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Positional information in neural map development: Lessons from the olfactory system

机译:神经图开发中的位置信息:嗅觉系统的经验教训

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摘要

Positional information is fundamental in development. Although molecular gradients are thought to represent positional information in various systems, the molecular logic used to interpret these gradients remains controversial. In the nervous system, sensory maps are formed in the brain based on gradients of axon guidance molecules. However, it remains unclear how axons find their targets based on relative, not absolute, expression levels of axon guidance receptors. No model solely based on axontarget interactions explains this point. Recent studies in the olfactory system suggested that the neural map formation requires axonaxon interactions, which is known as axon sorting. This review discusses how axonaxon and axontarget interactions interpret molecular gradients and determine the axonal projection sites in neural map formation.
机译:位置信息是发展的基础。尽管人们认为分子梯度代表了各种系统中的位置信息,但用于解释这些梯度的分子逻辑仍然存在争议。在神经系统中,基于轴突导向分子的梯度在大脑中形成感觉图。然而,仍不清楚轴突如何基于轴突指导受体的相对而非绝对表达水平找到其靶标。没有仅基于轴突靶相互作用的模型可以解释这一点。嗅觉系统中的最新研究表明,神经图谱的形成需要轴突信元相互作用,这被称为轴突分选。这篇评论讨论了轴突和轴突靶相互作用如何解释分子梯度并确定神经图谱形成中的轴突投影位点。

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