首页> 外文期刊>BMC Genomics >Transcriptome profiling of laser-captured germ cells and functional characterization of zbtb40 during 17alpha-methyltestosterone-induced spermatogenesis in orange-spotted grouper (Epinephelus coioides)
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Transcriptome profiling of laser-captured germ cells and functional characterization of zbtb40 during 17alpha-methyltestosterone-induced spermatogenesis in orange-spotted grouper (Epinephelus coioides)

机译:激光捕获的生殖细胞的转录组分析和ZBTB40期间橙色斑点石斑鱼(Epinephelus Coioides)诱导的精子发生期间的ZBTB40的功能表征

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BACKGROUND:Spermatogenesis is an intricate process regulated by a finely organized network. The orange-spotted grouper (Epinephelus coioides) is a protogynous hermaphroditic fish, but the regulatory mechanism of its spermatogenesis is not well-understood. In the present study, transcriptome sequencing of the male germ cells isolated from orange-spotted grouper was performed to explore the molecular mechanism underlying spermatogenesis.RESULTS:In this study, the orange-spotted grouper was induced to change sex from female to male by 17alpha-methyltestosterone (MT) implantation. During the spermatogenesis, male germ cells (spermatogonia, spermatocytes, spermatids, and spermatozoa) were isolated by laser capture microdissection. Transcriptomic analysis for the isolated cells was performed. A total of 244,984,338 clean reads were generated from four cDNA libraries. Real-time PCR results of 13 genes related to sex differentiation and hormone metabolism indicated that transcriptome data are reliable. RNA-seq data showed that the female-related genes and genes involved in hormone metabolism were highly expressed in spermatogonia and spermatozoa, suggesting that these genes participate in the spermatogenesis. Interestingly, the expression of zbtb family genes showed significantly changes in the RNA-seq data, and their expression patterns were further examined during spermatogenesis. The analysis of cellular localization of Eczbtb40 and the co-localization of Eczbtb40 and Eccyp17a1 in different gonadal stages suggested that Eczbtb40 might interact with Eccyp17a1 during spermatogenesis.CONCLUSIONS:Our study, for the first time,?investigated the transcriptome of the male germ cells from orange-spotted grouper, and identified functional genes, GO terms, and KEGG pathways involved in spermatogenesis. Furthermore, Eczbtb40 was first characterized and its role during spermatogenesis was predicted. These data will contribute to future studies on the molecular mechanism of spermatogenesis in teleosts.
机译:背景:精子发生是由精细组织的网络调节的复杂过程。橙色斑点的石斑鱼(Epinephelus coioides)是一种常好的雌雄同体鱼类,但其精子发生的调节机制并不熟知。在本研究中,进行从橙色斑点的地震分离的雄性生殖细胞的转录组测序以探讨潜在的精子发生的分子机制。结果:在这项研究中,诱导橙色斑点的石斑鱼通过17Alpha从女性转变为男性的性行为 - 甲基酮(MT)植入。在精子发生期间,通过激光捕获微量分离分离出雄性生殖细胞(精子酰基,精子,精子,精子和精子)。进行分离的细胞的转录组分析。共有244,984,338个清洁读数来自四个cDNA文库。与性分化和激素代谢相关的13个基因的实时PCR结果表明转录组数据是可靠的。 RNA-SEQ数据显示,参与激素代谢的女性相关基因和基因在精子寄生和精子中高度表达,表明这些基因参与了精子发生。有趣的是,ZBTB家族基因的表达显示RNA-SEQ数据的显着变化,并且在精子发生期间进一步检查它们的表达模式。不同性腺阶段的EczBtb40细胞定位的分析和EczBtb40和Eccyp17a1的共定位,表明EczBtb40可以在精子发生期间与Eccyp17a1相互作用。结论:我们的研究首次,研究了雄性生殖细胞的转录组橙色斑点的石斑鱼,并确定了涉及精子发生的官能基因,GO术语和KEGG途径。此外,首先进行了ECZBTB40,预测了在精子发生期间的作用。这些数据将有助于未来对紧邻精子发生的分子机制的研究。

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