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Activation and inhibition of tph2 serotonergic neurons operate in tandem to influence larval zebrafish preference for light over darkness

机译:tph2血清素能神经元的激活和抑制作用共同影响幼虫斑马鱼对光的偏好超过对黑暗的偏好

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摘要

Serotonergic neurons have been implicated in a broad range of processes, but the principles underlying their effects remain a puzzle. Here, we ask how these neurons influence the tendency of larval zebrafish to swim in the light and avoid regions of darkness. Pharmacological inhibition of serotonin synthesis reduces dark avoidance, indicating an involvement of this neuromodulator. Calcium imaging of tph2-expressing cells demonstrates that a rostral subset of dorsal raphe serotonergic neurons fire continuously while the animal is in darkness, but are inhibited in the light. Optogenetic manipulation of tph2 neurons by channelrhodopsin or halorhodopsin expression modifies preference, confirming a role for these neurons. In particular, these results suggest that fish prefer swimming in conditions that elicits lower activity in tph2 serotonergic neurons in the rostral raphe.
机译:血清素能神经元已涉及广泛的过程,但其作用的基本原理仍是一个难题。在这里,我们问这些神经元如何影响幼虫斑马鱼在光线下游泳并避开黑暗区域的趋势。血清素合成的药理抑制作用减少了避黑作用,表明该神经调节剂的参与。表达tph2的细胞的钙成像表明,当动物在黑暗中时,背沟纹5-羟色胺能神经元的尾部子集会连续发射,但在光照下会受到抑制。通道视紫红质或盐视紫红质的表达对tph2神经元的光遗传学操纵可改变偏好性,从而确认了这些神经元的作用。特别是,这些结果表明,鱼类更喜欢在有喙的tph2血清素能神经元中引起较低活性的条件下游泳。

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