首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Sun-basking fish benefit from body temperatures that are higher than ambient water ambient water
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Sun-basking fish benefit from body temperatures that are higher than ambient water ambient water

机译:太阳晒的鱼类受益于高于环境水环境水的身体温度

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In terrestrial environments, cold-blooded animals can attain higher body temperatures by sun basking, and thereby potentially benefit from broader niches, improved performance and higher fitness. The higher heat capacity and thermal conductivity of water compared with air have been universally assumed to render heat gain from sun basking impossible for aquatic ectotherms, such that their opportunities to behaviourally regulate body temperature are largely limited to choosing warmer or colder habitats. Here we challenge this paradigm. Using physical models we first show that submerged objects exposed to natural sunlight attain temperatures in excess of ambient water. We next demonstrate that free-ranging carp (Cyprinus carpio) can increase their body temperature during aquatic sun basking close to the surface. The temperature excess gained by basking was larger in dark than In pale individuals, Increased with behavioural boldness, and was associated with faster growth. Overall, our results establish aquatic sun basking as a novel ecologically significant mechanism for thermoregulation in fish. The discovery of this previously overlooked process has practical implications for aquaculture, offers alternative explanations for behavioural and phenotypic adaptations, will spur future research in fish ecology, and calls for modifications of models concerning climate change impacts on biodiversity in marine and freshwater environments.
机译:在陆地环境中,冷血动物可以通过阳光晒处理达到更高的身体温度,从而可能从更广泛的利基,改善性能和更高的健身中受益。与空气相比,水相比的较高的热容量和导热率已经普遍认为,从太阳晒太阳的太阳晒太阳,使得它们的行为调节体温的机会主要限于选择温暖或更冷的栖息地。在这里,我们挑战这个范式。使用物理模型我们首先显示暴露于自然阳光的浸没物体达到过量的环境水。我们下一步证明自由范围的鲤鱼(Cyprinus carpio)可以在水上阳光下靠近表面时增加其体温。通过烟雾获得的温度在黑暗中比苍白的个体较大,随着行为粗糙度而增加,并且与更快的增长有关。总体而言,我们的结果建立了水生阳,作为鱼类热调节的新型生态显着的机制。这一先前被忽视的过程的发现具有对水产养殖的实际影响,提供了行为和表型适应的替代解释,将在鱼类生态学中刺激未来的研究,并要求对海洋和淡水环境中生物多样性的气候变化影响的模型进行修改。

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