首页> 外文期刊>The Journal of Comparative Neurology >Melatonin receptor expression in vocal, auditory, and neuroendocrine centers of a highly vocal fish, the plainfin midshipman ( Porichthys notatus Porichthys notatus Porichthys notatus )
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Melatonin receptor expression in vocal, auditory, and neuroendocrine centers of a highly vocal fish, the plainfin midshipman ( Porichthys notatus Porichthys notatus Porichthys notatus )

机译:褪黑激素受体表达在声乐,听觉和神经内分泌中心的高度声乐鱼,普莱辛山雀(Porichthys Notatus Porichthys Notatus Porichthys Notatus)

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Abstract Melatonin plays a central role in entraining activity to the day–night cycle in vertebrates. Here, we investigate neuroanatomical substrates of melatonin‐dependent vocal–acoustic behavior in the nocturnal and highly vocal teleost fish, the plainfin midshipman ( Porichthys notatus ). Using in situ hybridization (ISH) and quantitative real‐time PCR (qPCR), we assess the mRNA distribution and transcript abundance of melatonin receptor subtype 1B ( mel1b ), shown to be important for vocalization in midshipman fish and songbirds. ISH shows robust mel1b expression in major nodes of the central vocal and auditory networks in the subpallium, preoptic area (POA), anterior hypothalamus, dorsal thalamus, posterior tuberculum, midbrain torus semicircularis and periaqueductal gray, and hindbrain. Mel1b label is also abundant in secondary targets of the olfactory, visual, and lateral line systems, as well as telencephalic regions that have been compared to the amygdala, extended amygdala, striatum, septum, and hippocampus of tetrapods. Q‐PCR corroborates mel1b abundance throughout the brain and shows significant increases in the morning compared with nighttime in tissue samples inclusive of the telencephalon and POA, but remains stable in other brain regions. Plasma melatonin levels show expected increase at night. Our findings support the hypothesis that melatonin's stimulatory effects on vocal–acoustic mechanisms in midshipman is mediated, in part, by melatonin binding in vocal, auditory, and neuroendocrine centers. Together with robust mel1b expression in multiple telencephalic nuclei and sensory systems, the results further indicate an expression pattern comparable to that in birds and mammals that is indicative of melatonin's broad involvement in the modulation of physiology and behavior.
机译:摘要褪黑激素在捕获活动中发挥着核心作用,以脊椎动物的日夜周期。在这里,我们研究了夜间和高度声乐的神声鱼中褪黑素依赖性声学行为的神经杀菌底物,普通的普通船(Porichthys Notatus)。使用原位杂交(ISH)和定量实时PCR(QPCR),我们评估褪黑激素受体亚型1B(MEL1B)的mRNA分布和转录物丰度,显示在Medshipman Firs和Songbirds中的发声很重要。 ISH在子宫内容,偏见区域(POA),前丘脑,背部丘脑,后结核,中脑圆锥半圆体和Periaqueyuctal灰色和后脑上,显示了中央声带和听觉网络的主要节点中的强大熔体表达式。 MEL1B标记在嗅觉,视觉和横向线系统的二级目标中,以及与杏仁达拉,扩展的杏仁菌,纹状体,隔膜和四峰的海马进行了近视的次要目标。 Q-PCR在整个脑中证实Mel1B丰度,并在早晨与包括斜视和POA的组织样本中的夜间相比显示出显着增加,但在其他脑区保持稳定。血浆褪黑激素水平显示在夜间预期增加。我们的研究结果支持褪黑激素对Midshingman中的声音机制的刺激作用部分介导的,部分地通过褪黑激素在声带,听觉和神经内分泌中心的褪黑激素结合。与多种斜视细胞核和感官系统中的鲁棒Mel1B表达一起,结果进一步表明表达模式与鸟类和哺乳动物中的表达模式相当,这表明褪黑素在生理和行为调节中的广泛参与。

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