Xu Pingrui, Xiao Yongshuang, Xiao Zhizhong, Li Jun
State Key Laboratory of Breeding Biotechnology and Sustainable Aquaculture, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, China.
Laboratory for Marine Biology and Biotechnology, Qingdao Marine Science and Technology Center, Qingdao, China.
Mar Biotechnol (NY). 2025 Feb 1;27(1):40. doi: 10.1007/s10126-025-10417-0.
The fish species Oplegnathus fasciatus exhibits an XXXX/XXY sex determination mechanism. This species holds considerable economic value and displays pronounced sexual dimorphism in growth. Therefore, the development of a rapid and accurate method for sex identification is critical to enhancing breeding efficiency and maximizing production value. Using third-generation PacBio whole-genome sequencing, we identified a homologous region in the samd3/elf3 intergenic region of the X and Y chromosomes of O. fasciatus. Analysis of the whole-genome sequence revealed a large DNA insertion marker fragment within this region. Using specifically designed primers, two bands of 390 bp and 1008 bp were successfully amplified in males, whereas only a single 390 bp band was detected in females. This marker can be easily distinguished by agarose gel electrophoresis, greatly enhancing the efficiency and accuracy of sex identification. This study not only expands the molecular marker system for sex identification of O. fasciatus but also offers a valuable methodological reference for sex identification in other economically important fish species. These findings have significant implications for germplasm improvement and efficient selection in aquaculture.
条石鲷(Oplegnathus fasciatus)这种鱼类呈现出XXXX/XXY性别决定机制。该物种具有相当高的经济价值,并且在生长方面表现出明显的两性异形。因此,开发一种快速准确的性别鉴定方法对于提高育种效率和最大化生产价值至关重要。利用第三代PacBio全基因组测序,我们在条石鲷的X和Y染色体的samd3/elf3基因间区域鉴定出一个同源区域。对全基因组序列的分析揭示了该区域内一个大的DNA插入标记片段。使用专门设计的引物,在雄性个体中成功扩增出两条分别为390 bp和1008 bp的条带,而在雌性个体中仅检测到一条390 bp的条带。该标记通过琼脂糖凝胶电泳很容易区分,大大提高了性别鉴定的效率和准确性。本研究不仅扩展了条石鲷性别鉴定的分子标记系统,还为其他具有重要经济价值的鱼类的性别鉴定提供了有价值的方法学参考。这些发现对水产养殖中的种质改良和高效选育具有重要意义。