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首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >A three‐dimensional geometric morphometric study of the development of sulcus versus shell outline in Permian neospiriferine brachiopods
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A three‐dimensional geometric morphometric study of the development of sulcus versus shell outline in Permian neospiriferine brachiopods

机译:二维几何形态学研究沟业发展与壳牌壳轮廓在二氧化体新综合素Brachiopods中

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摘要

> The morphological variation of the sulcal development and shell outline in large Permian neospiriferine brachiopods including Fasciculatia Waterhouse, 2004 is investigated using geometric morphometrics. The sulcal tongues of spiriferide brachiopods can be, in a qualitative sense, categorized into three types according to the degree of their development: short sulcal tongue, long sulcal tongue and geniculated sulcal tongue. All three types have been noted within Fasciculatia striatoparadoxa , regardless of the nature of the substrate which they originally inhabited. To quantify its morphological variation both in sulcal development and shell outline, 51 brachiopod shells were scanned with a three‐dimensional (3‐D) surface imaging device, and their 3‐D models were reconstructed. Using two landmarks and 58 semilandmarks designated on the surface of the reconstructed 3‐D models, a landmark‐based morphometric analysis was performed. Our result demonstrates a significant intraspecific variation of sulcal development in F.?striatoparadoxa and its relatives. Local environmental factors, especially the intensity of ambient water flow, are invoked as the most likely cause for this intraspecific variation. Additionally, this study also shows that there are considerable interspecific distinctions in shell outline among Fasciculatia species, independent of the high variation in the sulcal development. The strong stability of overall shell outline at species level implies a decoupled morphological development between sulcal tongue and whole shell outline. The 3‐D morphometric approach applied here demonstrates its great utility as a tool for quantifying and analysing the morphological variation of highly convex brachiopod shells.
机译: > 大型二氧化体新综合沙坡桥中硫代发育和壳体轮廓的形态变异,包括 毛筋 Waterhouse,2004年使用几何形态化学进行调查。 Spiriferide Brachiopods的硫代舌可以是根据其开发程度分为三种类型的定性意义:短硫舌,长硫舌和酸血管舌。所有三种类型都已在其中注意到 筋膜岩胸腺嘧啶毒素 ,无论它们最初居住的基材的性质如何。为了量化其在硫型发育和壳体轮廓中的形态变异,用三维(3-D)表面成像装置扫描51个Brachiopod壳,重建了它们的3-D模型。使用在重建的3-D模型的表面上指定的两个地标和58个Semilangmarks,进行了一个基于地标的形态学分析。我们的结果展示了硫型发育的显着内化变异 f.?striatoparadoxa 及其亲戚。当地环境因素,特别是环境水流的强度,被调用为这种内脏变异的最可能导致。此外,本研究还表明,壳体轮廓中存在相当大的间隙区别 毛筋 物种,独立于硫代发育的高变异。物种水平的整体壳体轮廓的强稳定性意味着硫代舌和整个壳体轮廓之间的解耦形态发展。在此应用的3-D形态测量方法显示其具有用于量化和分析高度凸桥壳的形态变化的工具的效用。

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