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黑色素浓缩激素参与鳗鱼生理颜色变化的证据。

Evidence for the participation of a melanin-concentrating hormone in physiological colour change in the eel.

作者信息

Gilham I D, Baker B I

出版信息

J Endocrinol. 1984 Aug;102(2):237-43. doi: 10.1677/joe.0.1020237.

Abstract

The hormonal and nervous control of colour change in the eel has been investigated. The only bioactive forms of MSH found in eel pituitary extracts or secreted by eel pituitary cultures were forms of alpha-MSH; no beta-MSH was detected. After transfer of eels from a black to a white background, the melanin concentration in skin melanophores was accompanied by a rapid decline in plasma alpha-MSH titres. Hypophysectomy resulted in melanin concentration, and pituitary extracts injected into hypophysectomized eels caused melanin dispersion. This effect was eliminated if the pituitary extracts were first incubated with a specific alpha-MSH antiserum or if the antiserum was injected into the hypophysectomized eel. However, injection of alpha-MSH antiserum into intact, black-adapted eels failed to result in melanin concentration although the same antiserum was effective in causing pallor in black-adapted toads. Partially purified preparations of teleost melanin-concentrating hormone (MCH), free from catecholamines, induced melanin concentration when injected into black-adapted eels and this effect was significantly potentiated by injections of alpha-MSH antiserum. The denervation of melanophores on the pectoral fin had only a slight effect on the responses of the melanophores to humoral agents. It is concluded that the control of physiological colour change in the eel is largely hormonal, and involves the antagonistic effects of alpha-MSH and a melanin-concentrating agent which is probably MCH.

摘要

对鳗鱼体色变化的激素和神经控制进行了研究。在鳗鱼垂体提取物中发现的或由鳗鱼垂体培养物分泌的促黑素细胞激素(MSH)的唯一生物活性形式是α-MSH;未检测到β-MSH。将鳗鱼从黑色背景转移到白色背景后,皮肤黑素细胞中的黑色素浓度伴随着血浆α-MSH滴度的迅速下降。垂体切除导致黑色素浓度增加,将垂体提取物注射到垂体切除的鳗鱼体内会引起黑色素扩散。如果垂体提取物先与特异性α-MSH抗血清孵育,或者将抗血清注射到垂体切除的鳗鱼体内,这种效应就会消除。然而,将α-MSH抗血清注射到完整的、适应黑色环境的鳗鱼体内,尽管相同的抗血清能使适应黑色环境的蟾蜍变白,但未能导致黑色素浓度增加。不含儿茶酚胺的硬骨鱼黑色素浓缩激素(MCH)的部分纯化制剂,注射到适应黑色环境的鳗鱼体内时会诱导黑色素浓度增加,并且注射α-MSH抗血清会显著增强这种效应。胸鳍上的黑素细胞去神经支配对黑素细胞对体液因子的反应只有轻微影响。得出的结论是,鳗鱼生理体色变化的控制在很大程度上是激素性的,并且涉及α-MSH和一种可能是MCH的黑色素浓缩剂的拮抗作用。

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