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首页> 外文期刊>Developmental biology >Canal neuromast position prefigures developmental patterning of the suborbital bone series in Astyanax cave- and surface-dwelling fish
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Canal neuromast position prefigures developmental patterning of the suborbital bone series in Astyanax cave- and surface-dwelling fish

机译:运河神经孢状体位置预先发育模式在山西交新洞穴和表面居住的鱼类中的副骨骨系列

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Developmental patterning is a complex biological phenomenon, involving integrated cellular and molecular signaling across diverse tissues. InAstyanaxcavefish, the lateral line sensory system is dramatically expanded in a region of the cranium marked by significant bone abnormalities. This system provides the opportunity to understand how facial bone patterning can become altered through sensory system changes. Here we investigate a classic postulation that mechanosensory receptor neuromasts seed intramembranous facial bones in aquatic vertebrates. Using anin vivostaining procedure across individual life history, we observed infraorbital canal neuromasts serving as sites of ossification for suborbital bones. The manner in which cavefish departed from the stereotypical and symmetrical canal neuromast patterns of closely-related surface-dwelling fish were associated with specific changes to the suborbital bone complex. For instance, bony fusion, rarely observed in surface fish, was associated with shorter distances between canal neuromasts in cavefish, suggesting that closer canal neuromasts result in bony fusions. Additionally, cavefish lacking the sixth suborbital bone (SO6) uniformly lacked the associated (sixth) canal neuromast. This study suggests that patterning of canal neuromasts may impact spatial position of suborbital bones across development. The absence of an eye and subsequent orbital collapse in cavefish appears to influence positional information normally inherent to the infraorbital canal. These alterations result in coordinated changes to adult neuromast and bone structures. This work highlights complex interactions between visual, sensory and bony tissues during development that explain certain abnormal craniofacial features in cavefish.
机译:发育模式是一种复杂的生物现象,涉及跨多种组织的综合细胞和分子信号。 anaperanaxcavefish,横向线感官系统在由显着的骨异常标记的颅骨区域中显着扩展。该系统提供了理解面部骨图案如何通过感官系统变化改变的机会。在这里,我们研究了水生脊椎动物中的机械感受受体神经瘤膜的经典假设。在各个寿命历史上使用Anin vivosting程序,我们观察了作为骨压骨骼骨化位点的眶下管道神经孢子。捕捞从密切相关的表面居住鱼的陈规定型和对称管神经孢状虫模式的方式与副骨骨复合物的特异性变化相关。例如,在表面鱼中很少观察到的骨融合与穴位中的管内神经孢子之间的距离较短,表明较近的管内神经孢状体导致骨融合。此外,缺乏第六次浊骨(SO6)的穴位均缺乏相关(第六)的穴位神经孢状虫。本研究表明,管道神经孢的图案可能会影响副岩体骨骼的空间位置。潜在的穴位和随后的眶塌似乎会影响通常是眶下管道固有的位置信息。这些改变导致成人神经孢状和骨结构的变化。这项工作突出了显影,感官和骨骼组织之间的复杂相互作用,在发育过程中解释了潜在的某些异常的颅面特征。

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