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埋葬虫(葬甲属:鞘翅目:埋葬甲科)的体温调节:体型、形态和环境温度的影响

Temperature regulation in burying beetles (Nicrophorus spp.: Coleoptera: Silphidae): effects of body size, morphology and environmental temperature.

作者信息

Merrick Melissa J, Smith Rosemary J

机构信息

Department of Biological Sciences, Idaho State University, Pocatello, ID 83209-8007, USA.

出版信息

J Exp Biol. 2004 Feb;207(Pt 5):723-33. doi: 10.1242/jeb.00807.

Abstract

This study compares the thermoregulatory ability of three species of burying beetle (Coleoptera: Silphidae: Nicrophorus hybridus, Nicrophorus guttula and Nicrophorus investigator) that vary significantly in body size. It also explores possible mechanisms for temperature regulation in burying beetles, including physiological and behavioral thermoregulatory strategies, and the influence of environmental temperatures on body temperature and activity times. We measured beetle thoracic and abdominal temperatures before and after short (<5 s) flights, and thoracic temperature during sustained, tethered flights and following flight in the field. We calculated two measures of thermoregulatory ability: the slope of post-flight thoracic temperature against ambient air temperature and the slope of post-flight thoracic temperature against operative flight temperature. Thoracic temperatures following flight were significantly higher than abdominal temperatures, and the largest species, N. hybridus, was determined to be the better thermoregulator, with regression slopes closer to zero (0.315-0.370) than N. guttula (0.636-0.771) or N. investigator (0.575-0.610). We also examined the roles that insulation, wing loading, physiological heat transfer, basking and perceived environmental temperature play on temperature regulation and activity times in Nicrophorus: This study shows that body size, morphological features, such as wing loading and insulation, and perceived environmental temperatures affect thermoregulation and activity times in burying beetles.

摘要

本研究比较了三种体型差异显著的埋葬虫(鞘翅目:埋葬虫科:杂种埋葬虫、点滴埋葬虫和调查埋葬虫)的体温调节能力。研究还探讨了埋葬虫体温调节的可能机制,包括生理和行为体温调节策略,以及环境温度对体温和活动时间的影响。我们测量了甲虫在短时间(<5秒)飞行前后的胸部和腹部温度,以及在持续、系留飞行期间和野外飞行后的胸部温度。我们计算了两种体温调节能力的指标:飞行后胸部温度相对于环境空气温度的斜率,以及飞行后胸部温度相对于有效飞行温度的斜率。飞行后的胸部温度显著高于腹部温度,体型最大的杂种埋葬虫被确定为更好的体温调节者,其回归斜率(0.315 - 0.370)比点滴埋葬虫(0.636 - 0.771)或调查埋葬虫(0.575 - 0.610)更接近零。我们还研究了隔热、翼载荷、生理热传递、晒太阳以及感知环境温度在埋葬虫体温调节和活动时间方面所起的作用:本研究表明,体型、形态特征(如翼载荷和隔热)以及感知环境温度会影响埋葬虫的体温调节和活动时间。

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