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Estrogen exposure overrides the masculinizing effect of elevated temperature by a downregulation of the key genes implicated in sexual differentiation in a fish with mixed genetic and environmental sex determination

机译:通过混合遗传和环境性别确定鱼类的性别分化所涉及的关键基因被下调从而使雌激素暴露超越了高温的男性化作用

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摘要

id="__sec1title">BackgroundUnderstanding the consequences of thermal and chemical variations in aquatic habitats is of importance in a scenario of global change. In ecology, the sex ratio is a major population demographic parameter. So far, research that measured environmental perturbations on fish sex ratios has usually involved a few model species with a strong genetic basis of sex determination, and focused on the study of juvenile or adult gonads. However, the underlying mechanisms at the time of gender commitment are poorly understood. In an effort to elucidate the mechanisms driving sex differentiation, here we used the European sea bass, a fish species where genetics and environment (temperature) contribute equally to sex determination.
机译:id =“ __ sec1title”>背景在全球变化的情况下,了解水生栖息地的热化学变化的后果非常重要。在生态学中,性别比是主要的人口统计学参数。到目前为止,测量环境对鱼类性别比的干扰的研究通常涉及一些具有很强性别决定性遗传基础的模型物种,并且侧重于少年或成年性腺的研究。但是,对性别承诺时的基本机制了解甚少。为了阐明驱动性别分化的机制,我们在这里使用了欧洲鲈鱼,这是一种鱼类,其遗传和环境(温度)对性别决定的贡献相同。

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