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Evolution of the feeding mechanism in primitive actionopterygian fishes: A functional anatomical analysis of Polypterus, Lepisosteus, and Amia.原始辐鳍鱼类摄食机制的演化:多鳍鱼、雀鳝和弓鳍鱼的功能解剖学分析
J Morphol. 1980 Mar;163(3):283-317. doi: 10.1002/jmor.1051630305.
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Kinetics of tongue projection in Ambystoma tigrinum: Quantitative kinematics, muscle function, and evolutionary hypotheses.虎纹钝口螈舌投射的动力学:定量运动学、肌肉功能及进化假说
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Kinematics of the jaw and hyolingual apparatus during feeding in Caiman crocodilus.凯门鳄进食时颌部及舌骨舌肌器官的运动学
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Hyoid morphology and movements relative to abducting forces during feeding in Astatotilapia elegans (Teleostei: Cichlidae).秀丽非鲫(硬骨鱼纲:丽鱼科)摄食过程中与外展力相关的舌骨形态及运动
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THE EVOLUTION OF TETRAPOD FEEDING BEHAVIOR: KINEMATIC HOMOLOGIES IN PREY TRANSPORT.四足动物摄食行为的演化:猎物运输中的运动同源性
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Functional anatomy and kinematics of the oral jaw system during terrestrial feeding in Periophthalmus barbarus.弹涂鱼(Periophthalmus barbarus)陆地摄食时口腔颌系统的功能解剖与运动学
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Vertebrate land invasions-past, present, and future: an introduction to the symposium.脊椎动物的陆地入侵——过去、现在和未来:研讨会介绍。
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Earliest Carboniferous tetrapod and arthropod faunas from Scotland populate Romer's Gap.苏格兰最早的石炭纪四足动物和节肢动物群填补了罗默间断层。
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一种利用其具有流体动力学特性的舌头在陆地上觅食的鱼。

A fish that uses its hydrodynamic tongue to feed on land.

作者信息

Michel Krijn B, Heiss Egon, Aerts Peter, Van Wassenbergh Sam

机构信息

Department of Biology, Universiteit Antwerpen, Antwerp 2610, Belgium

Department of Biology, Universiteit Antwerpen, Antwerp 2610, Belgium Institute of Systematic Zoology and Evolutionary Biology, Friedrich-Schiller-University Jena, Jena 07743, Germany.

出版信息

Proc Biol Sci. 2015 Apr 22;282(1805). doi: 10.1098/rspb.2015.0057.

DOI:10.1098/rspb.2015.0057
PMID:25788596
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4389620/
Abstract

To capture and swallow food on land, a sticky tongue supported by the hyoid and gill arch skeleton has evolved in land vertebrates from aquatic ancestors that used mouth-cavity-expanding actions of the hyoid to suck food into the mouth. However, the evolutionary pathway bridging this drastic shift in feeding mechanism and associated hyoid motions remains unknown. Modern fish that feed on land may help to unravel the physical constraints and biomechanical solutions that led to terrestrialization of fish-feeding systems. Here, we show that the mudskipper emerges onto land with its mouth cavity filled with water, which it uses as a protruding and retracting 'hydrodynamic tongue' during the initial capture and subsequent intra-oral transport of food. Our analyses link this hydrodynamic action of the intra-oral water to a sequence of compressive and expansive cranial motions that diverge from the general pattern known for suction feeding in fishes. However, the hyoid motion pattern showed a remarkable resemblance to newts during tongue prehension. Consequently, although alternative scenarios cannot be excluded, hydrodynamic tongue usage may be a transitional step onto which the evolution of adhesive mucosa and intrinsic lingual muscles can be added to gain further independence from water for terrestrial foraging.

摘要

为了在陆地上捕捉和吞咽食物,陆地脊椎动物从水生祖先那里进化出了由舌骨和鳃弓骨骼支撑的粘性舌头,水生祖先利用舌骨的口腔扩张动作将食物吸入口中。然而,连接这种摄食机制的剧烈转变和相关舌骨运动的进化途径仍然未知。在陆地上觅食的现代鱼类可能有助于揭示导致鱼类摄食系统陆地化的物理限制和生物力学解决方案。在这里,我们表明弹涂鱼上岸时口腔充满水,在最初捕捉食物和随后在口腔内运输食物的过程中,它将水用作伸出和缩回的“流体动力舌”。我们的分析将口腔内水的这种流体动力作用与一系列压缩和扩张的颅骨运动联系起来,这些运动与鱼类吸力摄食的一般模式不同。然而,在舌头抓取过程中,舌骨运动模式与蝾螈非常相似。因此,尽管不能排除其他情况,但使用流体动力舌可能是一个过渡步骤,在这个步骤上可以增加粘性粘膜和内在舌肌的进化,以在陆地觅食时进一步摆脱对水的依赖。