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海湾蟾鱼细胞质碳酸酐酶对耐高盐度很重要。

Cytosolic carbonic anhydrase in the Gulf toadfish is important for tolerance to hypersalinity.

机构信息

RSMAS, University of Miami, Miami, Florida, USA.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2010 Jun;156(2):169-75. doi: 10.1016/j.cbpa.2010.01.018. Epub 2010 Feb 10.

Abstract

Carbonic anhydrase (CA) is a ubiquitous enzyme involved in acid-base regulation and osmoregulation. Many studies have demonstrated a role for this enzyme in fish osmoregulation in seawater as well as freshwater. However, to date CA responses of marine fish exposed to salinities exceeding seawater (approximately 35 ppt) have not been examined. Consequently, the aim of the present study was to examine CA expression and activity in osmoregulatory tissues of the Gulf Toadfish, Opsanus beta, following transfer to 60 ppt. A gene coding, for CAc of 1827 bp with an open reading frame of 260 amino acids was cloned and showed high expression in all intestinal segments and gills. CAc showed higher expression in posterior intestine and rectum than in anterior and mid intestine and in gills of fish exposed to 60 ppt for up to 4 days. The enzymatic activity, in contrast, was higher in all examined tissues two weeks following transfer to 60 ppt. Comparing early expression and later activity levels of acclimated fish reveals a very different response to hypersalinity among tissues. Results highlight a key role of CAc in osmoregulation especially in distal regions of the intestine; moreover, CAc play a role in the gill in hypersaline environments possibly supporting elevated branchial acid extrusion seen under such conditions.

摘要

碳酸酐酶(CA)是一种普遍存在的酶,参与酸碱调节和渗透调节。许多研究表明,这种酶在鱼类的海水和淡水渗透压调节中起着重要作用。然而,迄今为止,还没有研究过海洋鱼类在暴露于超过海水(约 35 ppt)盐度下 CA 的反应。因此,本研究的目的是研究海湾蟾鱼(Opsanus beta)在转移到 60 ppt 后,渗透压调节组织中 CA 的表达和活性。克隆了一个编码 1827 bp 的 CAc 的基因,其开放阅读框为 260 个氨基酸,在所有肠段和鳃中均有高表达。CAc 在暴露于 60 ppt 的鱼的后肠和直肠中的表达高于前肠和中肠,在鳃中的表达也高于前肠和中肠。相比之下,在转移到 60 ppt 两周后,所有检查的组织中的酶活性都更高。比较适应高盐度环境的鱼的早期表达和后期活性水平,揭示了组织对高盐度的反应非常不同。结果突出了 CAc 在渗透压调节中的关键作用,特别是在肠的远端区域;此外,CAc 在高盐环境中的鳃中发挥作用,可能支持在这种条件下观察到的升高的鳃酸性外排。

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