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3D morphological analysis of spiral intestine morphogenesis in the little skate, Leucoraja erinacea Leucoraja erinacea Leucoraja erinacea

机译:螺旋肠形态发生在小滑冰中,Leucoraja erinacea Leucoraja erinacea Leucoraja erinacea的形态分析

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Abstract Background The evolution of organ asymmetries is less explored than the field of organ morphology and coiling. The digestive tract of elasmobranchs provides a fascinating model for studying the evolution of morphological asymmetries. Unique to elasmobranchs and all basal fishes is the spiral intestine, which may represent an intermediate morphology in evolution from the straight gut of lamprey to the elongated coils of higher vertebrates. The short spiral allows for a large absorptive surface area that can fit into a restrictive abdominal space. Results Using histology and high resolution microCT, we provide the first 3D morphometric analysis of the spiral intestine during development in the little skate, Leucoraja erinacea . Spiral formation is initiated by asymmetric growth in the mesenchyme, causing a bulging fold that protrudes into the lumen of the gut. As development proceeds, the fold elongates and spirals into a right‐handed helix. Spiraling progresses along the anterior‐posterior axis and is likely the result of mechanical forces driven by the asymmetric growth of surrounding tissues. After initial asymmetric growth, radial constraints from within the gut tube create constrictive forces further propagating spiraling. Conclusion We propose a model for potential biophysical mechanisms that direct the morphogenesis of the spiral intestine.
机译:摘要背景,器官不对称的演变比器官形态和卷曲领域不太探索。 Elasmobranchs的消化道提供了一种用于研究形态学不对称的演变的迷人模型。 Elasmobranchs的独特和所有基本鱼类是螺旋肠,其可以代表从羊毛的直肠肠道到高级脊椎动物的细长线圈的中间形态。短螺旋允许宽大的吸收表面积,可以适合于限制腹部空间。结果采用组织学和高分辨率Microct,我们提供了在小滑冰,Leucoraja erinacea发育过程中螺旋肠的第一个3D形变分析。通过间充质的不对称生长引发螺旋形成,导致凸起突出到肠道内腔中。随着发展所得,折叠伸长并螺旋成右手螺旋。螺旋沿前后轴线进行,很可能是由周围组织的不对称生长驱动的机械力的结果。在初始不对称的生长之后,肠道内的径向约束产生收缩力进一步繁殖螺旋形。结论我们提出了一种潜在的生物物理机制模型,其引导螺旋肠的形态发生。

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