Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources (Shanghai Ocean University), Ministry of Education; International Research Center for Marine Biosciences at Shanghai Ocean University, Ministry of Science and Technology; National Demonstration Center for Experimental Fisheries Science Education, Shanghai Ocean University, Shanghai, 201306, China.
Tianjin Sea Fisheries Research Institute, Tianjin, China.
BMC Genomics. 2020 Apr 15;21(1):302. doi: 10.1186/s12864-020-6660-7.
Piwi-interacting RNAs (piRNAs) have been linked to epigenetic and post-transcriptional gene silencing of retrotransposons in germ line cells, particularly in spermatogenesis. Exosomes are important mediators of vesicle transport, and the piRNAs in exosomes might play an important role in cell communication and signal pathway regulation. Moreover, exosomic piRNAs are promising biomarkers for disease diagnosis and physiological status indication. We used Cynoglossus semilaevis because of its commercial value and its sexual dimorphism, particularly the sex reversed "pseudomales" who have a female karyotype, produce sperm, and copulate with normal females to produce viable offspring.
To determine whether piRNAs from fish germ line cells have similar features, seminal plasma exosomes from half-smooth tongue sole, C. semilaevis, were identified, and their small RNAs were sequenced and analysed. We identified six signature piRNAs as biomarkers in exosomes of seminal plasma from males and pseudomale C. semilaevis. Bioinformatic analysis showed that all six signatures were sex-related, and four were DNA methylation-related and transposition-related piRNAs. Their expression profiles were verified using real-time quantitative PCR. The expression of the signature piRNAs was markedly higher in males than in pseudomales. The signature piRNAs could be exploited as male-specific biomarkers in this fish.
These signatures provide an effective tool to explore the regulatory mechanism of sex development in C. semilaevis and may provide guidance for future research on the function of piRNAs in the generative mechanism of sex reversed "pseudomales" in C. semilaevis.
Piwi 相互作用 RNA(piRNAs)已被证明与生殖细胞中逆转录转座子的表观遗传和转录后基因沉默有关,尤其是在精子发生中。外泌体是囊泡运输的重要介质,外泌体中的 piRNAs 可能在细胞通讯和信号通路调节中发挥重要作用。此外,外泌体 piRNAs 是疾病诊断和生理状态指示的有前途的生物标志物。我们选择半滑舌鳎,因为它具有商业价值和性别二态性,特别是性反转的“假雄鱼”,它们具有雌性核型,产生精子,并与正常雌鱼交配产生可育后代。
为了确定鱼类生殖细胞中的 piRNAs 是否具有相似的特征,我们鉴定了半滑舌鳎精液外泌体,并对其小 RNA 进行了测序和分析。我们鉴定了六个特征性 piRNAs 作为雄性和性反转的半滑舌鳎假雄鱼精液外泌体中的生物标志物。生物信息学分析表明,这六个特征均与性别相关,其中四个与 DNA 甲基化和转座相关的 piRNAs 相关。使用实时定量 PCR 验证了它们的表达谱。这些特征性 piRNAs 在雄性中的表达明显高于假雄鱼。这些特征性 piRNAs 可作为该鱼类的雄性特异性生物标志物。
这些特征为研究半滑舌鳎的性别发育调控机制提供了有效的工具,并可能为未来研究 piRNAs 在性反转“假雄鱼”生殖机制中的功能提供指导。