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Size-related effects and the influence of metabolic traits and morphology on swimming performance in fish

机译:尺寸相关的效果和代谢性状和形态对鱼类游泳性能的影响

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摘要

Energy metabolism fuels swimming and other biological processes. We compared the swimming performance and energy metabolism within and across eight freshwater fish species. Using swim tunnel respirometers, we measured the standard metabolic rate (SMR) and maximum metabolic rate (MMR) and calculated the critical swimming speed (Ucrit). We accounted for body size, metabolic traits, and some morphometric ratios in an effort to understand the extent and underlying causes of variation. Body mass was largely the best predictor of swimming capacity and metabolic traits within species. Moreover, we found that predictive models using total length or SMR, in addition to body mass, significantly increased the explained variation of Ucrit and MMR in certain fish species. These predictive models also underlined that, once body mass has been accounted for, Ucrit can be independently affected by total length or MMR. This study exemplifies the utility of multiple regression models to assess within-species variability. At interspecific level, our results showed that variation in Ucrit can partly be explained by the variation in the interrelated traits of MMR, fineness, and muscle ratios. Among the species studied, bleak Alburnus alburnus performed best in terms of swimming performance and efficiency. By contrast, pumpkinseed Lepomis gibbosus showed very poor swimming performance, but attained lower mass-specific cost of transport (MCOT) than some rheophilic species, possibly reflecting a cost reduction strategy to compensate for hydrodynamic disadvantages. In conclusion, this study provides insight into the key factors influencing the swimming performance of fish at both intra- and interspecific levels.
机译:能量新陈代谢燃料游泳和其他生物过程。我们比较了八种淡水鱼类内的游泳性能和能量新陈代谢。使用游泳隧道呼吸器测量仪,我们测量了标准代谢率(SMR)和最大代谢率(MMR)并计算了临界游泳速度(UCRIT)。我们占体型,代谢性状和一些形态学比率,以了解变异的程度和潜在原因。体重在很大程度上是物种内游泳能力和代谢性状的最佳预测因子。此外,我们发现使用总长度或SMR的预测模型,除了体重外,还显着增加了某些鱼类中的Ucrit和MMR的解释变化。这些预测模型还强调,一旦占体重,就可以独立影响总长度或MMR的ucrit。本研究举例说明了多元回归模型的效用,以评估物种内变异性。在三分之三的水平下,我们的结果表明,UCRIT的变异可以部分地解释MMR,细度和肌肉比率的相互关联性状的变化。在学习的物种中,勃朗伯士佛州佛罗斯在游泳表现和效率方面表现最佳。相比之下,南瓜塞氏鳞牛皮肌吉巴斯展示了非常差的游泳性能,但达到了比某些中流性物种的较低的质量特定的运输成本(MCOT),可能反映成本降低策略以补偿流体动力学缺点。总之,本研究提供了对影响鱼类和间隔和三个水平的鱼类游泳性能的关键因素的洞察力。

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