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首页> 外文期刊>Journal of Morphology >Longer development provides first-feeding fish time to escape hydrodynamic constraints
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Longer development provides first-feeding fish time to escape hydrodynamic constraints

机译:更长的发展提供了第一喂鱼的时间来逃避流体动力约束

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What is the functional effect of prolonged development? By controlling for size, we quantify first-feeding performance and hydrodynamics of zebrafish and guppy offspring (5 +/- 0.5 mm in length), which differ fivefold in developmental time and twofold in ontogenetic state. By manipulating water viscosity, we control the hydrodynamic regime, measured as Reynolds number. We predicted that if feeding performance were strictly the result of hydrodynamics, and not development, feeding performance would scale with Reynolds number. We find that guppy offspring successfully feed at much greater distances to prey (1.0 vs. 02 mm) and with higher capture success (90 vs. 20%) compared with zebrafish larvae, and that feeding performance was not a result of Reynolds number alone. Flow visualization shows that zebrafish larvae produce a bow wave similar to 0.2 mm in length, and that the flow field produced during suction does not extend beyond this bow wave. Due to well-developed oral jaw protrusion, the similar-sized suction field generated by guppy offspring extends beyond the horizon of their bow wave, leading to successful prey capture from greater distances. These findings suggest that prolonged development and increased ontogenetic state provides first-feeding fish time to escape the pervasive hydrodynamic constraints (bow wave) of being small.
机译:长期发展的功能效果是什么?通过控制尺寸,我们量化了斑马鱼和愈合性后代的第一喂养性能和流体动力学(长度为5 +/- 0.5 mm),其在发育中的发育时间和双重呈现出五倍。通过操纵水粘度,我们控制流体动力学制度,测量为雷诺数。我们预测,如果饲养性能严格地,流体动力学的结果,而不是开发,饲养性能将与雷诺数扩展。我们发现,与斑马鱼幼虫相比,Guppy后代以更大的距离(1.0与02 mm)和更高的捕获成功(90 vs.20%),并且饲养性能不是单独的雷诺数的结果。流动可视化表明,斑马鱼幼虫产生类似于0.2mm的弓波,并且在抽吸期间产生的流场不会延伸超过该弓波。由于口腔下颌突出良好,孔雀鱼后代产生的类似尺寸的抽吸场延伸超出其弓波的地平线,导致从更远的距离成功的猎物捕获。这些研究结果表明,长期的发展和增加的组形状态提供了第一喂鱼时间,以逃避普遍的流体动力学约束(弓波)。

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