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使用果蝇活动监测(DAM)系统监测运动活动水平。

Locomotor activity level monitoring using the Drosophila Activity Monitoring (DAM) System.

作者信息

Pfeiffenberger Cory, Lear Bridget C, Keegan Kevin P, Allada Ravi

出版信息

Cold Spring Harb Protoc. 2010 Nov 1;2010(11):pdb.prot5518. doi: 10.1101/pdb.prot5518.

DOI:10.1101/pdb.prot5518
PMID:21041391
Abstract

Adult behavioral assays have been used with great success in Drosophila melanogaster to identify circadian rhythm genes. In particular, the locomotor activity assay can identify altered behavior patterns over the course of several days in small populations, or even individual flies. Commercially available, highly efficient automated systems allow for continuous data collection from large numbers of individuals, and analytical tools make it possible to quickly analyze multiple aspects of circadian behavior from each experiment. These features make the locomotor activity assay useful for high-throughput analyses, leading to the rapid discovery and functional characterization of many Drosophila circadian rhythm genes. The locomotor assay described here can simultaneously assess both circadian and sleep behavior, and several methods can be used to analyze the data generated from such assays. This protocol details the use of the Drosophila Activity Monitoring (DAM) System from TriKinetics. Briefly, the system records activity from individual flies maintained in sealed tubes placed in activity monitors. An infrared beam directed through the midpoint of each tube measures an "activity event" each time a fly crosses the beam. Events detected over the course of each consecutive sampling interval are summed and recorded over the course of the experiment for each fly. The general approaches described here can be applied to a wide range of behavioral activity experiments, including sleep deprivation analyses and general studies of hypoactivity and hyperactivity.

摘要

在黑腹果蝇中,成年行为分析已被成功用于鉴定昼夜节律基因。特别是,运动活动分析可以在几天内从小群体甚至单个果蝇中识别出行为模式的改变。市售的高效自动化系统允许从大量个体中持续收集数据,并且分析工具使快速分析每个实验中昼夜节律行为的多个方面成为可能。这些特性使得运动活动分析对于高通量分析很有用,从而能够快速发现和功能表征许多果蝇昼夜节律基因。这里描述的运动分析可以同时评估昼夜节律和睡眠行为,并且可以使用几种方法来分析由此类分析产生的数据。本方案详细介绍了TriKinetics公司的果蝇活动监测(DAM)系统的使用方法。简而言之,该系统记录置于活动监测器中的密封管内单个果蝇的活动。每次果蝇穿过光束时,一束穿过每个管中点的红外光束会测量一个“活动事件”。在每个连续采样间隔期间检测到的事件在整个实验过程中进行累加并记录到每只果蝇身上。这里描述的一般方法可应用于广泛的行为活动实验,包括睡眠剥夺分析以及对活动不足和活动过度的一般研究。

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