Dubied Morgane, Montuire Sophie, Navarro Nicolas
Biogéosciences, UMR CNRS/EPHE 6282, Université Bourgogne Europe, Dijon 21000, France.
EPHE, PSL University, Paris 75014, France.
Proc Biol Sci. 2025 Jun;292(2049):20250549. doi: 10.1098/rspb.2025.0549. Epub 2025 Jun 25.
Phenotypic covariances between traits, shaped by developmental processes and functional integration, play a critical role in the response to natural selection. The influences of environmental factors (e.g. food availability and consistency) on these covariances might be particularly prevalent when functional and anatomical complexes develop. In this study, we investigate the ontogenetic development and plasticity of the craniofacial complex, focusing on the integration between skull and mandible in three rodent species: house mouse, golden hamster and Mongolian gerbil. By raising these species from birth then, post-weaning and until 63 days old, on hard and soft diets, we assess how diet-induced biomechanical stress influences coordinated changes in craniofacial shape. Using geometric morphometrics, we identify conserved ontogenetic integration patterns in craniofacial development, with species-specific differences in timing and spatial dynamics of shape changes. We demonstrate that post-weaning dietary variation modulates the coordination between skull and mandible development. Our results emphasize the role of mechanical stress in shaping craniofacial morphology, suggesting that plastic mechanisms can serve as an adaptative and evolutionary lever to respond to food availability while preserving a functional craniofacial complex. Moreover, these mechanisms may play a role in integrating complex signals of divergence between evolutionary pools in the craniofacial complex.
由发育过程和功能整合塑造的性状之间的表型协方差,在对自然选择的响应中起着关键作用。当功能和解剖复合体发育时,环境因素(如食物可用性和一致性)对这些协方差的影响可能尤为普遍。在本研究中,我们调查了颅面复合体的个体发育和可塑性,重点关注家鼠、金黄仓鼠和长爪沙鼠这三种啮齿动物的头骨与下颌骨之间的整合。通过从出生起、断奶后直至63日龄,将这些物种饲养在硬质和软质饮食条件下,我们评估了饮食诱导的生物力学应激如何影响颅面形状的协调变化。使用几何形态测量学,我们识别出颅面发育中保守的个体发育整合模式,在形状变化的时间和空间动态方面存在物种特异性差异。我们证明断奶后的饮食变化会调节头骨与下颌骨发育之间的协调性。我们的结果强调了机械应力在塑造颅面形态中的作用,表明可塑性机制可作为一种适应性和进化杠杆,在保持功能性颅面复合体的同时应对食物可用性。此外,这些机制可能在整合颅面复合体中进化池之间的复杂分化信号方面发挥作用。