Hermanson Guilherme, Evers Serjoscha W
Department of Geosciences, University of Fribourg, Fribourg, Switzerland.
Swiss J Palaeontol. 2025;144(1):47. doi: 10.1186/s13358-025-00395-0. Epub 2025 Aug 5.
Ontogenetic shell shape changes of turtles are often only documented for individual species. It is currently unclear how shell shape changes during ontogeny across species, if there are common trends, and at what point in ontogeny individuals reach their adult morphology. Inspired by questions of whether some morphologies are too juvenile to be included into macroevolutionary studies of shell shape, we develop ontogenetic shell shape curves based on landmarked 3D shell shapes of turtles. Species-specific allometric shape regressions confirm that turtles show marked ontogenetic shell shape change. Geometric morphometric analysis shows that juvenile turtles have rounded shells, and ontogenetic differentiation between species increases adult turtle disparity. Disparity analysis indicates that juvenile shells across turtle clades are more similar than adult shapes, suggesting an important role of developmental constraints on early turtle shell shape, and possible adaptive post-natal ontogenetic changes that produce the observed adult shell shape disparity. Ontogenetic shell shape curves indicate when turtles converge onto adult morphologies, here quantified as 85% the distance between juvenile shape and maximum size adult shape. This happens at about 65% of the species-specific maximum carapace sizes. Sexual shell shape dimorphism is comparatively low across turtles even in the presence of pronounced sexual size dimorphism. These preliminary results provide guidance for studying shell shape macroevolution, but need to be scrutinized further in the future by data addition.
The online version contains supplementary material available at 10.1186/s13358-025-00395-0.
龟类个体发育过程中的壳形变化通常仅针对个别物种进行记录。目前尚不清楚跨物种个体发育过程中壳形如何变化,是否存在共同趋势,以及个体在发育的哪个阶段达到成年形态。受某些形态是否过于幼态而无法纳入壳形宏观进化研究这一问题的启发,我们基于龟类有标记的三维壳形绘制了个体发育壳形曲线。特定物种的异速生长形状回归证实,龟类在个体发育过程中壳形有显著变化。几何形态测量分析表明,幼龟的壳呈圆形,物种间的个体发育差异增加了成年龟的差异度。差异度分析表明,龟类各分支的幼龟壳比成年龟壳更相似,这表明发育限制对早期龟壳形状起着重要作用,以及可能存在的产后适应性个体发育变化导致了观察到的成年龟壳形状差异。个体发育壳形曲线表明龟类何时趋近于成年形态,此处量化为幼态形状与最大体型成年形态之间距离的85%。这发生在特定物种最大背甲尺寸的约65%处。即使存在明显的两性体型差异,龟类的两性壳形二态性相对较低。这些初步结果为研究壳形宏观进化提供了指导,但未来需要通过增加数据进一步审视。
在线版本包含可在10.1186/s13358-025-00395-0获取的补充材料。