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进食攻击中的颅骨运动学及猎物类型效应。

Cranial kinematics and prey-type effects in feeding strikes.

作者信息

Whitlow Katrina R, Ross Callum F, Westneat Mark W

机构信息

Biology, Saint Mary's College, Notre Dame, IN, USA.

Organismal Biology and Anatomy, The University of Chicago Division of the Biological Sciences, Chicago, IL, USA.

出版信息

Proc Biol Sci. 2025 Apr;292(2045):20242542. doi: 10.1098/rspb.2024.2542. Epub 2025 Apr 23.

Abstract

Variability in the biomechanics and kinematics of prey capture in vertebrates has been studied extensively, with evidence of multiple strategies for successful feeding in many taxa. Early research into suction-feeding strikes in fishes hypothesized that fish utilize a set of pre-programmed strike kinematics that cannot be altered once initiated. However, more recent evidence has demonstrated that teleost fishes not only deploy unique strike kinematics for different prey types, but they also alter their kinematics in response to a prey item attempting to escape. It has not yet been explicitly investigated whether non-teleost actinopterygians can also modulate the strike in response to different prey types. Here, we examined the kinematics of suction strikes in bowfin, , a holostean fish most closely related to gars. We recorded feeding on both feeder fish and worms, two types of live prey differing in evasiveness, using X-ray reconstruction of moving morphology. We found significant prey-type effects on the magnitude, timing and velocity of jaw opening, hyoid arch depression and pectoral girdle motions. These prey-type effects demonstrate that the ability to modulate feeding strikes evolved early in actinopterygian fishes and is possibly the ancestral state for jawed vertebrates.

摘要

脊椎动物捕食猎物时生物力学和运动学的变异性已得到广泛研究,有证据表明许多分类群存在多种成功捕食的策略。早期对鱼类吸食式捕食攻击的研究假设,鱼类利用一组预先设定的攻击运动学模式,一旦启动就无法改变。然而,最近的证据表明,硬骨鱼不仅针对不同的猎物类型采用独特的攻击运动学模式,而且它们还会根据试图逃脱的猎物改变自身的运动学模式。非硬骨辐鳍鱼是否也能根据不同的猎物类型调节攻击,尚未得到明确研究。在此,我们研究了雀鳝(一种与雀鲷关系最为密切的全骨鱼)吸食攻击的运动学。我们使用移动形态的X射线重建技术,记录了雀鳝捕食饲料鱼和蠕虫这两种逃避能力不同的活体猎物时的情况。我们发现猎物类型对颌骨张开、舌骨弓凹陷和肩带运动的幅度、时间和速度有显著影响。这些猎物类型效应表明,调节捕食攻击的能力在辐鳍鱼类早期就已进化,并且可能是有颌脊椎动物的原始状态。

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