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首页> 外文期刊>Aquaculture >Sex-ratio, early sex steroid profiles and cyp19a1b, dmrt1 and foxl2 gene expressions upon high temperature treatment of undifferentiated African catfish juveniles (Clarias gariepinus)
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Sex-ratio, early sex steroid profiles and cyp19a1b, dmrt1 and foxl2 gene expressions upon high temperature treatment of undifferentiated African catfish juveniles (Clarias gariepinus)

机译:性别比率,早期性类固醇和CYP19A1B,DMRT1和FOXL2基因表达在未分化的非洲鲶青少年(Clarias Gariepinus)的高温处理

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摘要

Different mechanisms are involved in high temperature-induced masculinization among teleost fishes. These mechanisms need to be investigated in African catfish, a species with a XX/XY genetic sex determinism that can be overridden by high temperature (HT). The influence of HT on the three main sex steroid hormones (testosterone - T, 17 beta-estradiol - E2, and 11-ketotestosterone - 11KT) was assessed from non-fertilized eggs to 14 days post-hatching (dph) in eggs or whole body of six full-sib progenies reared at 28 degrees C (control) and 36 degrees C for 6 to 8 dph (high masculinizing temperature). HT effect on foxl2, cyp19a1b and dmrt1 expression was also investigated in the head at the end of the thermal treatment (8 dph) and shortly after (14 dph) in the six progenies. Masculinization rates in fish exposed to HT ranged from 30 to 100%, but did not influence sex steroid levels. However, the masculinization rate was correlated with 11KT levels at 1-h post-fertilization, suggesting that 11KT level at this phase may influence the masculinization potential. Expression of foxl2 was not detected in the head during the experimental period while, to our knowledge, this is the first report of dmrt1 expression in teleost fish head (perhaps in brain). Similar to sex steroid hormones, HT did not induce significant changes in cyp19a1b or dmrt1 relative expressions in the brain. Nevertheless, when results were split into two groups, according to the masculinization rates of progenies, lower thermosensitive progenies showed high cyp19a1b relative expression shortly after HT treatment, while in control groups, highly thermosensitive progenies displayed high dmrt1 relative expression at 14 dph. While this may be true, a direct link between the HT treatment and the biological indicators analyzed was not clear and the mechanisms of masculinization have to be further investigated, particularly in the gonad.
机译:不同的机制参与了紧邻Textost鱼的高温诱导的男性化。需要在非洲鲶鱼中调查这些机制,一种具有XX / XY遗传性别决定措施的物种,可以被高温(HT)覆盖。 HT对三种主要性类固醇激素的影响(睾酮-T,17β-雌二醇 - E2和11- ketotestorone - 11kt)在鸡蛋或全部的孵化后(DPH)后14天评估了14天六个全SIB后代的身体在28℃(对照)和36℃下饲养6至8分:高阳像温度)。在热处理(8分钟)结束时还在头部中研究了对FOXL2,CYP19A1B和DMRT1表达的HT效应,并且在六个后部(14dPH)之后不久(14dph)。暴露于HT的鱼中的男性化速率范围为30%至100%,但没有影响性类固醇水平。然而,阳性化速率与施肥后1小时的11kt水平相关,表明该阶段的11kt水平可能影响阳性化潜力。在实验期间未在头部检测到FOXL2的表达,同时,对于我们的知识,这是Textost鱼头中DMRT1表达的第一个报告(可能在大脑中)。类似于性类固醇激素,HT没有诱导大脑中CYP19A1B或DMRT1相对表达的显着变化。然而,当结果分为两组的结果,根据后代的男性化速率,HT治疗后不久的升温后,较低的热敏后代显示高CYP19A1B相对表达,同时在对照组中,高温敏感的后代在14dph下显示高DMRT1相对表达。虽然这可能是真的,但分析的HT治疗与生物指标之间的直接联系尚不清楚,并且必须进一步研究阳性化的机制,特别是在Gonad中。

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