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首页> 外文期刊>Lethaia: An International Journal of Palaeontology and Stratigraphy >Intraspecific morphological variation of Agnostus pisiformis, a Cambrian Series 3 trilobite-like arthropod
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Intraspecific morphological variation of Agnostus pisiformis, a Cambrian Series 3 trilobite-like arthropod

机译:Angnostus pisiformis的内部形态变异,寒武纪系列3三叶虫草般节肢动物

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摘要

The study of evolution in a palaeontological context is chiefly the study of change in shape and form. This requires data sets that quantify morphology and morphological variation. Historically morphology has been described using discrete characters or more recently using various morphometric approaches. Elliptical Fourier analysis (EFA) is an approach to quantifying morphology that results in the production of large data sets of elliptical Fourier descriptors (EFDs), which are highly suitable to multivariate analysis. EFA is used in this paper to quantify the shape and describe the ontogeny of Agnostus pisiformis (Wahlenberg 1818: Nova Acta Regiae Societatis Scientiarum Upsaliensis 8, 1), a trilobite-like arthropod of Cambrian Series 3, from three coeval localities in Sweden. An ontogenetic difference was detected between geographically distant populations from Vastergotland and Skane in Sweden. These differences are probably the result of environmental dysoxic stress leading to increasing phenotypic variation. These findings illustrate the utility of EFA applied to the study of fossil organisms; permitting studies of such high resolution that multiple assemblages of the same species can be comparatively studied to achieve a more detailed understanding of their morphological and ontogenetic variation.. Agnostus pisiformis, Alum Shale, elliptical Fourier analysis, intraspecific variation, morphometrics.
机译:在古生物学环境中的进化研究主要是对形状和形式变化的研究。这需要量化形态和形态变异的数据集。历史上,使用各种形态学方法使用离散角或更新的方式描述了形态。椭圆形傅立叶分析(EFA)是一种定量形态的方法,导致生产大型数据集的椭圆形傅立叶描述符(EFDS),这非常适合于多变量分析。本文使用了EFA,以量化形状并描述令人生畏的Pisiformis(Wahlenberg 1818:Nova Acta Regiae Societatis Sciensirum Upsaliensis 8,1),这是来自瑞典的三个群体地区的寒武纪第3系列的三虫草型节肢动物。从瑞典的Vastergotland和Skane的地理位置遥远的人群之间检测到植入差异。这些差异可能是环境达体应激导致增加表型变异的结果。这些发现说明了EFA应用于化石生物研究的效用;允许研究这种高分辨率的高分辨率,可以比较研究同一物种的多个组装,以实现更详细的理解它们的形态和髓内变异.. agnostus pisiformis,alum页岩,椭圆形傅里叶分析,内部内变形,形态化学。

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