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首页> 外文期刊>Indian Journal of Experimental Biology >Thyroid status alters gill ionic metabolism and chloride cell morphology as evidenced by scanning electron microscopy in a teleost Anabas testudineus (Bloch): Short and long term in vivo study
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Thyroid status alters gill ionic metabolism and chloride cell morphology as evidenced by scanning electron microscopy in a teleost Anabas testudineus (Bloch): Short and long term in vivo study

机译:甲状腺状态改变g离子代谢和氯化物细胞形态,如硬骨鱼Anastas testudineus(Bloch)的扫描电子显微镜所证明:短期和长期体内研究

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摘要

Gill is the main organ of osmotic regulation in teleosts and chloride cells are the sites of ion transport across gill epithelium. Thyroid hormones are implicated in the regulation of osmotic balance in teleosts also. Treatment with 6-propyl thiouracil (6-PTU) inhibited the membrane bound enzyme Na~+K~+ ATPase in the gill while triiodothyronine (T_3) injection stimulated it in a short-term in vivo study in the teleost Anabas testudineus. Na~+, K~+ and Ca~(2+) ions were also decreased in the 6-PTU treated fish and the T_3 treatment increased their concentrations in the gill lamellae. The gill morphology also changed according to the thyroid status in the long term study. 6-PTU treatment altered the typical serrated morphology of the gill lamellae, while the T_3 treatment reversed it. T_3 injection increased the density of pavement and chloride cells as evidenced by scanning electron microscopy. The results demonstrate that physiological status of the thyroid influences gill Na~+ pump activity and chloride cell morphological changes. Further, the study suggests a regulatory role of T_3 on gill ions (Na~+, K~+ and Ca~(2+)), Na~+K~+ and Ca~(2+) ATPase activity and the different gill cell types in A. testudineus.
机译:tele是硬骨鱼中渗透调节的主要器官,氯化物细胞是跨across上皮的离子转运位点。甲状腺激素也参与硬骨鱼渗透平衡的调节。用6-丙基硫氧嘧啶(6-PTU)处理可抑制the中的膜结合酶Na〜+ K〜+ ATPase,而在三生硬骨鱼Anastas testudineus的一项短期体内研究中,注射三碘甲腺嘌呤(T_3)可以刺激it。 6-PTU处理的鱼中Na〜+,K〜+和Ca〜(2+)离子也降低,而T_3处理则增加了ill片中的Na _ +,K〜+和Ca〜(2+)离子。在长期研究中,g形态也根据甲状腺状态而改变。 6-PTU处理改变了ill片的典型锯齿状形态,而T_3处理则将其逆转。 T_3注射增加了路面和氯化物细胞的密度,如扫描电子显微镜所证明的。结果表明,甲状腺的生理状态会影响g Na〜+泵的活性和氯化物细胞的形态变化。此外,研究表明T_3对g离子(Na〜+,K〜+和Ca〜(2 +)),Na〜+ K〜+和Ca〜(2+)ATPase活性以及不同g细胞的调节作用键入A. testudineus。

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