生命阶段温度对彩蝶形态和飞行行为的影响(Vanessa cardui)。

IF 3.4 1区 生物学 Q2 ECOLOGY Movement Ecology Pub Date : 2024-12-03 DOI:10.1186/s40462-024-00516-3
Sarah P Mesler, Karen E Mabry
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引用次数: 0

摘要

背景:随着人为气候变化的持续,人们对生物如何受到高温的影响越来越感兴趣,包括动物如何对温度升高做出行为反应。运动行为是特别相关的,因为一个物种转移其范围的能力隐含地依赖于运动能力和动机。温度可以通过体温的升高直接影响变温动物的运动行为,也可以通过对生理和形态特征的温度依赖效应间接影响变温动物的运动行为。方法:研究了不同环境温度对彩蝶幼虫和成虫两个生命阶段体型和运动行为的影响。我们在“低”(24°C)或“高”(28°C)的温度下饲养彩绘的女士。在羽化时,我们在竞技场测试中评估了飞行行为。我们采用全因子实验设计,在每种饲养处理中,有一半的成虫在“低”或“高”温度下进行测试。我们测量了成人的体型,包括翼展,并从录像中确定了飞行速度、距离和持续时间。结果:发育过程中温度越高的成虫体型越大。我们记录了饲养x测试温度对飞行行为的相互作用:出乎意料的是,最快的蝴蝶是那些在饲养和测试之间经历温度变化的蝴蝶,无论是升高还是降低。经历过相同热环境的个体飞得更慢,但飞行时间更长,距离更远。我们没有发现体型本身对飞行的影响。结论:我们得出的结论是,关于生物体如何对变暖条件作出反应,“匹配”热环境在生命阶段的潜在作用尚未得到充分的研究。
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Effects of temperature experienced across life stages on morphology and flight behavior of painted lady butterflies (Vanessa cardui).

Background: With ongoing anthropogenic climate change, there is increasing interest in how organisms are affected by higher temperatures, including how animals respond behaviorally to increasing temperatures. Movement behavior is especially relevant, as the ability of a species to shift its range is implicitly dependent upon movement capacity and motivation. Temperature may influence movement behavior of ectotherms both directly, through an increase in body temperature, and indirectly, through temperature-dependent effects on physiological and morphological traits.

Methods: We investigated the influence of ambient temperature during two life stages, larval and adult, on body size and movement behavior of the painted lady butterfly (Vanessa cardui). We reared painted ladies to emergence at either a "low" (24 °C) or "high" (28 °C) temperature. At eclosion, we assessed flight behavior in an arena test. We used a full factorial experimental design in which half of the adults that emerged from each rearing treatment were tested at either the "low" or "high" temperature. We measured adult body size, including wingspan, and determined flight speed, distance, and duration from video recordings.

Results: Adult butterflies that experienced the higher temperature during development were larger. We documented an interaction of rearing x testing temperature on flight behavior: unexpectedly, the fastest butterflies were those who experienced a change in temperature, whether an increase or decrease, between rearing and testing. Individuals that experienced matching thermal environments flew more slowly, but for more time and covering more distance. We found no influence of body size per se on flight.

Conclusions: We conclude that the potential role of "matching" thermal environments across life stages has been underinvestigated with regard to how organisms may respond to warming conditions.

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来源期刊
Movement Ecology
Movement Ecology Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.60
自引率
4.90%
发文量
47
审稿时长
23 weeks
期刊介绍: Movement Ecology is an open-access interdisciplinary journal publishing novel insights from empirical and theoretical approaches into the ecology of movement of the whole organism - either animals, plants or microorganisms - as the central theme. We welcome manuscripts on any taxa and any movement phenomena (e.g. foraging, dispersal and seasonal migration) addressing important research questions on the patterns, mechanisms, causes and consequences of organismal movement. Manuscripts will be rigorously peer-reviewed to ensure novelty and high quality.
期刊最新文献
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