Physiological responses of European sea bass (Dicentrarchus labrax) exposed to increased carbon dioxide and reduced seawater salinities

WARREN CANEOS, Jyotsna Shrivastava, Moses Ndugwa, Gudrun de Boeck
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Abstract

Abstract The effects of increased CO 2 on the physiological responses of European sea bass ( Dicentrarchus labrax ) which were progressively acclimated to 32 ppt, 10 ppt and 2.5 ppt were investigated. Following acclimation to different salinities for two weeks, fish were exposed to present-day (400 µatm) and future (1000 µatm) atmospheric CO 2 for 1, 3, 7 and 21 days. Blood pH, plasma ions (Na+, K+, Cl-), branchial mRNA expression of NKA, NKCC and ammonia transporters (e.g. Rhesus glycoproteins) were examined to understand the iono- and osmoregulatory consequences of the experimental conditions. A transient but significant increase in the blood pH of exposed fish acclimated at 10 ppt (day 1) and 2.5 ppt (day 21) possibly due to an overshoot of the blood HCO3- accumulation. However, no change was seen at 32 ppt. Additionally, plasma [Na+] of exposed fish reared at 10 ppt was significantly reduced at day 1 relative to control fish. Generally, Na + concentration of control fish was relatively higher at 10 ppt and lower at 2.5 ppt compared to 32 ppt control group at all sampling periods. We also found that NKA was upregulated in gill of juvenile sea bass and NKA Mrna level of control fish was relatively higher when acclimated to lower salinities compared to 32 ppt control group. Elevated expression could be due to increased activity of acid-base transporters, which rely on the Na + gradient created by the NKA enzyme. Meanwhile, a significant reduction of NKCC mRNA level of the exposed fish acclimated at 32 ppt (1–3 days) and 10 ppt (7–21 days) was observed which could be an adaptive response to foster ion retention during hypercapnia in sea bass acclimated at lower salinities. Furthermore, Rhesus glycoproteins were generally upregulated in the fish acclimated at lower salinities. It suggests that increased CO 2 may enhance ammonia excretion rate.
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欧洲黑鲈(Dicentrarchus labrax)暴露于二氧化碳增加和海水盐度降低的生理反应
摘要研究了co2浓度升高对欧洲黑鲈(Dicentrarchus labrax)在32、10和2.5 ppt环境下的生理反应的影响。在适应不同的盐度两周后,鱼被暴露在现在(400µatm)和未来(1000µatm)的大气CO 2中1,3,7和21天。检测血液pH值、血浆离子(Na+、K+、Cl-)、NKA、NKCC和氨转运体(如恒河糖蛋白)的鳃mRNA表达,以了解实验条件下的离子和渗透调节后果。暴露的鱼的血液pH值在10 ppt(第1天)和2.5 ppt(第21天)时短暂但显著增加,可能是由于血液中HCO3-积累过量。然而,在32 ppt时没有看到任何变化。此外,与对照鱼相比,在10 ppt下饲养的暴露鱼在第1天的血浆[Na+]显著减少。总的来说,在所有采样周期,对照鱼的Na +浓度在10 ppt时相对较高,在2.5 ppt时相对较低。我们还发现,鲈鱼幼鱼鳃中NKA表达上调,对照鱼在低盐度环境下的NKA Mrna水平相对于32 ppt对照组较高。升高的表达可能是由于酸碱转运蛋白的活性增加,这依赖于NKA酶产生的Na +梯度。同时,在32 ppt(1-3天)和10 ppt(7-21天)条件下,暴露的黑鲈NKCC mRNA水平显著降低,这可能是低盐度环境下黑鲈在高碳血症期间促进离子保留的适应性反应。此外,恒河糖蛋白在低盐度环境中普遍上调。提示co2的增加可提高氨排泄速率。
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