Bai Man, Sun Limin, Zhao Jia, Xiang Lujie, Cheng Xiaoyin, Li Jiarong, Jia Chao, Jiang Huaizhi
College of Animal Science and Technology, Jilin Agricultural University, Changchun, 130118, China.
Naturwissenschaften. 2017 Sep 25;104(9-10):84. doi: 10.1007/s00114-017-1505-1.
Testis development and spermatogenesis are vital factors that influence male animal fertility. In order to identify spermatogenesis-related genes and further provide a theory basis for finding biomarkers related to male sheep fertility, 2-, 6-, and 12-month-old Small Tail Han Sheep testes were selected to investigate the dynamic changes of sheep testis development. Hematoxylin-eosin routine staining and RNA-Seq technique were used to perform histological and transcriptome analysis for these testes. The results showed that 630, 102, and 322 differentially expressed genes (DEGs) were identified in 2- vs 6-month-old, 6- vs 12-month-old, and 2- vs 12-month-old testes, respectively. GO and KEGG analysis showed the following: DEGs in 2- vs 6-month-old testes were mainly related to the GO terms of sexual maturation and the pathways of multiple metabolism and biosynthesis; in 6- vs 12-month-old testes, most of the GO terms that DEGs involved in were related to metabolism and translation processes; the most significantly enriched pathway is the ribosome pathway. The union of DEGs in 2- vs 6-month-old, 6- vs 12-month-old, and 2- vs 12-month-old testes was categorized into eight profiles by series cluster. Subsequently, the eight profiles were classified into four model profiles and four co-expression networks were constructed based on the DEGs in these model profiles. Finally, 29 key regulatory genes related to spermatogenesis were identified in the four co-expression networks. The expression of 13 DEGs (CA3, APOH, MYOC, CATSPER4, SYT6, SERPINA10, DAZL, ADIPOR2, RAB13, CEP41, SPAG4, ODF1, and FRG1) was validated by RT-PCR.
睾丸发育和精子发生是影响雄性动物繁殖力的重要因素。为了鉴定与精子发生相关的基因,并进一步为寻找与雄性绵羊繁殖力相关的生物标志物提供理论依据,选取2月龄、6月龄和12月龄的小尾寒羊睾丸,研究绵羊睾丸发育的动态变化。采用苏木精-伊红常规染色和RNA测序技术对这些睾丸进行组织学和转录组分析。结果显示,在2月龄与6月龄、6月龄与12月龄、2月龄与12月龄的睾丸中分别鉴定出630个、102个和322个差异表达基因(DEG)。基因本体(GO)和京都基因与基因组百科全书(KEGG)分析表明:2月龄与6月龄睾丸中的DEG主要与性成熟的GO术语以及多种代谢和生物合成途径相关;在6月龄与12月龄的睾丸中,DEG涉及的大多数GO术语与代谢和翻译过程相关;最显著富集的途径是核糖体途径。通过序列聚类将2月龄与6月龄、6月龄与12月龄、2月龄与12月龄睾丸中的DEG并集分为8个谱。随后,将这8个谱分为4个模型谱,并基于这些模型谱中的DEG构建了4个共表达网络。最后,在4个共表达网络中鉴定出29个与精子发生相关的关键调控基因。通过逆转录聚合酶链反应(RT-PCR)验证了13个DEG(CA3、APOH、MYOC、CATSPER4、SYT6、SERPINA10、DAZL、ADIPOR2、RAB13、CEP41、SPAG4、ODF1和FRG1)的表达。