Deciphering the morphological variation and its ontogenetic dynamics in the Late Devonian conodont Icriodus alternatus

IF 1.9 4区 地球科学 Q1 PALEONTOLOGY
Fossil Record Pub Date : 2022-02-07 DOI:10.3897/fr.25.80211
C. Girard, Anne‐Lise Charruault, Thomas Gluck, C. Corradini, S. Renaud
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引用次数: 2

Abstract

Identification of relevant taxonomic and evolutionary units is a recurrent issue in the fossil record, and all the more for ancient fossils devoid of modern equivalents such as conodonts. Extensive morphological variation has often led to the description of numerous species, subspecies or morphotypes, which may correspond to end-member morphologies reached through ontogeny. The platform elements of the Late Devonian conodont species Icriodus alternatus were characterized by rows of denticles coming into occlusion between opposite elements; each element grew by the incremental addition of lamellae and by the addition of successive triads during ontogeny. During the late Frasnian and the early Famennian, the important morphological variation within this species led to the description of three subspecies. An extensive sample of early Famennian Icriodus alternatus was quantified using 2D biometric measurements and denticle counts on 2D pictures, showing that the subspecies mainly differed in their size range but not in their general morphology. A 3D morphometric analysis was further performed on a subsample to characterize the shape of the ontogenetically older part of the elements. During ontogeny, early valleys between denticles tended to be filled, and the asymmetry between the inner and outer side of the element increased. These ontogenetic trends are responsible for the morphologies formerly described as the subspecies Ic. alt. mawsonae and Ic. alt. helmsi. Slight discrepancies between temporal ranges of the subspecies may be achieved through variations in range of size reached by the elements as a response to environmental changes. Disparity along ontogeny seems to follow an “hourglass model” suggesting a shift from relatively loose developmental constraints to a pattern of growth modulated by functional constraints during occlusion.
解读晚泥盆纪牙形石Icriodus alternatus的形态变异及其个体发生动力学
相关分类和进化单元的识别是化石记录中反复出现的问题,尤其是对于缺乏现代同类的古代化石,如牙形石。广泛的形态变异通常导致对许多物种、亚种或形态类型的描述,这些物种、亚种和形态类型可能对应于通过个体发育达到的末端成员形态。晚泥盆纪牙形石物种Icriodus alternatus的平台元素的特征是在相对元素之间形成一排排小齿;每个元素在个体发育过程中通过增加片层和增加连续的三联体而生长。在Framannian晚期和Famennian早期,该物种内部的重要形态变化导致了对三个亚种的描述。使用2D生物特征测量和2D图片上的小齿计数对早期法曼尼亚交流冰藻的大量样本进行了量化,表明该亚种主要在大小范围上不同,但在总体形态上没有差异。对子样本进一步进行了3D形态计量分析,以表征元素个体发育较老部分的形状。在个体发育过程中,小齿之间的早期山谷往往被填满,元素内侧和外侧之间的不对称性增加。这些个体发生趋势是以前被描述为Ic亚种的形态的原因。替代mawsonae和Ic。alt.helmsi。亚种的时间范围之间的微小差异可以通过元素对环境变化的响应而达到的大小范围的变化来实现。个体发育过程中的差异似乎遵循“沙漏模型”,这表明在闭塞过程中,从相对宽松的发育约束转变为由功能约束调节的生长模式。
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来源期刊
Fossil Record
Fossil Record PALEONTOLOGY-
CiteScore
3.60
自引率
7.10%
发文量
18
审稿时长
14 weeks
期刊介绍: Fossil Record (FR) is the palaeontological journal of the Museum für Naturkunde Berlin. This journal was founded in 1998 under the name Mitteilungen aus dem Museum für Naturkunde Berlin, Geowissenschaftliche Reihe and appears with two issues each year. Fossil Record publishes original papers in all areas of palaeontology including the taxonomy and systematics of fossil organisms, biostratigraphy, palaeoecology, and evolution. All taxonomic groups are treated, including invertebrates, microfossils, plants, and vertebrates.
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