Key Laboratory of Freshwater Fish Reproduction and Development (Ministry of Education), Key Laboratory of Aquatic Science of Chongqing, School of Life Sciences, Southwest University, Chongqing 400715, China.
Genetics. 2022 Mar 3;220(3). doi: 10.1093/genetics/iyab237.
Duplicates of amh are crucial for fish sex determination and differentiation. In Nile tilapia, unlike in other teleosts, amh is located on X chromosome. The Y chromosome amh (amhΔ-y) is mutated with 5 bp insertion and 233 bp deletion in the coding sequence, and tandem duplicate of amh on Y chromosome (amhy) has been identified as the sex determiner. However, the expression of amh, amhΔ-y, and amhy, their roles in germ cell proliferation and the molecular mechanism of how amhy determines sex is still unclear. In this study, expression and functions of each duplicate were analyzed. Sex reversal occurred only when amhy was mutated as revealed by single, double, and triple mutation of the 3 duplicates in XY fish. Homozygous mutation of amhy in YY fish also resulted in sex reversal. Earlier and higher expression of amhy/Amhy was observed in XY gonads compared with amh/Amh during sex determination. Amhy could inhibit the transcription of cyp19a1a through Amhr2/Smads signaling. Loss of cyp19a1a rescued the sex reversal phenotype in XY fish with amhy mutation. Interestingly, mutation of both amh and amhy in XY fish or homozygous mutation of amhy in YY fish resulted in infertile females with significantly increased germ cell proliferation. Taken together, these results indicated that up-regulation of amhy during the critical period of sex determination makes it the sex-determining gene, and it functions through repressing cyp19a1a expression via Amhr2/Smads signaling pathway. Amh retained its function in controlling germ cell proliferation as reported in other teleosts, while amhΔ-y was nonfunctionalized.
amh 的重复对于鱼类性别决定和分化至关重要。在尼罗罗非鱼中,与其他硬骨鱼不同,amh 位于 X 染色体上。Y 染色体上的 amh(amhΔ-y)在编码序列中有 5bp 插入和 233bp 缺失的突变,并且已经鉴定出 Y 染色体上的 amh 串联重复(amhy)是性别决定者。然而,amh、amhΔ-y 和 amhy 的表达及其在生殖细胞增殖中的作用,以及 amhy 决定性别的确切分子机制尚不清楚。在这项研究中,分析了每个重复的表达和功能。只有当 amhy 发生突变时,才会发生性反转,这是通过在 XY 鱼中对 3 个重复物进行单、双和三重突变揭示的。在 YY 鱼中,amhy 的纯合突变也导致了性反转。在性别决定过程中,与 amh/Amh 相比,amh/Amhy 在 XY 性腺中的表达更早、更高。Amhy 可以通过 Amhr2/Smads 信号抑制 cyp19a1a 的转录。在 amhy 突变的 XY 鱼中,cyp19a1a 的缺失挽救了性反转表型。有趣的是,在 XY 鱼中同时突变 amh 和 amhy 或在 YY 鱼中纯合突变 amhy 导致不育的雌性,其生殖细胞增殖显著增加。综上所述,这些结果表明,amh 在性别决定的关键时期的上调使其成为性别决定基因,它通过 Amhr2/Smads 信号通路抑制 cyp19a1a 的表达来发挥作用。amh 保留了其在控制生殖细胞增殖中的作用,如在其他硬骨鱼中报道的那样,而 amhΔ-y 则失去了功能。