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首页> 外文期刊>Frontiers in Cellular Neuroscience >A New Behavioral Test and Associated Genetic Tools Highlight the Function of Ventral Abdominal Muscles in Adult Drosophila
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A New Behavioral Test and Associated Genetic Tools Highlight the Function of Ventral Abdominal Muscles in Adult Drosophila

机译:一种新的行为测试和相关的遗传工具突显了成年<果蝇>果蝇腹腹肌的功能

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摘要

The function of the nervous system in complex animals is reflected by the achievement of specific behaviors. For years in Drosophila , both simple and complex behaviors have been studied and their genetic bases have emerged. The neuromuscular junction is maybe one of the prototypal simplest examples. A motor neuron establishes synaptic connections on its muscle cell target and elicits behavior: the muscle contraction. Different muscles in adult fly are related to specific behaviors. For example, the thoracic muscles are associated with flight and the leg muscles are associated with locomotion. However, specific tools are still lacking for the study of cellular physiology in distinct motor neuron subpopulations. Here we decided to use the abdominal muscles and in particular the ventral abdominal muscles (VAMs) in adult Drosophila as new model to link a precise behavior to specific motor neurons. Hence, we developed a new behavioral test based on the folding movement of the adult abdomen. Further, we performed a genetic screen and identify two specific Gal4 lines with restricted expression patterns to the adult motor neurons innervating the VAMs or their precursor cells. Using these genetic tools, we showed that the lack of the VAMs or the loss of the synaptic transmission in their innervating motor neurons lead to a significant impairment of the abdomen folding behavior. Altogether, our results allow establishing a direct link between specific motor neurons and muscles for the realization of particular behavior: the folding behavior of the abdomen in Drosophila .
机译:特定动物的行为反映了复杂动物神经系统的功能。在果蝇中,多年来,人们已经研究了简单和复杂的行为,并且已经发现了它们的遗传基础。神经肌肉接头可能是原型最简单的例子之一。运动神经元在其肌肉细胞靶标上建立突触连接并引发行为:肌肉收缩。成年苍蝇的不同肌肉与特定行为有关。例如,胸肌与飞行相关,而腿部肌肉与运动相关。但是,仍然缺乏用于研究不同运动神经元亚群中细胞生理的特定工具。在这里,我们决定使用成年果蝇中的腹肌,尤其是腹腹肌(VAM)作为将精确行为与特定运动神经元联系起来的新模型。因此,我们基于成年腹部的折叠运动开发了一种新的行为测试。此外,我们进行了一次遗传筛选,并确定了两个特定的Gal4系,它们对神经支配VAM或其前体细胞的成年运动神经元具有受限的表达模式。使用这些遗传工具,我们表明,在其支配性运动神经元中,VAM的缺乏或突触传递的缺失会导致腹部折叠行为的严重损害。总之,我们的结果允许在特定运动神经元和肌肉之间建立直接联系,以实现特定行为:果蝇腹部的折叠行为。

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