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首页> 外文期刊>The Journal of Experimental Biology >Snout allometry in seahorses: insights on optimisation of pivot feeding performance during ontogeny
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Snout allometry in seahorses: insights on optimisation of pivot feeding performance during ontogeny

机译:海马中的鼻部异速测量法:关于个体发育过程中枢轴进给性能优化的见解

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As juvenile life-history stages are subjected to strong selection, these stages often show levels of performance approaching those of adults, or show a disproportionately rapid increase of performance with age. Although testing performance capacity in aquatic suction feeders is often problematic, in pivot feeders such as seahorses models have been proposed to estimate whether snout length is optimal to minimise the time needed to reach the prey. Here, we investigate whether the same model can also explain the snout lengths in an ontogenetic series of seahorses, explore how pivot feeding kinematics change during ontogeny, and test whether juveniles show disproportionate levels of performance. Our analysis shows that the dimensions of the snout change during ontogeny from short and broad to long and narrow. Model calculations show that the snout lengths of newborn and juvenile seahorses are nearly optimal for minimising prey reach time. However, in juveniles the centre of head rotation in the earth-bound frame of reference is located near the posterior end of the head, whereas in adults it is shifted forward and is located approximately above the eye. Modelling shows that this forward shift in the centre of rotation has the advantage of decreasing the moment of inertia and the torque required to rotate the head, but has the disadvantage of slightly increasing the time needed to reach the prey. Thus, the snout lengths of juvenile seahorses appear to be close to optimal, suggesting that they reach levels of performance close to adult levels, which illustrates the pervasive nature of selection on performance in juveniles.
机译:由于青少年的生活史阶段经历了强烈的选择,因此这些阶段通常表现出接近成年人的表现水平,或者表现出随着年龄增长而成比例的迅速增加。尽管在水生吸食器中测试性能通常是有问题的,但在诸如海马模型的枢轴喂食器中,已经提出了估计口鼻部长度是否最佳以最小化到达猎物的时间的建议。在这里,我们调查相同的模型是否也可以解释个体发育海马系列中的吻口长度,探索个体发育过程中枢轴进给运动学如何变化,并测试幼体是否表现出不成比例的水平。我们的分析表明,鼻子在个体发育过程中的大小从短而宽变到长而窄。模型计算表明,新生海马和幼年海马的吻嘴长度几乎是最佳的,可以最大程度地缩短猎物的到达时间。但是,在青少年中,地球旋转参考系中的头部旋转中心位于头部的后端附近,而在成年人中,头部向前旋转并位于眼睛上方。建模表明,旋转中心的这种前移具有减少惯性矩和旋转头部所需的扭矩的优点,但是具有稍微增加到达猎物所需时间的缺点。因此,少年海马的鼻子长度似乎接近最佳,这表明它们达到了接近成年水平的性能水平,这说明了对青少年性能的选择普遍存在。

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