Liu Xu, Hu Weihua, Chen Ruiyi, Yang Yang, Yang Sixian, Xu Dongdong
Fisheries College, Zhejiang Ocean University, Zhoushan 316022, China.
Key Laboratory of Mariculture and Enhancement, Zhejiang Marine Fisheries Research Institute, Zhoushan 316021, China.
Biology (Basel). 2025 Aug 14;14(8):1054. doi: 10.3390/biology14081054.
Gonadal development and spermatogenesis critically influence fish reproductive performance. Neomales (genetically female but functionally male) are indispensable for generating all-female populations, yet their spermatogenesis remains understudied. In the present study, we systematically investigated gonadal maturation in neomales of the large yellow croaker (), an economically important marine species exhibiting sexually dimorphic growth. We examined the growth performance and gonadal development throughout the maturation process in neomales and control males. Results showed comparable growth performance but a temporal divergence in gonadal development: the gonadosomatic index (GSI) of neomales was significantly higher than control males at 400 and 430 days post-hatching (dph), but not at 460 dph during the reproductive period. Histological, ultrastructural (TEM), and immunofluorescence analyses collectively demonstrated that neomale testes contained all major spermatogenic cell types. Their morphological characteristics and expression patterns of key markers-germ cells (), Sertoli cells (), and meiotic recombination ()-were similar to control males. These findings enhance understanding of gonadal development and spermatogenesis in neomales, providing a theoretical and technical foundation for large-scale production of all-female large yellow croaker.
性腺发育和精子发生对鱼类繁殖性能至关重要。伪雄鱼(基因上为雌性但功能上为雄性)对于培育全雌群体不可或缺,然而其精子发生仍未得到充分研究。在本研究中,我们系统地研究了大黄鱼(一种具有明显性别二态性生长的重要经济海洋物种)伪雄鱼的性腺成熟情况。我们检查了伪雄鱼和对照雄鱼在整个成熟过程中的生长性能和性腺发育。结果显示生长性能相当,但性腺发育存在时间差异:在孵化后400天和430天,伪雄鱼的性腺指数(GSI)显著高于对照雄鱼,但在繁殖期的460天则不然。组织学、超微结构(透射电子显微镜)和免疫荧光分析共同表明,伪雄鱼睾丸包含所有主要的生精细胞类型。它们的形态特征以及关键标记物(生殖细胞、支持细胞和减数分裂重组)的表达模式与对照雄鱼相似。这些发现增进了对伪雄鱼性腺发育和精子发生的理解,为大规模生产全雌大黄鱼提供了理论和技术基础。