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The pharyngeal nervous system orchestrates feeding behavior in planarians

机译:咽神经系统在平面图中策划饲养行为

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Planarians exhibit traits of cephalization but are unique among bilaterians in that they ingest food by means of goal-directed movements of a trunk-positioned pharynx, following protrusion of the pharynx out of the body, raising the question of how planarians control such a complex set of body movements for achieving robust feeding. Here, we use the freshwater planarian Dugesia japonica to show that an isolated pharynx amputated from the planarian body self-directedly executes its entire sequence of feeding functions: food sensing, approach, decisions about ingestion, and intake. Gene-specific silencing experiments by RNA interference demonstrated that the pharyngeal nervous system (PhNS) is required not only for feeding functions of the pharynx itself but also for food-localization movements of individual animals, presumably via communication with the brain. These findings reveal an unexpected central role of the PhNS in the linkage between unique morphological phenotypes and feeding behavior in planarians.
机译:平面图表现出头部的特征,但双子能斯中是独一无二的,因为他们通过射击咽部的射击咽部的目标导向的咽部的目标定向运动,提出了普林斯人控制这种复杂集合的问题实现鲁棒喂养的身体运动。在这里,我们使用淡水平面图Dugesia japonica来表明,从平面图的射击咽部截取自我导明的次数执行其整个饲养函数序列:食物传感,方法,关于摄取的决定以及摄入的决定。通过RNA干扰的基因特异性沉默实验证明了咽部神经系统(PHN)不仅需要用于咽部本身的喂养功能,而且需要用于各种动物的食物定位运动,推测通过与大脑进行沟通。这些发现揭示了Phns在平面图中独特形态表型和喂养行为之间的联系中的意外的核心作用。

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