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Why Small Is Beautiful: Wing Colour Is Free from Thermoregulatory Constraint in the Small Lycaenid Butterfly Polyommatus icarus

机译:为什么小才是美丽的:翅膀的颜色不受小型Lycaenid蝴蝶Polyommatus icarus的体温调节约束

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摘要

We examined the roles of wing melanisation, weight, and basking posture in thermoregulation in Polyommatus Icarus, a phenotypically variable and protandrous member of the diverse Polyommatinae (Lycaenidae). Under controlled experimental conditions, approximating to marginal environmental conditions for activity in the field (= infrequent flight, long duration basking periods), warming rates are maximised with fully open wings and maximum body temperatures are dependent on weight. Variation in wing melanisation within and between sexes has no effect on warming rates; males and females which differ in melanisation had similar warming rates. Posture also affected cooling rates, consistent with cooling being dependent on convective heat loss. We hypothesise that for this small sized butterfly, melanisation has little or no effect on thermoregulation. This may be a factor contributing to the diversity of wing colours in the Polyommatinae. Because of the importance of size for thermoregulation in this small butterfly, requirements for attaining a suitable size to confer thermal stability in adults may also be a factor influencing larval feeding rates, development time and patterns of voltinism. Our findings indicate that commonly accepted views of the importance of melanisation, posture and size to thermoregulation, developed using medium and large sized butterflies, are not necessarily applicable to small sized butterflies.
机译:我们检查了翼变黑,体重和取暖姿势在Polyommatus Icarus的体温调节中的作用。在受控的实验条件下,接近田间活动的边际环境条件(=不频繁飞行,长时间晒太阳),完全张开的机翼可使暖化率最大化,并且最高体温取决于体重。性别内和性别之间机翼黑色素化的变化对升温速率没有影响;黑色素化不同的雄性和雌性具有相似的升温速率。姿势也影响冷却速度,这与冷却取决于对流热损失一致。我们假设对于这种小蝴蝶,黑色素化对温度调节几乎没有影响。这可能是导致多虫科中机翼颜色多样化的一个因素。由于在这只小蝴蝶中温度调节的重要性,因此获得合适尺寸以赋予成年动物热稳定性的要求也可能是影响幼虫摄食率,发育时间和兽医模式的因素。我们的发现表明,使用中型和大型蝴蝶开发出的关于黑化,姿势和体型对体温调节的重要性的公认观点不一定适用于小型蝴蝶。

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