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Facing the Heat: Does Desiccation and Thermal Stress Explain Patterns of Orientation in an Intertidal Invertebrate?

机译:面对热量:潮间带无脊椎动物的干燥和热应力是否解释了取向的模式?

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摘要

A key challenge for ecologists is to quantify, explain and predict the ecology and behaviour of animals from knowledge of their basic physiology. Compared to our knowledge of many other types of distribution and behaviour, and how these are linked to individual function, we have a poor level of understanding of the causal basis for orientation behaviours. Most explanations for patterns of animal orientation assume that animals will modify their exposure to environmental factors by altering their orientation. We used a keystone grazer on rocky shores, the limpet Cellana tramoserica, to test this idea. Manipulative experiments were done to evaluate whether orientation during emersion affected limpet desiccation or body temperature. Body temperature was determined from infrared thermography, a technique that minimises disturbance to the test organism. No causal relationships were found between orientation and (i) level of desiccation and (ii) their body temperature. These results add to the growing knowledge that responses to desiccation and thermal stress may be less important in modifying the behaviour of intertidal organisms than previously supposed and that thermoregulation does not always reflect patterns of animal orientation. Much of what we understand about orientation comes from studies of animals able to modify orientation over very short time scales. Our data suggests that for animals whose location is less flexible, orientation decisions may have less to do with responses to environmental factors and more to do with structural habitat properties or intrinsic individual attributes. Therefore we suggest future studies into processes affecting orientation must include organisms with differing levels of behavioural plasticity.
机译:生态学家面临的主要挑战是,根据动物的基本生理知识来量化,解释和预测动物的生态和行为。与我们对许多其他类型的分布和行为的知识以及它们如何与个人功能相关的知识相比,我们对定向行为的因果基础了解不足。关于动物定向模式的大多数解释都假设动物会通过改变其定向来改变其对环境因素的接触。我们在多岩石的海岸上使用了梯形切草机,戚Cellana tramoserica来测试这个想法。进行了操纵性实验,以评估出苗期间的方向是否会影响衣冠干燥或体温。体温由红外热成像法确定,该技术可最大程度地减少对受试生物的干扰。在取向与(i)干燥程度和(ii)体温之间没有发现因果关系。这些结果增加了人们日益增长的认识,即对干燥和热应激的反应在改变潮间生物的行为方面可能不如先前所想的重要,而且温度调节并不总是反映动物取向的模式。我们对定向的了解大部分来自对动物能够在很短的时间内改变定向的研究。我们的数据表明,对于位置较不灵活的动物,定向决策可能与对环境因素的反应关系较小,而与结构栖息地属性或固有的个体属性关系较大。因此,我们建议对影响定向过程的未来研究必须包括行为可塑性不同的生物。

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