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Assaying Locomotor, Learning, and Memory Deficits in Drosophila Models of Neurodegeneration

机译:测定果蝇神经变性模型中的运动,学习和记忆障碍

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摘要

Advances in genetic methods have enabled the study of genes involved in human neurodegenerative diseases using Drosophila as a model system1. Most of these diseases, including Alzheimer's, Parkinson's and Huntington's disease are characterized by age-dependent deterioration in learning and memory functions and movement coordination2. Here we use behavioral assays, including the negative geotaxis assay3 and the aversive phototaxic suppression assay (APS assay)4,5, to show that some of the behavior characteristics associated with human neurodegeneration can be recapitulated in flies. In the negative geotaxis assay, the natural tendency of flies to move against gravity when agitated is utilized to study genes or conditions that may hinder locomotor capacities. In the APS assay, the learning and memory functions are tested in positively-phototactic flies trained to associate light with aversive bitter taste and hence avoid this otherwise natural tendency to move toward light. Testing these trained flies 6 hours post-training is used to assess memory functions. Using these assays, the contribution of any genetic or environmental factors toward developing neurodegeneration can be easily studied in flies.
机译:遗传方法的进步使得能够使用果蝇作为模型系统研究涉及人类神经退行性疾病的基因。这些疾病中的大多数,包括阿尔茨海默氏病,帕金森氏病和亨廷顿氏病,其特征是学习和记忆功能以及运动协调性的年龄依赖性恶化2。在这里,我们使用行为测定法,包括负趋轴测定法3和厌恶性光轴抑制测定法(APS测定法)4,5,来证明与人类神经变性相关的某些行为特征可以在果蝇中概括。在负大地趋向测定中,苍蝇在受到搅动时会自然反重力运动,以研究可能阻碍运动能力的基因或条件。在APS分析中,学习和记忆功能在正光趋性果蝇中进行测试,这些果蝇经过训练使光与厌恶性苦味相关联,因此避免了这种自然趋向光的趋势。训练后6小时测试这些经过训练的果蝇,以评估记忆功能。使用这些分析,可以很容易地研究苍蝇中任何遗传或环境因素对神经退行性疾病的贡献。

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