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首页> 外文期刊>Zebrafish >High Melatonin Conditions by Constant Darkness and High Temperature Differently Affect Melatonin Receptor mt1 and TREK Channel trek2a in the Brain of Zebrafish
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High Melatonin Conditions by Constant Darkness and High Temperature Differently Affect Melatonin Receptor mt1 and TREK Channel trek2a in the Brain of Zebrafish

机译:通过恒定的黑暗和高温的高褪黑激素条件不同地影响斑皮鱼脑中的褪黑激素受体MT1和Trek通道Trek2a

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摘要

Ambient light and temperature affect reproductive function by regulating kisspeptin and gonadotrophin-releasing hormone (GnRH) in vertebrates. Melatonin and melatonin receptors, as well as the two-pore domain K+ channel-related K+ (TREK) channels, are affected by light and/or temperature; therefore, these molecules could modulate kisspeptin and GnRH against ambient light and temperature. In this study, we investigated the effect of light and temperature, which affect melatonin levels in gene expression levels of TREK channels, kisspeptin, and GnRH. We first investigated the effects of different light and temperature conditions on brain melatonin concentrations by ELISA. Fish were exposed to either constant darkness, constant light, high temperature (35 degrees C), or low temperature (20 degrees C) for 72h. Brain melatonin levels were significantly high under constant darkness and high temperature. We further investigated the effects of high brain melatonin levels by constant darkness and high temperature on gene expression levels of melatonin receptors (mt1, mt2, and mel1c), TREK channels (trek1b, trek2a, and trek2b), gnrh3, and kiss2 in the adult zebrafish brain by real-time polymerase chain reaction. Fish were exposed to constant darkness or elevated temperatures (35 degrees C) for 72h. trek2a, kiss2, and gnrh3 levels were increased under constant darkness. High temperature decreased gene expression levels of mt1, mt2, mel1c, and gnrh3 in the preoptic area, whereas other genes remained unchanged. Melatonin receptors, TREK channels, gnrh3, and kiss2 responded differently under high melatonin conditions. The melatonin receptors and the TREK channels could play roles in the regulation of reproduction by environmental cues, especially ambient light and temperature.
机译:环境光和气温通过调节脊椎动物中的吻和促性腺激素释放激素(GNRH)来影响生殖功能。褪黑激素和褪黑激素受体以及双孔结构域K +通道相关k +(Trek)通道受光和/或温度的影响;因此,这些分子可以根据环境光和温度调节Kisspeptin和GnRH。在这项研究中,我们研究了光和温度的效果,这影响了Trek通道,Kisspeptin和GnRH基因表达水平中的褪黑素水平。我们首先研究了ELISA对脑褪黑素浓度对脑褪黑素浓度的影响。将鱼暴露于恒定的暗度,恒定的光,高温(35℃),或低温(20℃)72h。在恒定的黑暗和高温下脑褪黑素水平显着高。我们进一步研究了高脑褪黑素水平对褪黑素和高温对褪黑素受体(MT1,MT2和MEL1C),Trek通道(Trek1b,Trek2a和Trek2b),GnRH3和Arith2中的基因表达水平的恒定暗度和高温对成年人通过实时聚合酶链式反应斑马鱼脑。将鱼暴露于恒定的暗度或升高的温度(35℃)72h。在恒定的黑暗下,Trek2a,Kiss2和GnRH3水平增加。高温降低了诱导区域中MT1,MT2,MEL1C和GNRH 3的基因表达水平,而其他基因保持不变。在高褪黑激素条件下,褪黑激素受体,Trek通道,GnRH3和Kiss2在高褪黑激素条件下响应不同。褪黑激素受体和Trek频道可以在环境提示的繁殖调节中发挥作用,特别是环境光和温度。

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