Hanot Pauline, Herrel Anthony, Guintard Claude, Cornette Raphaël
UMR 7209 Archéozoologie et Archéobotanique: Sociétés, Pratiques et Environnements (CNRS, MNHN), Muséum national d'Histoire naturelle, Sorbonne Universités, Paris, France.
UMR 7179 Mécanismes Adaptatifs et Évolution (CNRS, MNHN), Muséum national d'Histoire naturelle, Sorbonne Universités, Paris, France.
J Anat. 2018 Apr;232(4):657-673. doi: 10.1111/joa.12772. Epub 2018 Jan 8.
The relationships between the different component parts of organisms, such as the sharing of common development or function, produce a coordinated variation between the different traits. This morphological integration contributes to drive or constrain morphological variation and thus impacts phenotypic diversification. Artificial selection is known to contribute significantly to phenotypic diversification of domestic species. However, little attention has been paid to its potential impact on integration patterns. This study explores the patterns of integration in the limb bones of different horse breeds, using 3D geometric morphometrics. The domestic horse is known to have been strongly impacted by artificial selection, and was often selected for functional traits. Our results confirm that morphological integration among bones within the same limb is strong and apparently partly produced by functional factors. Most importantly, they reveal that artificial selection, which led to the diversification of domestic horses, impacts covariation patterns. The influence of selection on the patterns of covariation varies along the limbs and modulates bone shape, likely due to a differential ligament or muscle development. These results highlight that, in addition to not being constrained by a strong morphological integration, artificial selection has modulated the covariation patterns according to the locomotor specificities of the breeds. More broadly, it illustrates the interest in studying how micro-evolutionary processes impact covariation patterns and consequently contribute to morphological diversification of domestic species.
生物体不同组成部分之间的关系,如共同发育或功能的共享,会在不同性状之间产生协同变异。这种形态整合有助于驱动或限制形态变异,从而影响表型多样化。已知人工选择对家养物种的表型多样化有显著贡献。然而,人们很少关注其对整合模式的潜在影响。本研究使用三维几何形态测量学探索不同马种四肢骨骼的整合模式。家马已知受到人工选择的强烈影响,并且经常因功能性状而被选择。我们的结果证实,同一肢体骨骼之间的形态整合很强,显然部分是由功能因素产生的。最重要的是,它们揭示了导致家马多样化的人工选择会影响协变模式。选择对协变模式的影响沿肢体不同部位而变化,并调节骨骼形状,这可能是由于韧带或肌肉发育的差异所致。这些结果突出表明,人工选择除了不受强烈形态整合的限制外,还根据品种的运动特异性调节了协变模式。更广泛地说,它说明了研究微观进化过程如何影响协变模式并进而促进家养物种形态多样化的意义。