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首页> 外文期刊>General and comparative endocrinology >Effects of thermal stress on the expression of glucocorticoid receptor complex linked genes in Senegalese sole ( Solea senegalensis ): Acute and adaptive stress responses
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Effects of thermal stress on the expression of glucocorticoid receptor complex linked genes in Senegalese sole ( Solea senegalensis ): Acute and adaptive stress responses

机译:热应力对塞内加尔唯一(SOLEA Senegalensis)的糖皮质激素受体复合基因表达的影响:急性和适应性应激反应

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Highlights ? Thermal increase induced an elevation of plasma cortisol 1 h after stress. ? Thermal increase induced a short-term GR and HSPs over-expression in liver and brain. ? Thermal stress induced a mid-term overexpression of GR and HSPs in gill and intestine. ? Thermal stress induces a mid-term over-expression of brain CRHBP as adaptive response. Abstract The present study examined the short and mid-term effects of a rise in temperature from 18 °C to 24 °C on the expression of genes related to the stress response regulation in juveniles of Senegalese sole, Solea senegalensis . The animals were exposed to a temperature increase of 6 °C, after 1 month of acclimation at 18 °C. After this process, samples of different tissues were collected from a total of 96 fish at four sampling points: 1 h, 24 h, 3 days and 1 week. The transcript levels of a set of genes involved in the stress response such as glucocorticoid receptors 1 and 2, corticotrophin-releasing factor, corticotrophin-releasing factor binding proteins, proopiomelanocortin A and B, and cellular stress defense (heat shock protein 70, 90AA and 90AB) were quantified at these sampling points. Additionally, blood samples were also taken to measure the circulating plasma cortisol concentration. Thermal stress induced by increasing temperature prompted an elevation of plasma cortisol levels in juvenile Senegalese sole after 1 h as a short-term response, and a consecutive increase after one week, as a mid-term response. Senegalese sole seemed to respond positively in terms of adaptive mechanisms, with a rapid over-expression of gr s and hsp s in liver and brain, significantly higher after one hour post stress, denoting the fast and acute response of those tissues to a rapid change on temperature. The ratio hsp90 /gr also increased 24 h after thermal shock, ratio proposed to be an adaptive mechanism to prevent proteosomal degradation of GR. As a mid-term response, the elevation of brain crfbp gene expression one week after thermal shock could be an adaptive mechanism of negative feedback on HPI axis. Taken together, these data suggested an initial up-regulation of the glucocorticoid receptor complex linked genes in response to a temperature increase in Senegalese sole, with heat shock protein 90 potentially being a regulatory factor for the glucocorticoid receptor in the presence of cortisol.
机译:强调 ?在应力后,热量增加诱导血浆皮质醇的升高。还热量增加诱导肝脏和大脑中的短期GR和HSP过度表达。还热应力在鳃和肠道中诱导GR和HSP的中期过表达。还热应力诱导脑CRHBP的中期过表达作为适应性响应。摘要本研究检测了在18°C至24°C中升高到24°C的短期和中期效果对塞内加尔斯唯一的塞内加尔森塞内加斯·塞内加斯少年的幼虫应力响应调控有关的基因。在18℃下在1个月的加速后,将动物暴露于6℃的温度升高。在此过程之后,在四个采样点的共96条鱼中收集不同组织的样品:1小时,24小时,3天和1周。参与应力响应的一组基因的转录物水平,例如糖皮质激素受体1和2,皮质萎缩蛋白释放因子,皮质萎缩蛋白释放因子结合蛋白质,proOpioMelanocortin A和B,以及细胞应激防御(热休克蛋白70,90Aa和90ab)在这些采样点进行量化。另外,还采用血液样品来测量循环等离子体皮质醇浓度。通过提高温度诱导的热应力促使在1小时后少年塞内利亚alse唯一的血浆皮质醇水平升高,并且一周后连续增加,作为中期反应。塞内加尔唯一的唯一在适应性机制方面响应,在肝脏和大脑中,肝脏和大脑中的快速表达,在一个小时后,延迟效应后显着高,表示这些组织的快速和急性反应到快速变化温度。在热冲击后,HSP90 / GR的比率也增加了24小时,比率是一种自适应机制,以防止葛族蛋白质组体降解。作为中期反应,热冲击后一周脑CRFBP基因表达的升高可能是HPI轴上的负反馈的自适应机制。总之,这些数据表明糖皮质激素受体复合物联结基因的初始上调响应于塞内巴尔唯一的温度增加,热休克蛋白90可能是在皮质醇存在下的糖皮质激素受体的调节因子。

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