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首页> 外文期刊>Zoology >Cranial movements during suction feeding in teleost fishes: Are they modified to enhance suction production?
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Cranial movements during suction feeding in teleost fishes: Are they modified to enhance suction production?

机译:硬骨鱼吸食期间的颅骨运动:是否对其进行了改良以增强吸力的产生?

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摘要

Suction is produced during prey capture by most teleost fishes. Here, we ask two questions about the functional basis of suction feeding. First, is there variation in the kinematic pattern produced by different species while suction feeding? Second, do species termed 'suction specialists' demonstrate similar modifications to their feeding behavior? We used 10 kinematic variables in a principal component analysis to identify axes of variation among 14 suction feeding teleost species (representing nine families and five orders within the Euteleostei) that demonstrate different feeding habits and habitats. MANOVA and Tukey post hoc tests were used to assess differences among species. Most species clustered together on the principal component axes, suggesting a generalized mechanism that facilitates unidirectional flow. Typically, only one species stood out as 'extreme' on each functional axis, and a species that stood out on one axis did not stand out on others. Only one species, the flatfish Pleuronichthys verticalis, an obligate benthic feeder, demonstrated modifications consistent with enhanced suction production. This species displayed a suite of changes that should enhance suction production, including large hyoid depression, large cranial rotation, and small gape. We suggest that suction performance may be greatest in such obligate benthic feeders because cranial morphology is highly modified and prey are captured from the substrate. (C) 2005 Elsevier GmbH. All rights reserved.
机译:大多数硬骨鱼类在捕获猎物时会产生吸力。在这里,我们问两个有关吸气喂食功能基础的问题。首先,在吸食时不同物种产生的运动模式是否存在变化?第二,被称为“吸食专家”的物种是否表现出对其进食行为的类似改变?我们在主成分分析中使用了10个运动学变量,以识别14种吸食硬骨鱼类(代表Euteleostei的9个科和5个阶)之间的变化轴,这些物种表现出不同的采食习性和栖息地。 MANOVA和Tukey事后检验用于评估物种之间的差异。大多数物种在主成分轴上聚集在一起,表明存在促进单向流动的通用机制。通常,在每个功能轴上只有一个物种表现为“极端”,而在一个轴上表现突出的物种则不在其他轴上表现突出。仅有一种,比目鱼Pleuronichthys verticalis,专性底栖动物,表现出与增加的吸力相一致的变种。该物种表现出一系列变化,应增强吸力产生,包括较大的舌骨凹陷,较大的颅骨旋转和较小的间隙。我们建议,在这种专性底栖动物饲养器中,抽吸性能可能是最大的,因为颅骨形态已高度改变,并且猎物被从底物捕获。 (C)2005 Elsevier GmbH。版权所有。

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