Ian C Welsh, Maria E Feiler, Danika Lipman, Isabel Mormile, Karissa Hansen, Christopher J Percival
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We completed a combined whole mount gene expression and morphometric analysis of normal murine palatal segment growth dynamics and resulting upper jaw morphology. Our results demonstrated that the first formed palatal ruga (ruga 1), found just posterior to the RGZ, maintained an association with important nasal, neurovascular and palatal structures throughout early midfacial development. This suggested that these features are positioned at a proximal source of embryonic midfacial directional growth. Our detailed characterization of midfacial morphogenesis revealed a one-to-one relationship between palatal segments and upper jaw bones during the earliest stages of palatal elongation. Growth of the maxillary anlage within the anterior secondary palate is uniquely coupled to RGZ-driven morphogenesis. This may help drive the unequaled proportional elongation of the anterior secondary palate segment prior to palatal shelf fusion. Our results also demonstrated that the future maxillary-palatine suture, approximated by the position of ruga 1 and consistently associated with the palatine anlage, formed predominantly via the posterior differentiation of the maxilla within the expanding anterior secondary palate. 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引用次数: 0
摘要
腭的前后延伸是完整面中形态发生的一个关键方面。上皮-间充质相互作用驱动二次腭伸长,这与rugae growth zone (RGZ)内信号中心的周期性形成有关。然而,rgz驱动的形态发生过程、下腭骨间充质前体的分化动力学和上颌节段组织之间的关系仍然是谜。对这些关系进行详细的个体发生研究是很重要的,因为腭段生长是正常面中部生长的一个关键方面,当改变时可能产生畸形,并且可能是上颌形态进化差异的基础。我们完成了对正常小鼠腭段生长动态和上颌形态的全颌基因表达和形态计量学分析。我们的研究结果表明,第一个形成的腭ruga (ruga 1)位于RGZ的后部,在早期面部中部发育过程中与重要的鼻、神经血管和腭结构保持着联系。这表明这些特征位于胚胎面中定向生长的近端来源。我们对面中形态发生的详细描述揭示了在腭伸长的早期阶段,腭节段和上颌骨之间的一对一关系。在前次腭内的上颌基板的生长与rgz驱动的形态发生是独特的。这可能有助于在腭架融合前推动前第二腭段的不成比例的延伸。我们的结果还表明,未来的上颌-腭缝合,以ruga 1的位置近似,并始终与腭基板相关,主要是通过在扩大的前次腭内的上颌后分化形成的。我们的个体发生分析提供了在周围腭段a - p延伸和相关皱襞形成的背景下,膜内面中骨骼规范和分化的最早时空动态的新颖和详细的图片。
Palatal segment contributions to midfacial anterior-posterior growth.
Anterior-posterior (A-P) elongation of the palate is a critical aspect of integrated midfacial morphogenesis. Reciprocal epithelial-mesenchymal interactions drive secondary palate elongation that is coupled to the periodic formation of signaling centers within the rugae growth zone (RGZ). However, the relationship between RGZ-driven morphogenetic processes, the differentiative dynamics of underlying palatal bone mesenchymal precursors, and the segmental organization of the upper jaw has remained enigmatic. A detailed ontogenetic study of these relationships is important because palatal segment growth is a critical aspect of normal midfacial growth, can produce dysmorphology when altered, and is a likely basis for evolutionary differences in upper jaw morphology. We completed a combined whole mount gene expression and morphometric analysis of normal murine palatal segment growth dynamics and resulting upper jaw morphology. Our results demonstrated that the first formed palatal ruga (ruga 1), found just posterior to the RGZ, maintained an association with important nasal, neurovascular and palatal structures throughout early midfacial development. This suggested that these features are positioned at a proximal source of embryonic midfacial directional growth. Our detailed characterization of midfacial morphogenesis revealed a one-to-one relationship between palatal segments and upper jaw bones during the earliest stages of palatal elongation. Growth of the maxillary anlage within the anterior secondary palate is uniquely coupled to RGZ-driven morphogenesis. This may help drive the unequaled proportional elongation of the anterior secondary palate segment prior to palatal shelf fusion. Our results also demonstrated that the future maxillary-palatine suture, approximated by the position of ruga 1 and consistently associated with the palatine anlage, formed predominantly via the posterior differentiation of the maxilla within the expanding anterior secondary palate. Our ontogenetic analysis provides a novel and detailed picture of the earliest spatiotemporal dynamics of intramembranous midfacial skeletal specification and differentiation within the context of the surrounding palatal segment A-P elongation and associated rugae formation.
期刊介绍:
Journal of Anatomy is an international peer-reviewed journal sponsored by the Anatomical Society. The journal publishes original papers, invited review articles and book reviews. Its main focus is to understand anatomy through an analysis of structure, function, development and evolution. Priority will be given to studies of that clearly articulate their relevance to the anatomical community. Focal areas include: experimental studies, contributions based on molecular and cell biology and on the application of modern imaging techniques and papers with novel methods or synthetic perspective on an anatomical system.
Studies that are essentially descriptive anatomy are appropriate only if they communicate clearly a broader functional or evolutionary significance. You must clearly state the broader implications of your work in the abstract.
We particularly welcome submissions in the following areas:
Cell biology and tissue architecture
Comparative functional morphology
Developmental biology
Evolutionary developmental biology
Evolutionary morphology
Functional human anatomy
Integrative vertebrate paleontology
Methodological innovations in anatomical research
Musculoskeletal system
Neuroanatomy and neurodegeneration
Significant advances in anatomical education.