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Glutamate signaling from a single sensory neuron mediates experience-dependent bidirectional behavior in Caenorhabditis elegans

机译:来自单个感官神经元的谷氨酸信号传导介导在Caenorhabditis elegans中介导经验依赖性双向行为

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Orientation and navigation behaviors of animals are modulated by past experiences. However, little is known about the mechanisms by which sensory inputs are translated into multi-directional orientation behaviors in an experience-dependent manner. Here, we report a neural mechanism for bidirectional salt-concentration chemotaxis of Caenorhabditis elegans . The salt-sensing neuron ASE right (ASER) is always activated by a decrease of salt concentration, while the directionality of reorientation behaviors is inverted depending on previous salt experiences. AIB, the interneuron postsynaptic to ASER, and neurons farther downstream of AIB show experience-dependent bidirectional responses, which are correlated with reorientation behaviors. These bidirectional behavioral and neural responses are mediated by glutamate released from ASER. Glutamate acts through the excitatory glutamate receptor GLR-1 and inhibitory glutamate receptor AVR-14, both acting in AIB. These findings suggest that experience-dependent reorientation behaviors are generated by altering the magnitude of excitatory and inhibitory postsynaptic signals from a sensory neuron to interneurons.
机译:通过过去的经验调制动物的定位和导航行为。然而,对于以经验相关的方式将感觉输入转换成多向取向行为的机制很少。在这里,我们报告了秀丽隐约塞萨氏菌杆菌的双向盐浓度趋化性的神经机制。盐感测神经元ASE右(ASER)总是通过盐浓度的降低而激活,而重新定位行为的方向性取决于先前的盐经验。 AIB,Intereuron Postynaptic对Aser,以及远下游AIB下游的神经元显示经验相关的双向反应,与Reorientation行为相关。这些双向行为和神经反应由谷氨酸释放的谷氨酸介导。谷氨酸通过兴奋性谷氨酸受体GLR-1和抑制谷氨酸受体AVR-14作用于AIB。这些发现表明,通过改变来自感官神经元的兴奋性和抑制性突触信号的大小来产生经验依赖性的重新定位行为。

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