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Nodal signalling and asymmetry of the nervous system

机译:节点信号和神经系统的不对称

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摘要

The role of Nodal signalling in nervous system asymmetry is still poorly understood. Here, we review and discuss how asymmetric Nodal signalling controls the ontogeny of nervous system asymmetry using a comparative developmental perspective. A detailed analysis of asymmetry in ascidians and fishes reveals a critical context-dependency of Nodal function and emphasizes that bilaterally paired and midline-unpaired structures/organs behave as different entities. We propose a conceptual framework to dissect the developmental function of Nodal as asymmetry inducer and laterality modulator in the nervous system, which can be used to study other types of body and visceral organ asymmetries. Using insights from developmental biology, we also present novel evolutionary hypotheses on how Nodal led the evolution of directional asymmetry in the brain, with a particular focus on the epithalamus. We intend this paper to provide a synthesis on how Nodal signalling controls left-right asymmetry of the nervous system.
机译:节点信号在神经系统不对称中的作用仍知之甚少。在这里,我们审查和讨论不对称节点信号如何使用比较发展的角度来控制神经系统不对称的本体。对海鞘和鱼类不对称性的详细分析揭示了节点功能的关键上下文相关性,并强调了双边配对和中线未配对的结构/器官表现为不同的实体。我们提出了一个概念框架来剖析神经系统中Nodal不对称诱导物和侧向调节剂的发育功能,可用于研究其他类型的身体和内脏器官不对称。利用来自发育生物学的见解,我们还提出了关于Nodal如何引导大脑方向性不对称进化的新颖进化假说,尤其侧重于上丘脑。我们打算在本文中提供有关Nodal信号如何控制神经系统左右不对称性的综述。

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