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首页> 外文期刊>Earth and environmental science transactions of the Royal Society of Edinburgh >Feeding structures in the ray-finned fish Eurynotus crenatus (Actinopterygii: Eurynotiformes): implications for trophic diversification among Carboniferous actinopterygians
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Feeding structures in the ray-finned fish Eurynotus crenatus (Actinopterygii: Eurynotiformes): implications for trophic diversification among Carboniferous actinopterygians

机译:在射线翅片鱼Eurynotus crenatus(Actinopterygii:Eurynotiformes)中的喂养结构:对石炭系辐射术治疗中的营养多样化的影响

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摘要

The Permo-Carboniferous eurynotiforms show conspicuous modifications to postcranial and cranial morphology relative to primitive actinopterygian conditions, and represent an important early example of functional experimentation within ray-finned fishes. Although eurynotiforms are represented by abundant articulated fossil material, the internal anatomy of the group is not well known. Microcomputed tomography (mu CT) of Eurynotus crenatus from the early Carboniferous (Visean) Wardie Shales Member of the Gullane Formation of Wardie, Scotland provides detailed information on the jaws, palate and dentition. The lower jaw is deep and bears a well-developed convex dental plate on the prearticular/coronoids. The dentary bears a dorsally directed posterior process and lacks any obvious marginal dentition. The prearticular bears a low coronoid process. Apart from the first and second dermopalatines, and a likely accessory vomer, bones of the palate are tightly sutured or fused. The upper dental plate comprises a longitudinal, concave horizontal dental surface that occludes with the convex lower toothplate, and a more vertical region consisting of anastomosing ridges. The parasphenoid has a narrow anterior corpus and a broad posterior stalk that bears a pronounced midline notch. The smooth, irregularly punctated surfaces of the dental plates are formed by closely packed teeth with conjoined crowns, providing clues to the evolution of the more monolithic toothplates of Amphicentrum from the peg-like teeth reported in the earliest and most anatomically generalised eurynotiforms. The feeding apparatus shows many qualitative and quantitative features consistent with the processing of hard prey items. Eurynotus and its relatives show the first clear example of jaw and dental structures consistent with durophagy among actinopterygians. The origin of the group in the early Carboniferous is suggestive of diversification into newly available ecological roles in the aftermath of the en
机译:相对于原始肌动术条件,渗透性肠道肠道表现出对衰退和颅骨形态的显着修饰,并代表了射线翅片鱼类内功能实验的重要提高例子。虽然EURYNOTINGS由丰富的铰接化石材料代表,但该组的内部解剖学不熟知。苏格兰古甘岛牙龈形成的早期石炭系(Visean)Guarie Shales成员的微锁定断层扫描(MU CT),提供有关颌骨,口感和牙列的详细信息。下颌深深地,在预饰/冠状藤上发达凸起的凸牙板。伪心承受了背面的后验过程,缺乏任何明显的边缘牙列。预刻度进行冠状圆锥体积。除了第一和第二个Dermopalatines和一个可能的辅助呕吐物外,口感的骨骼紧紧缝合或融合。上牙板包括纵向,凹水平的牙齿表面,其封闭凸起的下牙板,以及由纵向脊组成的更垂直区域。偏向卵体具有狭窄的前茎和宽的后茎,呈现明显的中线凹口。牙科板的光滑,不规则的刺破于牙科板的紧密封装牙齿形成,与连体冠部紧密封装,为来自最早和最解剖学上的牙齿的牙齿的牙龈牙齿的更单片牙出的进化提供了线索。馈电装置显示出与硬猎物物品的处理一致的许多定性和定量特征。 EURYNOTUS及其亲属展示了与肌动植物中的颌骨中的颌骨和牙齿结构一致的第一例。在早期石炭系中,本集团的起源是在ZH的后果中提出多样化进入新的生态角色

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