蜘蛛捕食攻击的颅骨运动学和猎物类型影响。

IF 3.5 1区 生物学 Q1 BIOLOGY
Katrina R Whitlow, Callum F Ross, Mark W Westneat
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引用次数: 0

摘要

脊椎动物捕获猎物的生物力学和运动学变异性已经得到了广泛的研究,有证据表明在许多分类群中存在多种成功捕食的策略。早期对鱼类吸食攻击的研究假设,鱼类利用一套预先编程的攻击运动学,一旦启动就不能改变。然而,最近的证据表明,硬骨鱼不仅对不同类型的猎物使用独特的攻击运动学,而且它们还会改变它们的运动学来响应试图逃跑的猎物。目前还没有明确的研究表明,非硬骨鱼的放光翅目动物是否也能根据不同的猎物类型调节攻击。在这里,我们研究了弓鳍,一种与鱼最密切相关的全骨鱼的吸力打击的运动学。我们记录了Amia捕食两种食饵鱼和蠕虫,这两种类型的活猎物在逃避上不同,使用x射线重建运动形态。我们发现猎物类型对下颌张开、舌骨弓凹陷和胸带运动的幅度、时间和速度有显著的影响。这些猎物类型的影响表明,调节摄食攻击的能力在放光鳍鱼中很早就进化出来了,这可能是有颌脊椎动物的祖先状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cranial kinematics and prey-type effects in Amia ocellicauda feeding strikes.

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, Amia ocellicauda, a holostean fish most closely related to gars. We recorded Amia 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.

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来源期刊
CiteScore
7.90
自引率
4.30%
发文量
502
审稿时长
1 months
期刊介绍: Proceedings B is the Royal Society’s flagship biological research journal, accepting original articles and reviews of outstanding scientific importance and broad general interest. The main criteria for acceptance are that a study is novel, and has general significance to biologists. Articles published cover a wide range of areas within the biological sciences, many have relevance to organisms and the environments in which they live. The scope includes, but is not limited to, ecology, evolution, behavior, health and disease epidemiology, neuroscience and cognition, behavioral genetics, development, biomechanics, paleontology, comparative biology, molecular ecology and evolution, and global change biology.
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