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Dynamics of the Transcriptome during Human Spermatogenesis: Predicting the Potential Key Genes Regulating Male Gametes Generation

机译:人类精子发生过程中转录组的动力学:预测调控雄性配子生成的潜在关键基因。

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摘要

Many infertile men are the victims of spermatogenesis disorder. However, conventional clinical test could not provide efficient information on the causes of spermatogenesis disorder and guide the doctor how to treat it. More effective diagnosis and treating methods could be developed if the key genes that regulate spermatogenesis were determined. Many works have been done on animal models, while there are few works on human beings due to the limited sample resources. In current work, testis tissues were obtained from 27 patients with obstructive azoospermia via surgery. The combination of Fluorescence Activated Cell Sorting and Magnetic Activated Cell Sorting was chosen as the efficient method to sort typical germ cells during spermatogenesis. RNA Sequencing was carried out to screen the change of transcriptomic profile of the germ cells during spermatogenesis. Differential expressed genes were clustered according to their expression patterns. Gene Ontology annotation, pathway analysis, and Gene Set Enrichment Analysis were carried out on genes with specific expression patterns and the potential key genes such as HOXs, JUN, SP1, and TCF3 which were involved in the regulation of spermatogenesis, with the potential value serve as molecular tools for clinical purpose, were predicted.
机译:许多不育男人是精子发生障碍的受害者。但是,传统的临床测试不能提供有关精子发生障碍的有效信息,也无法指导医生如何治疗。如果确定了调节精子发生的关键基因,则可以开发出更有效的诊断和治疗方法。在动物模型上已经完成了许多工作,而由于样本资源有限,关于人类的工作却很少。在目前的工作中,通过手术从27例梗阻性无精子症患者中获得了睾丸组织。选择荧光激活细胞分选和磁性激活细胞分选的组合作为在生精过程中对典型生殖细胞进行分选的有效方法。进行RNA测序以筛选在精子发生过程中生殖细胞转录组谱的变化。差异表达的基因根据其表达模式聚类。对具有特定表达模式的基因以及可能参与精子发生调控的关键关键基因(如HOXs,JUN,SP1和TCF3)进行基因本体论注释,途径分析和基因组富集分析。作为临床目的的分子工具,已被预测。

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