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从牙齿形态、磨损和微观结构推断鹦嘴鱼(硬骨鱼纲:鹦嘴鱼科)咽磨功能。

Inferring parrotfish (Teleostei: Scaridae) pharyngeal mill function from dental morphology, wear, and microstructure.

作者信息

Carr Andrew, Tibbetts Ian R, Kemp Anne, Truss Rowan, Drennan John

机构信息

Centre for Microscopy and Microanalysis, University of Queensland, St Lucia, Queensland 4072, Australia.

出版信息

J Morphol. 2006 Oct;267(10):1147-56. doi: 10.1002/jmor.10457.

Abstract

Morphology, occlusal surface topography, macrowear, and microwear features of parrotfish pharyngeal teeth were investigated to relate microstructural characteristics to the function of the pharyngeal mill using scanning electron microscopy of whole and sectioned pharyngeal jaws and teeth. Pharyngeal tooth migration is anterior in the lower jaw (fifth ceratobranchial) and posterior in the upper jaw (paired third pharyngobranchials), making the interaction of occlusal surfaces and wear-generating forces complex. The extent of wear can be used to define three regions through which teeth migrate: a region containing newly erupted teeth showing little or no wear; a midregion in which the apical enameloid is swiftly worn; and a region containing teeth with only basal enameloid remaining, which shows low to moderate wear. The shape of the occlusal surface alters as the teeth progress along the pharyngeal jaw, generating conditions that appear suited to the reduction of coral particles. It is likely that the interaction between these particles and algal cells during the process of the rendering of the former is responsible for the rupture of the latter, with the consequent liberation of cell contents from which parrotfish obtain their nutrients.

摘要

利用完整和切片的咽颌及牙齿的扫描电子显微镜,研究了鹦嘴鱼咽齿的形态、咬合面形貌、宏观磨损和微观磨损特征,以将微观结构特征与咽磨的功能联系起来。咽齿在下颌(第五角鳃骨)向前迁移,在上颌(成对的第三咽鳃骨)向后迁移,使得咬合面的相互作用和产生磨损的力变得复杂。磨损程度可用于定义牙齿迁移所经过的三个区域:一个包含新萌出牙齿且几乎没有磨损的区域;一个中部区域,其中顶端釉质迅速磨损;以及一个仅剩余基部釉质的牙齿区域,该区域显示低到中度磨损。随着牙齿沿着咽颌移动,咬合面的形状会发生变化,产生似乎适合减少珊瑚颗粒的条件。在前述珊瑚颗粒的研磨过程中,这些颗粒与藻类细胞之间的相互作用很可能导致后者破裂,从而使细胞内容物释放出来,鹦嘴鱼从中获取营养。

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