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Mosaic evolution of the basicranium in Homo and its relation to modular development

机译:Homo 中 basicranium 的马赛克演化及其与模块化发展的关系

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Mosaic evolution describes different rates of evolutionary change in different body units. Morphologically these units are described by more relationships within a unit than between different units which relates mosaic evolution with morphological integration and modularity. Recent evidence suggests mosaic evolution at the human basicranium due to different evolutionary rates of midline and lateral cranial base morphology but this hypothesis has not yet been addressed explicitly. We this hypothesis and explore how mosaic evolution relates to modular development. Evolutionary data sets on midline (N = 186) and lateral (N = 86) basicranial morphology are compared with 3D data on pre- and postnatal basicranial ontogeny (N = 71). Our results support the hypothesis of mosaic evolution and suggest a modular nature of basicranial development. Different embryological basicranial units likely became differently modified during evolution, with relatively stable midline elements and more variable lateral elements. In addition, developmental data suggests that modularity patterns change throughout ontogeny. During prenatal ontogeny lateral basicranial elements (greater sphenoid wings and petrosal pyramids) change together compared with the midline base. Close to birth the greater sphenoid wings keep a spatially stable position, while the petrosal pyramids become dissociated and shifted posteriorly. After birth the greater sphenoid wings and petrosal pyramids change again jointly and with respect to midline cranial base elements. This sequential pattern of integration and modularization and re-integration describes human basicranial ontogeny in a way that is potentially important for the understanding of evolutionary change. Phylogenetic modifications of this pattern during morphogenesis, growth, and development may underlie the mosaic evolution of the hominin basicranium.
机译:马赛克进化描述了不同身体单位中不同的进化变化率。从形态学上讲,这些单元由单元内的关系来描述,而不是由不同单元之间的关系来描述,这将马赛克演化与形态整合和模块化联系起来。最近的证据表明,由于中线和外侧颅底形态的不同进化速率,人类基底骨存在嵌合进化,但这一假设尚未得到明确解决。我们提出了这一假设,并探讨了马赛克进化与模块化发展的关系。将中线 (N = 186) 和侧位 (N = 86) 颅底形态的进化数据集与出生前和产后颅底个体发育 (N = 71) 的 3D 数据进行比较。我们的研究结果支持了嵌合演化的假说,并提出了基底颅发育的模块化性质。不同的胚胎基颅单位在进化过程中可能有不同的修饰,具有相对稳定的中线元素和更多可变的侧基因。此外,发育数据表明,模块化模式在整个个体发育过程中都会发生变化。在产前个体发育期间,外侧基颅元件(大蝶骨翼和岩锥体)与中线基底相比一起变化。在接近出生时,较大的蝶骨翅膀保持空间稳定的位置,而岩质金字塔则变得分离并向后移动。出生后,大蝶骨翅和岩锥体再次共同变化,并相对于中线颅底元素发生变化。这种整合、模块化和再整合的顺序模式以一种对理解进化变化具有潜在重要意义的方式描述了人类基本颅个体发育。在形态发生、生长和发育过程中,这种模式的系统发育修饰可能是古人类基质动物的镶嵌进化的基础。

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