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黑鲷(Acanthopagrus schlegeli)雄性先熟性逆转的内分泌机制综述

The endocrine mechanism of sex reversal in the protandrous black porgy, Acanthopagrus schlegeli: a review.

作者信息

Chang C F, Lin B Y, Lau E L, Lee M F, Yueh W S, Lee Y H, Chang C N, Huang J D, Tacon P, Lee F Y, Du J L, Sun L T

机构信息

Department of Aquaculture, National Taiwan Ocean University, Keelung, ROC.

出版信息

Chin J Physiol. 1997 Dec 31;40(4):197-205.

PMID:9551248
Abstract

Black porgy, Acanthopagrus schlegeli Bleeker, a marine protandrous hermaphrodite, is a functional male for the first 2 years of life but begin to sexually reverse to female after the third year. This sex pattern provides a very good model to study the mechanism of sex reversal in fish. The gonad at 5 month of age consisted of testicular tissue with few primary oocytes at 5 month of age. The ovarian tissue became dominant at 18 months of age during the non-spawning season. Testicular and ovarian tissues were separated by connective tissue. Plasma estradiol-17 beta(E2), vitellogenin and 11-ketotestosterone (11-KT) profiles in males were significantly different from those in the 3-year-old reversing females. Peak levels of plasma E2 in the reversing females occurred during the early prespawning season (in October). Lower levels of plasma E2 were, however, observed in the males. Plasma 11-KT levels significant decreased but no changes of plasma testosterone were detected in the reversing females. Exogenous E2 suppressed the testicular development but induced the gonadal aromatase activity, ovarian development and sex reversal in 2-year-old black porgy. Exogenous T and LHRH analog did not have effects on the sex reversal. Higher concentrations of pituitary GtH II and mRNA of GtH II-beta subunit were detected in the reversed females. These data suggested that E2 and gonadal aromatase closely associated to the occurrence of sex reversal. A working model of the sex reversal in black porgy is proposed.

摘要

黑鲷,即黑棘鲷(Acanthopagrus schlegeli Bleeker),是一种海洋雄性先熟的雌雄同体鱼类,在生命的前两年为功能性雄性,但在第三年后开始性逆转成为雌性。这种性别模式为研究鱼类性逆转机制提供了一个很好的模型。5月龄时的性腺由睾丸组织组成,5月龄时只有少量初级卵母细胞。在非产卵季节,卵巢组织在18月龄时占主导地位。睾丸组织和卵巢组织由结缔组织分隔。雄性的血浆雌二醇-17β(E2)、卵黄蛋白原和11-酮睾酮(11-KT)水平与3岁性逆转雌性的水平显著不同。性逆转雌性的血浆E2峰值出现在产卵前期早期(10月)。然而,在雄性中观察到较低的血浆E2水平。性逆转雌性的血浆11-KT水平显著下降,但未检测到血浆睾酮的变化。外源性E2抑制了2岁黑鲷的睾丸发育,但诱导了性腺芳香化酶活性、卵巢发育和性逆转。外源性睾酮和促性腺激素释放激素类似物对性逆转没有影响。在性逆转雌性中检测到较高浓度的垂体促性腺激素II(GtH II)和GtH II-β亚基的mRNA。这些数据表明,E2和性腺芳香化酶与性逆转的发生密切相关。本文提出了一个黑鲷性逆转的工作模型。

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