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首页> 外文期刊>Aquaculture >Central and peripheral clocks in Atlantic bluefin tuna (Thunnus thynnus, L.): Daily rhythmicity of hepatic lipid metabolism and digestive genes
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Central and peripheral clocks in Atlantic bluefin tuna (Thunnus thynnus, L.): Daily rhythmicity of hepatic lipid metabolism and digestive genes

机译:大西洋蓝鳍金枪鱼(Thunnus Thynnus,L.)中央和外围时钟:肝脂代谢和消化基因的每日节律性

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Atlantic bluefin tuna (ABT; Thunnus thynnus) is a highly regarded and consumed species, but farming is still in its infancy. Currently, nothing is known about the presence of circadian rhythmicity at central or peripheral tissues, or if there are daily rhythms in expression of genes involved in lipid metabolism. In order to elucidate clock gene regulation of genes of lipid metabolism in ABT, six clock genes (bmal1, clock, cry1, cry2, per1 and per2) were sequenced and 24 h expression of these genes determined in brain and liver of fish acclimated to a light:dark (L:D) photoperiod. Additionally, the daily expression of lipid metabolism and digestive enzyme genes in ABT was also determined in liver. All six clock genes displayed rhythmicity in the brain and liver, other than cry2, which did not show an acrophase in liver. In liver, all the transcription factors analysed other than srebp1 and srebp2 displayed rhythmicity, with lxr and ppara displaying diurnal expression, whereas ppar gamma was highly expressed at the end of the scotophase. Some of the target genes of lxr such as elovl5 and Ip1 also oscillated rhythmically, with acrophases during the photophase. In contrast, only three of the eight digestive enzyme genes studied displayed rhythmicity, at different times of the day, suggesting that either ABT display different feeding periods or the digestion of some nutrients (e.g. lipids) is prioritized over others. The present study showed that clock and lipid metabolism genes displayed strong daily rhythmicity in ABT brain and liver, which could be an area of considerable interest for the establishment of efficient feeding protocols in this new aquaculture species.
机译:大西洋蓝鳍金枪鱼(ABT; Thunnus Thynnus)是一种备受尊重和消费的物种,但农业仍处于初期阶段。目前,关于中环或外周组织的昼夜节律存在,或者如果存在参与脂质代谢的基因的日常节律,则为没有任何内容。为了在ABT中阐明脂质代谢基因的时钟基因调节,测序六个时钟基因(BMA1,时钟,CRY1,CRY2,PER1和PER2),并在脑和肝脏中测定的这些基因的表达24小时表达适应A光:暗(L:D)光周期。另外,在肝脏中也测定ABT中的脂质代谢和消化酶基因的日常表达。除了Cry2之外,所有六个时钟基因都显示出大脑和肝脏的节律性,除了肝脏中没有显示出静态基石。在肝脏中,除Srebp1和Srebp2以外分析的所有转录因子显示出节奏,具有LxR和PPARA显示昼夜表达,而PPARγ在凝察洛酶的末端高度表达。 LXR的一些靶基因如ELOVL5和IP1也有节奏地振荡,在光相酶期间用辅酶酶。相反,在一天中的不同时间展示了八个消化酶基因中的八个消化酶基因中的三种,表明ABT显示不同的饲养时间或一些营养素的消化(例如脂质)优先于其他营养物质。本研究表明,时钟和脂质代谢基因在ABT大脑和肝脏中表现出强烈的日常节律,这可能是在这种新的水产养殖物种中建立有效的饲养方案的相当兴趣的领域。

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