果蝇胚胎轴突导向分析

Thomas Kidd, Timothy Evans
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引用次数: 0

摘要

神经连接的建立是神经发育的重要组成部分。中枢神经系统(CNS)中线是最具特征性的轴突导向选择点,果蝇的研究工作在了解其分子机制方面发挥了关键作用。轴突通过Frazzled受体对Netrin等吸引性信号做出反应,通过Robo受体对Slit等排斥性信号做出反应。这两种信号都在中枢神经系统中线表达,影响先驱轴突,并对轴突支架整体产生巨大影响。在此,我们将重点介绍之前对 Slit/Robo 通路中经典突变体的分析研究,这些突变体很容易用解剖显微镜检测到。我们还讨论了在教学实验中分析这些突变体的问题。果蝇复杂的遗传学与可靠的轴突标记相结合,可以在单细胞水平上进行表型分析。神经元的精细结构对基因突变的破坏非常敏感,因此可以很容易地检测和评估新突变的影响。
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Analysis of Axon Guidance in the Drosophila Embryo.

The establishment of neural connectivity is a major part of neural development. The central nervous system (CNS) midline is the most characterized axon guidance choice point, and work in Drosophila has played a pivotal role in understanding the molecular mechanisms responsible. Axons respond to attractive cues such as Netrin via the Frazzled receptor, and repulsive cues such as Slit via Robo receptors. Both signals are expressed at the CNS midline, affect pioneer axons, and have dramatic effects on the axon scaffold as a whole. Here, we focus on previous research analyzing classic mutants in the Slit/Robo pathway, which can readily be detected with a dissecting microscope. We also discuss analyzing these mutants in a teaching lab situation. The combination of sophisticated genetics and reliable axonal markers in Drosophila allows phenotypic analysis to be performed at the single-cell level. The elaborate architecture of neurons is very sensitive to disruption by genetic mutations, allowing the effects of novel mutations to be easily detected and assessed.

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来源期刊
Cold Spring Harbor protocols
Cold Spring Harbor protocols Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
3.00
自引率
0.00%
发文量
163
期刊介绍: Cold Spring Harbor Laboratory is renowned for its teaching of biomedical research techniques. For decades, participants in its celebrated, hands-on courses and users of its laboratory manuals have gained access to the most authoritative and reliable methods in molecular and cellular biology. Now that access has moved online. Cold Spring Harbor Protocols is an interdisciplinary journal providing a definitive source of research methods in cell, developmental and molecular biology, genetics, bioinformatics, protein science, computational biology, immunology, neuroscience and imaging. Each monthly issue details multiple essential methods—a mix of cutting-edge and well-established techniques.
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