School of Life and Environmental Sciences A08 , University of Sydney , New South Wales 2006 , Australia.
School of Biology , University of St Andrews , St Andrews , UK.
R Soc Open Sci. 2016 Jun 29;3(6):160316. doi: 10.1098/rsos.160316. eCollection 2016 Jun.
Local specialization can be advantageous for individuals and may increase the resilience of the species to environmental change. However, there may be trade-offs between morphological responses and physiological performance and behaviour. Our aim was to test whether habitat-specific morphology of stickleback (Gasterosteus aculeatus) interacts with physiological performance and behaviour at different salinities. We rejected the hypothesis that deeper body shape of fish from habitats with high predation pressure led to decreases in locomotor performance. However, there was a trade-off between deeper body shape and muscle quality. Muscle of deeper-bodied fish produced less force than that of shallow-bodied saltmarsh fish. Nonetheless, saltmarsh fish had lower swimming performance, presumably because of lower muscle mass overall coupled with smaller caudal peduncles and larger heads. Saltmarsh fish performed better in saline water (20 ppt) relative to freshwater and relative to fish from freshwater habitats. However, exposure to salinity affected shoaling behaviour of fish from all habitats and shoals moved faster and closer together compared with freshwater. We show that habitat modification can alter phenotypes of native species, but local morphological specialization is associated with trade-offs that may reduce its benefits.
局部特化对个体可能是有利的,并且可能增加物种对环境变化的适应能力。然而,形态反应和生理表现和行为之间可能存在权衡。我们的目的是测试棘鱼(Gasterosteus aculeatus)的特定栖息地形态是否与不同盐度下的生理表现和行为相互作用。我们拒绝了这样的假设,即来自捕食压力较高的栖息地的鱼类更深的体型会导致运动性能下降。然而,更深的体型和肌肉质量之间存在权衡。深体鱼的肌肉产生的力小于浅体盐沼鱼的肌肉。尽管如此,盐沼鱼的游泳性能较低,可能是因为整体肌肉质量较低,加上尾柄较小和头部较大。与淡水相比,盐沼鱼在咸水中(20 ppt)的表现更好,与来自淡水栖息地的鱼类相比也是如此。然而,盐分暴露会影响所有栖息地鱼类的群体行为,与淡水相比,鱼群游动更快,彼此之间更接近。我们表明,栖息地的改变可以改变本地物种的表型,但局部形态特化与权衡有关,这可能会降低其益处。