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Transcriptome analysis of turkey (Meleagris gallopavo) reproductive tract revealed key pathways regulating spermatogenesis and post-testicular sperm maturation

机译:土耳其(Meleagris Gallopavo)生殖道的转录组分析显示了键途径调节精子发生和睾丸后精子成熟

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摘要

The application of transcriptomics to the study of the reproductive tract in male turkeys can significantly increase our current knowledge regarding the specifics of bird reproduction. To characterize the complex transcriptomic changes that occur in the testis, epididymis, and ductus deferens, deep sequencing of male turkey RNA samples (n = 6) was performed, using Illumina RNA-Seq. The obtained sequence reads were mapped to the turkey genome, and relative expression values were calculated to analyze differentially expressed genes (DEGs). Statistical analysis revealed 1,682; 2,150; and 340 DEGs in testis/epididymis, testis/ductus deferens, and epididymis/ductus deferens comparisons, respectively. The expression of selected genes was validated using quantitative real-time reverse transcriptase-polymerase chain reaction. Bioinformatics analysis revealed several potential candidate genes involved in spermatogenesis, spermiogenesis and flagellum formation in the testis, and in post-testicular sperm maturation in the epididymis and ductus deferens. In the testis, genes were linked with the mitotic proliferation of spermatogonia and the meiotic division of spermatocytes. Histone ubiquitination and protamine phosphorylation were shown to be regulatory mechanisms for nuclear condensation during spermiogenesis. The characterization of testicular transcripts allowed a better understanding of acrosome formation and development and flagellum formation, including axoneme structures and functions. Spermatozoa motility during post-testicular maturation was linked to the development of flagellar actin filaments and biochemical processes, including Ca2+ influx and protein phosphorylation/dephosphorylation. Spermatozoa quality appeared to be controlled by apoptosis and antioxidant systems in the epididymis and ductus deferens. Finally, genes associated with reproductive system development and morphogenesis were identified. To the best of our knowledge, this is the first genome-wide functional investigation of genes associated with tissue-specific processes in turkey reproductive tract. A catalog of genes worthy of further studies to understand the avian reproductive physiology and regulation was provided.
机译:转录组织在雄性火鸡生殖道研究中的应用可以显着提高关于鸟类繁殖细节的目前的知识。为了表征睾丸,附睾和导管输精管中发生的复杂转录组变化,使用Illumina RNA-SEQ进行雄性火鸡RNA样品(n = 6)的深序。将获得的序列读数映射到火鸡基因组,并计算相对表达值以分析差异表达基因(DEG)。统计分析显示1,682; 2,150;和睾丸/附睾,睾丸/导管和髋关节/导管分别进行340次,分别在睾丸/导管和屈光度分别比较。使用定量实时逆转录酶 - 聚合酶链反应验证所选基因的表达。生物信息学分析揭示了睾丸中涉及精子发生,精子发生和鞭毛形成的几种潜在候选基因,以及附睾和导管睾丸切片的睾丸后精子成熟。在睾丸中,基因与精子肽的有丝分裂增殖和精子细胞的减数分裂。显示组蛋白泛素化和预氨基磷酸化是精子发生过程中核凝结的调节机制。睾丸转录物的表征允许更好地了解肌肉组形成和开发和鞭毛形成,包括轴突结构和功能。睾丸后成熟期间的精子菌与鞭毛肌动蛋白长丝和生物化学过程的发育有关,包括Ca2 +流入和蛋白质磷酸化/去磷酸化。精子毒素质量似乎是通过附睾和导管凋亡的细胞凋亡和抗氧化系统控制。最后,确定了与生殖系统发育和形态发生相关的基因。据我们所知,这是与土耳其生殖道相关组织特异性过程相关的基因的第一个基因组功能调查。提供了有价值进一步研究以了解禽生殖生理学和监管的基因目录。

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