Wang Zhiming, Jiang Sufei, Zhang Wenyi, Jin Shubo, Xiong Yiwei, Xu Ming, Gao Zijian, Xu Mingjia, Qiao Hui, Fu Hongtuo
National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai 201306, China.
Key Laboratory of Freshwater Fisheries and Germplasm Resources Utilization, Ministry of Agriculture and Rural Affairs, Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Wuxi 214081, China.
Int J Mol Sci. 2025 Jun 6;26(12):5459. doi: 10.3390/ijms26125459.
In this study, we identified two isoforms ( and ) in through bioinformatics analysis and characterized their phylogenetic relationships. The open reading frames of and were 1641 bp (encoding 546 amino acids) and 1473 bp (encoding 490 amino acids), respectively. Both isoforms exhibited high conservation, sharing five identical functional domains, with 58.43% amino acid sequence similarity. Quantitative PCR analysis revealed that expression was significantly higher than across all developmental stages and tissues. During embryonic development, showed elevated expression at the ZS, L15, and PL10, while was upregulated only at L15 and PL10. In the breeding season and non-breeding season, and were predominantly expressed in the hepatopancreas at levels significantly higher than in other tissues. Moreover, their expression in most tissues was higher during the breeding season than in the non-breeding season. experiments revealed that knockdown of both isoforms significantly accelerated ovarian development in , with the -silenced group exhibiting faster progression than the -silenced group. These results demonstrate that genes function as negative regulators of ovarian maturation, with exerting a stronger inhibitory effect than .
在本研究中,我们通过生物信息学分析在[具体物种]中鉴定出两种亚型([亚型1]和[亚型2]),并对它们的系统发育关系进行了表征。[亚型1]和[亚型2]的开放阅读框分别为1641 bp(编码546个氨基酸)和1473 bp(编码490个氨基酸)。两种亚型均表现出高度保守性,共享五个相同的功能域,氨基酸序列相似性为58.43%。定量PCR分析表明,在所有发育阶段和组织中,[亚型1]的表达均显著高于[亚型2]。在胚胎发育过程中,[亚型1]在ZS、L15和PL10阶段表达升高,而[亚型2]仅在L15和PL10阶段上调。在繁殖季节和非繁殖季节,[亚型1]和[亚型2]主要在肝胰腺中表达,其水平显著高于其他组织。此外,它们在大多数组织中的表达在繁殖季节高于非繁殖季节。[实验名称]实验表明,敲低两种亚型均显著加速了[具体物种]的卵巢发育,[亚型1]沉默组的进展比[亚型2]沉默组更快。这些结果表明,[亚型1]和[亚型2]基因作为卵巢成熟的负调节因子,[亚型1]的抑制作用比[亚型2]更强。