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芳香化酶的靶向破坏揭示了斑马鱼性别分化过程中cyp19a1a的双重功能。

Targeted Disruption of Aromatase Reveals Dual Functions of cyp19a1a During Sex Differentiation in Zebrafish.

作者信息

Yin Yike, Tang Haipei, Liu Yun, Chen Yu, Li Gaofei, Liu Xiaochun, Lin Haoran

机构信息

State Key Laboratory of Biocontrol, Institute of Aquatic Economic Animals and Guangdong Province Key Laboratory for Aquatic Economic Animals, School of Life Sciences, Sun Yat-Sen University, Guangzhou 510275, China.

出版信息

Endocrinology. 2017 Sep 1;158(9):3030-3041. doi: 10.1210/en.2016-1865.

Abstract

Aromatase (encoded by the cyp19a1a and cyp19a1b genes) plays a central role in sex differentiation in fish, but its precise roles during sex differentiation are still largely unknown. Here, we systematically generated cyp19a1a and cyp19a1b mutant lines as well as a cyp19a1a;cyp19a1b double mutant line in zebrafish using transcription activatorlike effector nucleases. Our results showed that cyp19a1a mutants and cyp19a1a;cyp19a1b double mutants, but not cyp19a1b mutants, had impaired sex differentiation, and all cyp19a1a mutants and cyp19a1a;cyp19a1b double mutants were males. During sex differentiation, the ovary-like gonads were not observed and the male sex differentiation program was delayed in the cyp19a1a-null fish, and these phenotypes could be partially rescued by 17β-estradiol treatment. Gene expression analysis indicated that male and female sex differentiation-related genes were significantly decreased in the cyp19a1a mutant. Collectively, our results revealed dual functions of the cyp19a1a gene during sex differentiation: cyp19a1a is not only indispensable for female sex differentiation but also required for male sex differentiation.

摘要

芳香化酶(由cyp19a1a和cyp19a1b基因编码)在鱼类性别分化中起核心作用,但其在性别分化过程中的精确作用仍 largely未知。在此,我们使用转录激活样效应核酸酶在斑马鱼中系统地生成了cyp19a1a和cyp19a1b突变系以及cyp19a1a;cyp19a1b双突变系。我们的结果表明,cyp19a1a突变体和cyp19a1a;cyp19a1b双突变体(而非cyp19a1b突变体)的性别分化受损,且所有cyp19a1a突变体和cyp19a1a;cyp19a1b双突变体均为雄性。在性别分化过程中,未观察到卵巢样性腺,且cyp19a1a基因缺失的鱼中雄性性别分化程序延迟,这些表型可通过17β-雌二醇处理部分挽救。基因表达分析表明,cyp19a1a突变体中与雄性和雌性性别分化相关的基因显著减少。总体而言,我们的结果揭示了cyp19a1a基因在性别分化过程中的双重功能:cyp19a1a不仅对雌性性别分化不可或缺,而且对雄性性别分化也必不可少。

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