同温蝉与恒温蝉的比较体温调节。(同翅目:蝉科:雪蝉和绿蝉)

A F Sanborn
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引用次数: 30

摘要

野外体温测量表明,吸热蝉通过行为机制和内源性产热机制调节体温。回归分析表明,吸热动物和变温动物都具有温度调节作用。无外源热源的吸热活动蝉的体温与晒蝉的体温大致相同。Tibicen winnemanna (Davis)通过在飞行中产生的热量或在没有飞行行为的情况下通过激活飞行肌肉组织来提高体温。T. chloromerus (Walker)利用太阳辐射将体温升高到活动所需的水平。各物种的热响应与其活动模式有关,吸热的温氏甘露的最低飞行温度和遮荫温度明显低于其他物种。热滞温度似乎与环境有关,而不是与行为模式有关。蝉的恒温行为可能有助于将生殖行为从环境约束中分离出来;避免可能出现的体温调节问题;允许利用严格恒温蝉所没有的生境;减少捕食;优化广播覆盖和声音传输;并减少可能的声音干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative thermoregulation of sympatric endothermic and ectothermic cicadas (Homoptera: Cicadidae: Tibicen winnemanna and Tibicen chloromerus).

Measurements of body temperature in the field demonstrated that endothermic cicadas regulate body temperature by behavioral mechanisms as well as by endogenous heat production. Regression analysis suggests both endothermic and ectothermic species are thermoregulating. Body temperature of endothermically active cicadas without access to exogenous heat is approximately the same as the body temperature of basking cicadas. Tibicen winnemanna (Davis) raises body temperature in the field with the heat produced in flight or through the activation of the flight musculature without the act of flight. T. chloromerus (Walker) uses solar radiation to elevate body temperature to the level necessary for activity. The thermal responses of each species are related to its activity patterns with minimum flight temperature and shade-seeking temperatures significantly lower in the endothermic T. winnemanna. Heat torpor temperature appears to be related to the environment rather than behavior pattern. Endothermy in cicadas may serve to uncouple reproductive behavior from environmental constraints; to circumvent possible thermoregulatory problems; to permit the utilization of habitats unavailable to strictly ectothermic cicadas; to reduce predation; to optimize broadcast coverage and sound transmission; and to decrease possible acoustic interference.

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