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首页> 外文期刊>The Journal of Experimental Biology >An integrative modeling approach to elucidate suction-feeding performance
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An integrative modeling approach to elucidate suction-feeding performance

机译:阐明吸料性能的综合建模方法

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Research on suction-feeding performance has mostly focused on measuring individual underlying components such as suction pressure, flow velocity, ram or the effects of suction-induced forces on prey movement during feeding. Although this body of work has advanced our understanding of aquatic feeding, no consensus has yet emerged on how to combine all of these variables to predict prey-capture performance. Here, we treated the aquatic predator-prey encounter as a hydrodynamic interaction between a solid particle (representing the prey) and the unsteady suction flows around it, to integrate the effects of morphology, physiology, skull kinematics, ram and fluid mechanics on suction-feeding performance. We developed the suction-induced force-field (SIFF) model to study suction-feeding performance in 18 species of centrarchid fishes, and asked what morphological and functional traits underlie the evolution of feeding performance on three types of prey. Performance gradients obtained using SIFF revealed that different trait combinations contribute to the ability to feed on attached, evasive and (strain-sensitive) zooplanktonic prey because these prey types impose different challenges on the predator. The low overlap in the importance of different traits in determining performance also indicated that the evolution of suction-feeding ability along different ecological axes is largely unconstrained. SIFF also yielded estimates of feeding ability that performed better than kinematic traits in explaining natural patterns of prey use. When compared with principal components describing variation in the kinematics of suction-feeding events, SIFF output explained significantly more variation in centrarchid diets, suggesting that the inclusion of more mechanistic hydrodynamic models holds promise for gaining insight into the evolution of aquatic feeding performance.
机译:关于吸食性能的研究主要集中在测量各个单独的基本组成部分,例如吸食压力,流速,撞锤或吸力对喂食过程中猎物运动的影响。尽管这项工作提高了我们对水产喂养的理解,但是在如何结合所有这些变量来预测捕捞性能方面尚未达成共识。在这里,我们将水生食肉动物与猎物的相遇视为固体颗粒(代表猎物)与周围不稳定吸力之间的流体动力相互作用,以整合形态学,生理学,头骨运动学,撞锤和流体力学对吸力的影响。饲养性能。我们开发了吸力诱导力场(SIFF)模型来研究在18种中心线鱼类中的吸食性能,并询问哪些形态和功能性状是三种捕食者的摄食性能演变的基础。使用SIFF获得的性能梯度表明,不同的性状组合有助于以附着的,逃避的和(应变敏感的)浮游动物为食,因为这些猎物类型对食肉动物造成了不同的挑战。不同性状在确定性能方面重要性的低重叠也表明,沿不同生态轴的吸食能力的演变在很大程度上不受限制。 SIFF还提供了对进食能力的估计,在解释自然猎物使用方式方面,其进食能力优于运动学特征。与描述吸食性运动学变化的主要成分进行比较时,SIFF的输出解释了中心粪便日粮的显着变化,这表明包含更多的机械水动力模型有望获得对水生食性演变的了解。

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