首页> 外文期刊>Comparative biochemistry and physiology, Part D. Genomics & proteomics >Molecular characterisation of prolactin and analysis of extrapituitary expression in the European sea bass Dicentrarchus labrax under various salinity conditions
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Molecular characterisation of prolactin and analysis of extrapituitary expression in the European sea bass Dicentrarchus labrax under various salinity conditions

机译:催乳素的分子描述在分析extrapituitary表达式欧洲鲈鱼Dicentrarchus labrax下不同盐度条件下

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Although prolactin has been demonstrated to be the main hormone involved in adaptation to dilute media in several freshwater teleosts, few studies have been conducted in marine teleosts. In the Mediterranean, the sea bass Dicentrarchus labrax inhabits environments ranging from the open sea to coastal lagoons, where salinity varies greatly. We characterised the prolactin (prl) gene and analysed its expression in two organs (gill and intestine) in D. labrax acclimated to either freshwater or seawater. A 2819 bp long sequence encompassing the prl gene and a part (282 bp) of the promoter were identified, and these comprised 5 coding exons separated by 4 introns. Prolactin was similarly expressed in fresh- and seawater adapted fish, although expression in gills was significantly greater than in the intestine. Nonetheless, individuals unable to successfully regulate osmotic balance in freshwater presented overall low expression rates. Results are discussed according to the mechanism of sea bass adaptation in the wild and to their life cycle between open sea and lagoons. Finally, a phylogenetic analysis indicated that teleosts are not branched according to their life-history features (e.g. seawater vs. freshwater habitats), and no signature of positive selection was detected across the phylogeny of the prl gene in teleosts.
机译:虽然催乳素已被证明的主要激素参与适应稀释媒体在一些淡水硬骨鱼,很少研究一直在进行海洋硬骨鱼。地中海,鲈鱼Dicentrarchus labrax居住环境从大海沿海泻湖,盐度变化的地方很大。基因,分析其表达在两个器官(吉尔和肠)在d . labrax适应淡水或海水。序列包括prl基因和一个部分(282个基点)启动子的识别,和这些由5编码外显子4隔开内含子。新鲜——和海水鱼,虽然表达在鳃明显更大肠。无法成功调节渗透平衡在淡水中整体呈现低表达利率。鲈鱼适应在野外和机制他们的生命周期之间的大海和泻湖。最后,系统发育分析表明根据他们的硬骨鱼类的不分支生活史特性(如海水vs。淡水栖息地),没有签名的积极的选择是在检测到prl基因的种系发生硬骨鱼。

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