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环境盐度对广盐性罗非鱼(莫桑比克罗非鱼)垂体生长激素含量及细胞活性的影响

Effects of environmental salinity on pituitary growth hormone content and cell activity in the euryhaline tilapia, Oreochromis mossambicus.

作者信息

Borski R J, Yoshikawa J S, Madsen S S, Nishioka R S, Zabetian C, Bern H A, Grau E G

机构信息

Department of Zoology, University of Hawaii, Honolulu 96822.

出版信息

Gen Comp Endocrinol. 1994 Sep;95(3):483-94. doi: 10.1006/gcen.1994.1148.

Abstract

Studies were undertaken to determine whether several indicators of growth hormone (GH) cell activity, namely GH content, fine structure, and volume of the GH region, differ in the pituitaries of freshwater (FW) and seawater (SW) tilapia, Oreochromis mossambicus. Tilapia raised from the stage of yolk-sac absorption for 7 months in SW contain significantly more GH in their pituitaries than in those of fish reared in FW. Pituitary growth hormone content in tilapia raised in FW for 7 months and transferred to SW for 49 days is greater than that in sibling tilapia retained in FW. Conversely, GH content is significantly lower in the pituitaries of SW-reared tilapia transferred to FW for 49 days than that in the pituitaries from fish retained in SW. Likewise, the volume of the GH region and activity of the GH cells are enhanced in pituitaries from SW-reared tilapia over that seen in pituitaries from FW fish. Taken together, all data indicate heightened GH cell activity in SW-raised tilapia and suggest that GH may play a causal role in the greater growth rates observed in SW tilapia compared to FW fish and/or that GH may be involved in SW osmoregulation. The latter suggestion is supported, in part, by our observation that in vivo oGH treatment (2 micrograms/g body wt) stimulated gill Na+,K(+)-ATPase activity.

摘要

开展了多项研究,以确定生长激素(GH)细胞活性的几个指标,即GH含量、精细结构和GH区域的体积,在淡水(FW)罗非鱼和海水(SW)罗非鱼(莫桑比克罗非鱼)的垂体中是否存在差异。从卵黄囊吸收阶段起在海水中饲养7个月的罗非鱼,其垂体中的GH含量显著高于在淡水中饲养的罗非鱼。在淡水中饲养7个月后转移到海水中饲养49天的罗非鱼,其垂体生长激素含量高于留在淡水中的同胞罗非鱼。相反,转移到淡水中饲养49天的海水饲养罗非鱼的垂体中GH含量显著低于留在海水中的罗非鱼垂体中的GH含量。同样,海水饲养罗非鱼垂体中GH区域的体积和GH细胞的活性比淡水鱼垂体中的增强。综上所述,所有数据表明海水饲养的罗非鱼中GH细胞活性增强,这表明GH可能在海水罗非鱼比淡水鱼观察到的更高生长速率中起因果作用,和/或GH可能参与海水渗透调节。我们观察到体内注射oGH(2微克/克体重)刺激鳃Na+,K(+)-ATP酶活性,这在一定程度上支持了后一种观点。

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