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环境盐度改变了三碘甲状腺原氨酸在呼吸空气的鱼类 Anabas testudineus Bloch 中的作用:对富含线粒体细胞分布、渗透和代谢调节的影响。

Ambient salinity modifies the action of triiodothyronine in the air-breathing fish Anabas testudineus Bloch: effects on mitochondria-rich cell distribution, osmotic and metabolic regulations.

机构信息

Department of Zoology, University of Kerala, Kariavattom, Thiruvananthapuram 695 581, Kerala, India.

出版信息

Gen Comp Endocrinol. 2011 Apr 1;171(2):225-31. doi: 10.1016/j.ygcen.2011.01.013. Epub 2011 Feb 3.

Abstract

The hydromineral and metabolic actions of thyroid hormone on osmotic acclimation in fish is less understood. We, therefore, studied the short-term action of triiodothyronine (T(3)), the potent thyroid hormone, on the distribution and the function of gill mitochondria-rich (MR) cells and on the whole body hydromineral and metabolic regulations of air-breathing fish (Anabas testudineus) adapted to either freshwater (FW) or acclimated to seawater (SA; 30 g L(-1)). As expected, 24 h T(3) injection (100 ng g(-1)) elevated (P<0.05) plasma T(3) but classically reduced (P<0.05) plasma T(4). The higher Na(+), K(+)-ATPase immunoreactivity and the varied distribution pattern of MR cells in the gills of T(3)-treated FW and SA fish, suggest an action of T(3) on gill MR cell migration, though the density of these cells remained unchanged after T(3) treatment. The ouabain-sensitive Na(+), K(+)-ATPase activity, a measure of hydromineral competence, showed increases (P<0.05) in the gills of both FW and SA fish after T(3) administration, but inhibited (P<0.05) in the kidney of the FW fish and not in the SA fish. Exogenous T(3) reduced glucose (P<0.05) and urea (P<0.05) in the plasma of FW fish, whereas these metabolites were elevated (P<0.05) in the SA fish, suggesting a modulatory effect of ambient salinity on the T(3)-driven metabolic actions. Our data identify gill MR cell as a target for T(3) action as it promotes the spatial distribution and the osmotic function of these cells in both fresh water and in seawater. The results besides confirming the metabolic and osmotic actions of T(3) in fish support the hypothesis that the differential actions of T(3) may be due to the direct influence of ambient salinity, a major environmental determinant that alters the osmotic and metabolic strategies of fish.

摘要

甲状腺激素对鱼类渗透适应的水盐代谢和代谢作用了解较少。因此,我们研究了三碘甲状腺原氨酸(T3),一种有效的甲状腺激素,对富含线粒体的(MR)细胞在鳃中的分布和功能以及适应淡水(FW)或海水(SA;30 g L(-1))的呼吸空气鱼类的全身水盐代谢和代谢调节的短期作用。正如预期的那样,24 h T3 注射(100 ng g(-1))升高(P<0.05)血浆 T3,但经典地降低(P<0.05)血浆 T4。在 T3 处理的 FW 和 SA 鱼的鳃中,更高的 Na(+),K(+)-ATP 酶免疫反应性和 MR 细胞的不同分布模式表明 T3 对鳃 MR 细胞迁移有作用,尽管 T3 处理后这些细胞的密度保持不变。哇巴因敏感的 Na(+),K(+)-ATP 酶活性,一种水盐能力的衡量标准,在 T3 给药后 FW 和 SA 鱼的鳃中均增加(P<0.05),但在 FW 鱼的肾脏中抑制(P<0.05),而在 SA 鱼中不抑制。外源性 T3 降低了 FW 鱼血浆中的葡萄糖(P<0.05)和尿素(P<0.05),而这些代谢物在 SA 鱼中升高(P<0.05),这表明环境盐度对 T3 驱动的代谢作用有调节作用。我们的数据确定了富含线粒体的细胞是 T3 作用的靶标,因为它促进了这些细胞在淡水和海水中的空间分布和渗透功能。这些结果除了证实甲状腺激素在鱼类中的代谢和渗透作用外,还支持这样的假设,即甲状腺激素的差异作用可能是由于环境盐度的直接影响,环境盐度是改变鱼类渗透和代谢策略的主要环境决定因素。

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