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首页> 外文期刊>The Journal of Experimental Biology >Sensing the strike of a predator fish depends on the specific gravity of a prey fish
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Sensing the strike of a predator fish depends on the specific gravity of a prey fish

机译:感知捕食鱼的罢工取决于捕食鱼的比重

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摘要

The ability of a predator fish to capture a prey fish depends on the hydrodynamics of the prey and its behavioral response to the predator's strike. Despite the importance of this predator-prey interaction to the ecology and evolution of a diversity of fish, it is unclear what factors dictate a fish's ability to evade capture. The present study evaluated how the specific gravity of a prey fish's body affects the kinematics of prey capture and the signals detected by the lateral line system of the prey during the strike of a suction-feeding predator. The specific gravity of zebrafish (Danio rerio) larvae was measured with high precision from recordings of terminal velocity in solutions of varying density. This novel method found that specific gravity decreased by similar to 5% (from 1.063, N=8, to 1.011, N=35) when the swim bladder inflates. To examine the functional consequences of this change, we developed a mathematical model of the hydrodynamics of prey in the flow field created by a suction-feeding predator. This model found that the observed decrease in specific gravity due to swim bladder inflation causes an 80% reduction of the flow velocity around the prey's body. Therefore, swim bladder inflation causes a substantial reduction in the flow signal that may be sensed by the lateral line system to evade capture. These findings demonstrate that the ability of a prey fish to sense a predator depends crucially on the specific gravity of the prey.
机译:捕食者捕捞猎物的能力取决于猎物的流体动力学及其对捕食者打击的行为响应。尽管这种掠食者与猎物的相互作用对鱼类的生态和进化至关重要,但尚不清楚哪些因素决定了鱼类逃避捕获的能力。本研究评估了捕食鱼的身体的比重如何影响捕食运动学,以及在吸食性捕食者撞击期间猎物的侧线系统检测到的信号。斑马鱼(Danio rerio)幼虫的比重是从不同密度溶液中的终极速度记录中高精度测定的。这种新颖的方法发现,当游泳膀胱充气时,比重下降了大约5%(从1.063,N = 8,降至1.011,N = 35)。为了检查这种变化的功能后果,我们开发了由吸食性捕食者产生的流场中猎物流体力学的数学模型。该模型发现,由于游泳膀胱膨胀引起的比重下降导致猎物周围的流速降低了80%。因此,游泳膀胱充气导致流量信号的显着减小,该流量信号可能会被侧线系统感应到从而逃避捕获。这些发现表明,捕食鱼感知捕食者的能力主要取决于猎物的比重。

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