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行为体温调节以及一只晒太阳蝴蝶中对流和辐射的相对作用。

Behavioural thermoregulation and the relative roles of convection and radiation in a basking butterfly.

作者信息

Barton Madeleine, Porter Warren, Kearney Michael

机构信息

Department of Zoology, The University of Melbourne, Victoria 3010, Australia.

Department of Zoology, University of Wisconsin, 250 N. Mills St., Madison, WI 53706, United States of America.

出版信息

J Therm Biol. 2014 Apr;41:65-71. doi: 10.1016/j.jtherbio.2014.02.004. Epub 2014 Feb 11.

Abstract

Poikilothermic animals are often reliant on behavioural thermoregulation to elevate core-body temperature above the temperature of their surroundings. Butterflies are able to do this by altering body posture and location while basking, however the specific mechanisms that achieve such regulation vary among species. The role of the wings has been particularly difficult to describe, with uncertainty surrounding whether they are positioned to reduce convective heat loss or to maximise heat gained through radiation. Characterisation of the extent to which these processes affect core-body temperature will provide insights into the way in which a species׳ thermal sensitivity and morphological traits have evolved. We conducted field and laboratory measurements to assess how basking posture affects the core-body temperature of an Australian butterfly, the common brown (Heteronympha merope). We show that, with wings held open, heat lost through convection is reduced while heat gained through radiation is simultaneously maximised. These responses have been incorporated into a biophysical model that accurately predicts the core-body temperature of basking specimens in the field, providing a powerful tool to explore how climate constrains the distribution and abundance of basking butterflies.

摘要

变温动物通常依靠行为体温调节将核心体温提升至高于周围环境的温度。蝴蝶能够通过在晒太阳时改变身体姿势和位置做到这一点,然而实现这种调节的具体机制在不同物种间存在差异。翅膀的作用尤其难以描述,围绕它们是用于减少对流热损失还是使通过辐射获得的热量最大化存在不确定性。对这些过程影响核心体温程度的表征将为一个物种的热敏感性和形态特征的进化方式提供见解。我们进行了野外和实验室测量,以评估晒太阳姿势如何影响澳大利亚一种名为普通褐蝶(Heteronympha merope)的蝴蝶的核心体温。我们发现,翅膀张开时,通过对流散失的热量减少,同时通过辐射获得的热量同时最大化。这些反应已被纳入一个生物物理模型,该模型能准确预测野外晒太阳标本的核心体温,为探索气候如何限制晒太阳蝴蝶的分布和数量提供了一个有力工具。

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