rates and body mass. Energy availability should limit population densities. As predicted, environmental productivity has a positive effect on lizard density, strengthening the relationship between lizard density and body mass. In contrast, the effect of environmental temperature is at most weak due to behavioral thermoregulation, thermal evolution, or the temperature dependence of ectotherm performance. Our results provide initial insights into how energy needs and availability differentially constrain ectotherm and endotherm density across broad spatial scales.

摘要

研究表明,鸟类和哺乳动物的种群密度会随着体重的增加而下降,其下降速率与代谢率的增加速率大致相同,这表明能量需求限制了恒温动物的种群密度。对于变温动物而言,代谢率随体温呈指数增长,这表明环境温度可能会额外限制种群密度。在此,我们通过研究483个蜥蜴种群,对一类在生态上具有重要意义的变温脊椎动物的简单生物能量模型进行了测试。我们发现,蜥蜴种群密度随体重呈幂律下降,其斜率与代谢率和体重之间关系的斜率大致相反。能量可利用性应会限制种群密度。正如预测的那样,环境生产力对蜥蜴密度有积极影响,强化了蜥蜴密度与体重之间的关系。相比之下,由于行为体温调节、热进化或变温动物表现的温度依赖性,环境温度的影响至多很微弱。我们的研究结果初步揭示了能量需求和可利用性如何在广泛的空间尺度上以不同方式限制变温动物和恒温动物的密度。

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