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Automated monitoring and quantitative analysis of feeding behaviour in Drosophila

机译:自动监测和定量分析果蝇的摄食行为

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Food ingestion is one of the defining behaviours of all animals, but its quantification and analysis remain challenging. This is especially the case for feeding behaviour in small, genetically tractable animals such as Drosophila melanogaster. Here, we present a method based on capacitive measurements, which allows the detailed, automated and high-throughput quantification of feeding behaviour. Using this method, we were able to measure the volume ingested in single sips of an individual, and monitor the absorption of food with high temporal resolution. We demonstrate that flies ingest food by rhythmically extending their proboscis with a frequency that is not modulated by the internal state of the animal. Instead, hunger and satiety homeostatically modulate the microstructure of feeding. These results highlight similarities of food intake regulation between insects, rodents, and humans, pointing to a common strategy in how the nervous systems of different animals control food intake.
机译:摄食是所有动物的决定性行为之一,但其量化和分析仍具有挑战性。在小型,遗传易处理的动物(例如果蝇)中的摄食行为尤为如此。在这里,我们介绍一种基于电容测量的方法,该方法可以对进给行为进行详细,自动化和高通量的量化。使用这种方法,我们能够测量一个人一口摄入的食物量,并以高时间分辨率监视食物的吸收。我们证明果蝇通过节律性地以没有受动物内部状态调节的频率有规律地延长其鼻长来摄取食物。取而代之的是,饥饿感和饱足感会稳态地调节喂养的微观结构。这些结果突出了昆虫,啮齿动物和人类之间食物摄入调节的相似性,指出了不同动物神经系统如何控制食物摄入的共同策略。

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