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1. UBE2I stimulates female gonadal differentiation in chicken (Gallus gallus) embryos
JIN Kai, ZHOU Jing, ZUO Qi-sheng, LI Jian-cheng, Jiuzhou SONG, ZHANG Ya-ni, CHANG Guo-bing, CHEN Guo-hong, LI Bi-chun
Journal of Integrative Agriculture    2021, 20 (11): 2986-2994.   DOI: 10.1016/S2095-3119(20)63486-4
摘要111)      PDF    收藏

该研究报道了一个新的雌性特异表达基因UBE2I,鉴定了其在鸡两性组织器官中的表达模式,并通过体内实验(干扰和过表达)研究了UBE2I在鸡胚性腺发育中的生物学功能。研究发现,UBE2I在鸡早期胚胎性腺中的PGCs(原始生殖细胞)中高表达,并在新生鸡卵巢组织中表现出高表达。与此同时,研究团队结合慢病毒和鸡胚血管注射技术建立了在鸡胚体内长期稳定干扰或过表达UBE2I表达的有效方法,并发现在UBE2I过表达的情况下,雌性的性别相关基因(FOXL2CYP19A1HINTW)被上调,而雄性的性别相关基因(SOX9DMRT1WT1)在干扰UBE2I后被下调,其对应的鸡胚性腺的组织也出现了对应的结构变化。与此同时,UBE2I表达的变化与雌二醇及其受体(ARESR)的水平有关,这些结果表明UBE2I是启动雌性鸡胚卵巢发育的关键因素。该研究结果有力的证明了UBE2I在鸡胚胎性别发育和分化过程中发挥了关键的作用。这是第一次报道UBE2I基因在鸡胚性别分化过程中发挥的功能,而UBE2I作为泛素化修饰过程中的重要调控因子,为进一步研究家禽性别决定的分子机理提供了新的思路。


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2. The expression of Lin28B was co-regulated by H3K4me2 and Wnt5a/β-catenin/TCF7L2
ZHANG Ya-ni, HU Cai, WANG Ying-jie, ZUO Qi-sheng, LI Bi-chun
Journal of Integrative Agriculture    2020, 19 (12): 3054-3064.   DOI: 10.1016/S2095-3119(20)63441-4
摘要121)      PDF    收藏
Lin28A and Lin28B are homologous RNA-binding proteins that participate in the development of primordial germ cells.  The mechanisms underlying expression and regulation of Lin28A have been well documented, but such information for Lin28B is limited.  In this study, a fragment of the Lin28B promoter was cloned, the pEGFP-pLin28B vector was constructed.  DF-1 chicken fibroblasts were transfected and the expression of green fluorescent protein (GFP) was measured.  Furtherly, Lin28B promoter of different lengths fragments was cloned using the chromosome-walking method and the fragments were ligated into the PGL3-Basic vector, and transfected into DF-1 cells.  Results of dual-luciferase reporter assay showed that the core of the Lin28B promoter was included in the sequence from –1 431 to –1 034 bp.  The binding sites of the transcription factor TCF7L2 was showed within this sequence by bioinformatics analysis.  The promoter activity of Lin28B was downregulated (P<0.05) when the TCF7L2 binding site was mutated.  Further experiments suggested that Lin28B promoter activity responded to the activation or inhibition of Wnt signaling.  Results of chromatin immunoprecipitation and quantitative PCR showed that β-catenin-TCF7L2 may be enriched in the Lin28B promoter core area.  In vivo and in vitro activation or inhibition of Wnt signaling significantly up- or down-regulated (P<0.05) Lin28B expression.  H3K4me2 enriched in the promoter of Lin28B, which affected the regulation of Wnt signaling to Lin28B.  In conclusion, our results showed that H3K4me2 and Wnt5a/β-catenin/TCF7L2 were the positive regulators of Lin28B expression.  Findings of this study may lay a theoretical foundation for illuminating the mechanism underlying Lin28B expression.
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3. Study on the role of JAK/STAT signaling pathway during chicken spermatogonial stem cells generation based on RNA-Seq
ZHANG Lei, ZUO Qi-sheng, LI Dong, LIAN Chao, Kamel E Ahmed, TANG Bei-bei, SONG Jiu-zhou, ZHANG Ya-ni, LI Bi-chun
Journal of Integrative Agriculture    2015, 14 (5): 939-948.   DOI: 10.1016/S2095-3119(14)60938-2
摘要2293)      PDF    收藏
Spermatogonial stem cells (SSCs) form the foundation for spermatogenesis and sustain male fertility. To explore the regulatory mechanisms of chicken SSCs generation, we obtained highly purified chicken embryonic stem cells (ESCs), primordial germ cells (PGCs) and SSCs by fluorescence-activated cell sorting (FACS). High-throughput analysis methods (RNA-Seq) were used to sequence the transcriptome level of these cells. Gene ontology and Kyoto encyclopedia of genes and genomes (KEGG) pathway enrichment were used to analyze RNA-Seq results. BMP4 was used to induce chicken ESCs differentiation to SSCs-like cells in vitro. The quantitative real-time (qRT)-PCR was used to detect the expression changes of the key genes. The results showed that 22 relevant critical pathways were found by RNA-Seq, one of them was the Janus kinase/signal transducer and activator of transcription (JAK/STAT) signaling pathway. Total of 103 related genes were detected in this pathway. Protein-protein interactions analysis found that 87 proteins were significantly related to 19 key proteins in this pathway. These 87 proteins were enriched in 21 biological processes and 18 signaling pathways. Moreover, during the differentiation of chicken ESCs to SSCs-like cells induced by BMP4 in vitro, JAK2 and STAT3 were activated. The qRT-PCR results showed that the expression trends of JAK2 and STAT3 were basically the same as in vivo. We concluded that JAK/STAT signaling pathway plays an important role in the process of chicken SSCs generation both in vivo and in vitro; it may achieve its function through multiple biological processes and other related pathways.
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