Stell Sonja K, Moller Peter
Department of Psychology, Hunter College, 695 Park Avenue, New York, NY, 10065, USA.
Fish Physiol Biochem. 2017 Dec;43(6):1517-1529. doi: 10.1007/s10695-017-0389-5. Epub 2017 Jun 6.
This paper explores the plasticity of sexually dimorphic characters in subadult female Brevimyrus niger, an African weakly electric mormyrid species. Thirty-five fish were exposed in a staggered fashion (five fish a week) to aromatizable 17α-methyltestosterone over a period of 7 weeks; 18 fish served as untreated controls. 17α-MT induced precocious vitellogenesis that mirrored the natural maturational process during seasonal ovarian recrudescence. At the same time, 17α-MT exposure resulted in complete masculinization of the females' anal fin support structure normally observed during rainy season in adult males. We discuss possible hormonal mechanisms acting along the brain-pituitary-gonad axis that would explain the occurrence of precocious vitellogenesis and the male-typical transformation of the female's anal fin ray bases. Our findings are relevant to commercial aquaculture as the use of 17α-MT in fish hatcheries can pose serious environmental issues.
本文探讨了未成年雌性黑短电鳗(一种非洲弱电长颌鱼科物种)两性异形特征的可塑性。35条鱼以交错方式(每周5条)在7周的时间里暴露于可芳香化的17α-甲基睾酮中;18条鱼作为未处理的对照。17α-MT诱导了早熟的卵黄发生,这反映了季节性卵巢再发育期间的自然成熟过程。同时,暴露于17α-MT导致雌性臀鳍支撑结构完全雄性化,这一结构通常在成年雄性的雨季时观察到。我们讨论了沿脑-垂体-性腺轴作用的可能激素机制,这些机制可以解释早熟卵黄发生的出现以及雌性臀鳍鳍条基部的雄性典型转变。我们的发现与商业水产养殖相关,因为在鱼类孵化场使用17α-MT会带来严重的环境问题。