异速滴定
牙形刺
形态计量学
古生物学
地质学
泥盆纪
环境变化
生态形态学
生物
生态学
沉积岩
形态学(生物学)
强迫(数学)
晚泥盆纪灭绝
高原(数学)
序列(生物学)
生态系统
四足动物(结构)
无脊椎动物
生态演替
沉积沉积环境
水深测量
相
水柱
脊椎动物
鉴定(生物学)
痕迹化石
膨胀的
形状分析(程序分析)
弹性鳃亚纲
作者
Félix Nesme,Catherine Girard,Michael M. Joachimski,Carlo Corradini,Jean-Jacques Cornee,Sabrina Renaud
摘要
Abstract The morphology of feeding structures is driven by the nature of the food source, itself being influenced by environmental factors. However, food sources may change with growth, leading to potentially complex interactions between ontogenetic trajectories and environmental variation. This study investigates these interactions using a geometric morphometric analysis of the platform shape of P 1 elements of Polygnathus designated here as ‘unornamented’, from a post‐Hangenberg succession from the Montagne Noire. Allometric trajectories vary along the record, with variable shapes for small elements but a common adult morphology. The specimens from each stratigraphic level were split into three size classes to assess environmental forcing. The shape of the small‐sized class varied primarily with conodont biofacies, the medium‐size class with sedimentary microfacies, while the large‐size class followed a random walk unrelated to environmental variation, with little support for a role of palaeotemperatures driving morphological evolution. These results agree with a change of diet during ontogeny, and with an increase of functional constraints related to occlusion in large elements. Biofacies and microfacies trace different signatures of bathymetry and distance from the coast, suggesting that post‐Hangenberg unornamented Polygnathus varied in their exploitation of the water column through ontogeny. Finally, the high morphological disparity of small elements suggests fewer feeding specialization constraints in this size class, making small specimens more susceptible to environmental influences than large ones. These results showcase how the complex interactions between allometric trajectories and changes in feeding behaviour may render the identification of underlying patterns of environmental forcing difficult.
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