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Building developmental integration into functional systems: Function-induced integration of mandibular shape

机译:建立发育整合到功能系统中:功能诱导的下颌形状整合

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The mammalian mandible is a developmentally modular but functionally integrated system. Whether morphological integration can evolve to match the optimal pattern of functional integration may depend on the developmental origin of integration, specifically, on the role that direct epigenetic interactions play in shaping integration. These interactions are hypothesized to integrate modules and also to be highly conservative, potentially constraining the evolution of integration. Using the fox squirrel (Sciurus niger) mandible as a model system, we test five a priori developmental hypotheses that predict mandibular integration and we also explore for correlations between shapes of mandibular regions not anticipated by any of the developmental models. To determine whether direct epigenetic interactions are highly conserved in rodents, we examine the correlation structure of fluctuating asymmetry, and compare integration patterns between fox squirrels and prairie deer mice (Peromyscus maniculatus bairdii). In fox squirrels, we find a correlation structure unanticipated by all a priori developmental models: adjacent parts along the proximodistal jaw axis are correlated whereas more distant ones are not. The most notable exception is that the shape of the anterior incisor alveolus is correlated with the shape of the ramus (FA component) or coronoid (symmetric component). Those exceptions differ between species; in prairie deer mice, the molar alveolus is connected to more parts, and the incisor alveolus to fewer, than in fox squirrels. The structure of integration suggests that the mandible cannot be decomposed into parts but rather is a single connected unit, a result consistent with its functional integration. That match between functional and developmental integration may arise, at least in part, from function-induced growth, building developmental integration into the functional system and enabling direct epigenetic interactions to evolve when function does.
机译:哺乳动物的下颌骨是一个发育模块化但功能整合的系统。形态整合能否进化以匹配功能整合的最佳模式,可能取决于整合的发育起源,特别是直接表观遗传相互作用在塑造整合中的作用。这些交互被假设为集成模块,并且也是高度保守的,可能会限制集成的演变。使用狐狸松鼠(Sciurus niger)下颌骨作为模型系统,我们测试了预测下颌整合的五个先验发育假设,我们还探索了任何发育模型未预料到的下颌区域形状之间的相关性。为了确定直接表观遗传相互作用在啮齿动物中是否高度保守,我们研究了波动不对称的相关结构,并比较了狐狸松鼠和草原鹿小鼠(Peromyscus maniculatus bairdii)之间的整合模式。在狐狸松鼠中,我们发现了一种所有先验发育模型都没有预料到的相关结构:沿近端下颌轴的相邻部分是相关的,而更远的部分则不相关。最值得注意的例外是前切牙肺泡的形状与支(FA 成分)或冠状动脉(对称成分)的形状相关。这些例外因物种而异;与狐狸松鼠相比,在草原鹿鼠中,臼齿肺泡与更多部分相连,门牙肺泡与更少的部位相连。整合的结构表明,下颌骨不能分解成部分,而是一个单一的连接单元,这一结果与其功能整合一致。功能整合和发育整合之间的匹配可能至少部分源于功能诱导的生长,将发育整合建立到功能系统中,并使直接的表观遗传相互作用能够在功能发生时进化。

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