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首页> 外文期刊>Journal of Thermal Biology >Effect of salinity and temperature on the expression of genes involved in branchial ion transport processes in European sea bass
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Effect of salinity and temperature on the expression of genes involved in branchial ion transport processes in European sea bass

机译:盐度和温度对欧洲鲈鱼鳃离子输送过程中涉及基因表达的影响

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The responses of European sea bass to temperature increase and salinity decrease were investigated measuring mRNA expression levels of main genes involved in ion transport. Juvenile fish were pre-acclimated to seawater (SW) at 18 degrees C (temperate) or 24 degrees C (warm) for two weeks and then transferred for two weeks to either fresh water (FW) or SW at the respective temperature. Unlike temperate conditions, there is no change in Na+/K+-ATPase ala (nka ala) and Na+/H+ exchanger 3 (nhe3) mRNA expression following FW transfer in warm conditions. This is linked to the high expression of these genes in warm SW compared to temperate SW. Na+/Cl--cotransporter (ncc2a) expression however is increased following FW transfer in temperate and warm conditions. Main transporters involved in ion excretion (Na+/K+/2Cl-1( )cotransporter, nkcc1 and cystic fibrosis transmembrane conductance regulator, cftr) as well as nitrogen excretion (Rh-glycoproteins, rhcg1 and rhbg) and acid-base regulation (V-H+-ATPase, vha-a and b) are highly expressed in SW warm conditions vs FW warm. Overall, our results suggest a higher activation of ion transport processes in warm conditions and more strikingly in SW. This is linked to a strong interplay between diverse ion transporters in order to coordinate physiological responses at the gill level.
机译:研究了欧洲鲈鱼升温和盐度降低的响应,测量了离子转运中涉及的主要基因的mRNA表达水平。在18℃(温带)或24摄氏度(温度)(温度下)进行两周后预先适应海水(SW),然后在相应温度下转移到淡水(FW)或SW中转移两周。与温带条件不同,在温热条件下FW转移后,Na + / K + -AtPase ALA(NKA ALA)和Na + / H +交换器3(NHE3)mRNA表达没有变化。与温带SW相比,这与温温和这些基因的高表达相关联。然而,在温带温带和温暖条件下FW传输后,Na + / Cl - Cotroansporter(NCC2A)表达增加。参与离子排泄的主要转运蛋白(Na + / K + / 2Cl-1()Cotransporter,NKCC1和囊性纤维化跨膜电导调节剂,CFTR)以及氮排泄(RH-糖蛋白,RHCG1和RHBG)和酸基调调节(V- H + -Atpase,VHA-A和B)在SW温暖条件下高度表达VS FW温暖。总体而言,我们的结果表明在温暖条件下的离子运输过程和更引人注目的SW中的较高激活。这与各种离子转运仪之间的强烈相互作用相关联,以便在鳃液位坐标生理响应。

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