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首页> 外文期刊>The Journal of Experimental Biology >New insights from serranid fishes on the role of trade-offs in suction-feeding diversification
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New insights from serranid fishes on the role of trade-offs in suction-feeding diversification

机译:锯齿鱼类对权衡在吸食多样化中的作用的新见解

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摘要

Suction feeding is central to prey capture in the vast majority of ray-finned fishes and has been well studied from a detailed, mechanistic perspective. Several major trade-offs are thought to have shaped the diversification of suction-feeding morphology and behavior, and have become well established in the literature. We revisited several of these expectations in a study of prey capture morphology and kinematics in 30 species of serranid fishes, a large, ecologically variable group that exhibits diverse combinations of suction and forward locomotion. We find that: (1) diversity among species in the morphological potential to generate suction changes drastically across the range of attack speeds that species use, with all species that use high-speed attacks having low capacity to generate suction, whereas slow-speed attackers exhibit the full range of suction abilities (this pattern indicates a more complex ‘ram–suction continuum’ than previously recognized); (2) there is no trade-off between the mechanical advantage of the lower jaw opening lever and the speed of jaw depression, revealing that this simple interpretation of lever mechanics fails to predict kinematic diversity; (3) high-speed attackers show increased cranial excursions, potentially to compensate for a decrease in accuracy; (4) the amount of jaw protrusion is positively related to attack speed, but not suction capacity; and (5) a principal component analysis revealed three significant multivariate axes of kinematic variation among species. Two of the three axes were correlated with the morphological potential to generate suction, indicating important but complex relationships between kinematics and suction potential. These results are consistent with other recent studies that show that trade-offs derived from simple biomechanical models may be less of a constraint on the evolutionary diversification of fish feeding systems than previously thought.
机译:吸食是绝大多数射线鳍鱼类捕获猎物的关键,并且已经从详细的机械角度进行了深入研究。人们认为,几个主要的折衷决定了吸食形态和行为的多样化,并且在文献中已得到充分确立。我们在对30种Serranid鱼类的猎物捕获形态和运动学的研究中重新审视了这些期望中的几种,这是一个大型的,生态上可变的群体,表现出吸力和向前运动的各种组合。我们发现:(1)在物种产生吸力的形态学潜力之间的多样性在物种使用的攻击速度范围内急剧变化,所有使用高速攻击的物种都具有低吸力能力,而慢速攻击者表现出全方位的抽吸能力(该模式表明比以前公认的更为复杂的“冲压-抽吸连续体”); (2)下颚张开杠杆的机械优势与颚的下沉速度之间没有权衡,这表明杠杆力学的这种简单解释无法预测运动学多样性; (3)高速攻击者的颅骨偏移增加,有可能弥补准确性的下降; (4)颌骨突出量与攻击速度呈正相关,与吸力无关。 (5)主成分分析揭示了物种之间运动学变化的三个重要的多元轴。三个轴中的两个与产生吸力的形态势相关,表明运动学和吸力之间重要但复杂的关系。这些结果与其他最近的研究一致,这些研究表明,从简单的生物力学模型得出的取舍可能比以前认为的对鱼类饲养系统的进化多样化的约束要少。

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