Function of Foxl2 and Dmrt1 proteins during gonadal differentiation in the olive flounder Paralichthys olivaceus

扁口鱼 生物 性别分化 牙鲆 挣扎 性二态性 重组DNA 性反转 双性恋 男科 性腺发育 性腺 动物 渔业 基因 内分泌学 遗传学 RNA剪接 核糖核酸 医学
作者
Chang Shu,Lijuan Wang,Congcong Zou,Xungang Tan,Yuxia Zou,Lingming Kong,Zhihao Wu,Qiaowan Wu,Lingling Wang,Guoyu Wang,Ze Li,Feng You
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:215: 141-154 被引量:14
标识
DOI:10.1016/j.ijbiomac.2022.06.098
摘要

Study on fish sex differentiation is important both from academic and practical aspects. Foxl2 and Dmrt1 are important transcription factors that should be involved in fish gonadal differentiation, but there is still no direct evidence to clarify their protein functions. Olive flounder Paralichthys olivaceus, an important mariculture fish in China, Japan, and Korea, shows sex-dimorphic growth. In this study, the Foxl2 and Dmrt1 proteins were detected in granulosa cells of the ovary and Sertoli cells of the testis, respectively, showing significant sex-dimorphic expression patterns. Then, bioactive high-purity Foxl2 and Dmrt1 recombinant proteins were obtained in vitro. Furthermore, effects of the recombinant Foxl2 and Dmrt1 during gonadal differentiation period were evaluated by intraperitoneal injection in juvenile fish. Compared with the control group, the male rate in the Dmrt1 group increased from 0 % to 82 %, showing for the first time in fish that the recombinant Dmrt1 could alter the sex phenotype. In addition, transcription levels of cyp19a and its transcription factors also changed after the recombinant Foxl2 and Dmrt1 injection. These findings reveal that Foxl2 and Dmrt1 are vital regulators for fish gonadal differentiation by regulating cyp19a expression, and also provide a new approach for sex control in fish aquaculture.
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