Institut des Sciences de l'Evolution de Montpellier, UMR5554, Université de Montpellier 2, Montpellier, France.
PLoS One. 2013 Sep 3;8(9):e72815. doi: 10.1371/journal.pone.0072815. eCollection 2013.
Teleost fishes exhibit wide and temporally stable inter-individual variation in a suite of aerobic and anaerobic locomotor traits. One mechanism that could allow such variation to persist within populations is the presence of tradeoffs between aerobic and anaerobic performance, such that individuals with a high capacity for one type of performance have a reduced capacity for the other. We investigated this possibility in European seabass Dicentrarchuslabrax, each measured for a battery of indicators of maximum locomotor performance. Aerobic traits comprised active metabolic rate, aerobic scope for activity, maximum aerobic swimming speed, and stride length, using a constant acceleration test. Anaerobic traits comprised maximum speed during an escape response, maximum sprint speed, and maximum anaerobic burst speed during constant acceleration. The data provided evidence of significant variation in performance among individuals, but there was no evidence of any trade-offs among any traits of aerobic versus anaerobic swimming performance. Furthermore, the anaerobic traits were not correlated significantly among each other, despite relying on the same muscular structures. Thus, the variation observed may reflect trade-offs with other morphological, physiological or behavioural traits.
硬骨鱼类表现出一系列有氧和无氧运动特征的广泛且具有时间稳定性的个体间差异。一种可以使这种差异在种群内持续存在的机制是有氧和无氧性能之间存在权衡,即具有高一种性能能力的个体对另一种性能的能力降低。我们在欧洲鲈鱼(Dicentrarchus labrax)中研究了这种可能性,对一系列最大运动性能指标进行了测量。使用恒加速度测试,有氧特征包括主动代谢率、活动的有氧范围、最大有氧游泳速度和步幅。无氧特征包括逃避反应时的最大速度、最大冲刺速度和恒加速度时的最大无氧爆发速度。数据提供了个体之间表现出显著差异的证据,但没有任何证据表明有氧与无氧游泳性能的任何特征之间存在权衡。此外,尽管依赖于相同的肌肉结构,但无氧特征彼此之间没有显著相关。因此,观察到的变异可能反映了与其他形态、生理或行为特征的权衡。