首页> 外文期刊>The Journal of Reproduction and Development >Genome-Wide Transcript Expression Analysis in the Uterovaginal Junction in Association with Fertile Period in Tsaiya Ducks
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Genome-Wide Transcript Expression Analysis in the Uterovaginal Junction in Association with Fertile Period in Tsaiya Ducks

机译:柴雅鸭受精期在子宫阴道交界处的全基因组转录表达分析

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We performed the first genome-wide expression analysis to compare the differences in gene expression in the female sperm reservoir of the duck reproductive tract between two groups with long and short fertile periods to identify factors that may be associated with the fertile period using an oligonucleotide microarray. RNA was extracted from the uterovaginal junction (UV junction) of the two groups. Affymetrix chips containing comprehensive coverage of 32773 transcripts were hybridized with biotin-labeled cRNA, and three biological repeats were performed. We identified 27 transcripts as being differentially regulated. Interestingly, by mapping the differentially expressed transcripts to annotated pathways, we found that Neuropeptide Y (NPY), the RNA expression of which was increased by 2.96-fold in the short-fertile-period group as compared with the long-fertile-period group in our experiment, has been shown to reduce blood flow and substance supply to local tissues. Enah/Vasp-like (EVL), the RNA expression of which was significantly increased by 1.77-fold in the short-fertile-period group as compared with the long-period group, has been demonstrated to be important in activated T-cells. In contrast, trafficking kinesin-binding protein 1 (TRAK1), the expression of which was increased by 2.33-fold in the long-period group as compared with its counterparts, has been suggested to inhibit precocious activation of sperm and prolong sperm life in the female sperm reservoir. The results of real-time PCR confirmed the data obtained by microarray analysis. Our study demonstrated that combining global gene expression investigation with annotated pathway resources contributes to the understanding of sperm life when sustained in the UV junction.
机译:我们进行了首次全基因组表达分析,比较了长和短受精期的两组之间鸭生殖道雌性精子库中基因表达的差异,从而使用寡核苷酸微阵列鉴定了可能与受精期相关的因素。从两组的子宫阴道交界处(UV交界处)提取RNA。将包含全面覆盖32773个转录物的Affymetrix芯片与生物素标记的cRNA杂交,并进行三个生物学重复。我们确定了27个转录本受到差异调节。有趣的是,通过将差异表达的转录本定位到注释途径,我们发现神经肽Y(NPY)与短时间受精组相比,其RNA表达在短时间受精组中增加了2.96倍在我们的实验中,已经显示出可以减少血液流动和向局部组织的物质供应。 Enah / Vasp-like(EVL),在长生育期组中,其RNA表达在短生育期组中显着增加了1.77倍,已证明在活化T细胞中很重要。相比之下,有人提出运输激肽结合蛋白1(TRAK1)在长时期组中的表达与其对应物相比增加了2.33倍,它抑制了精子的早熟激活并延长了精子寿命。女性精子库。实时PCR的结果证实了通过微阵列分析获得的数据。我们的研究表明,将全球基因表达研究与带注释的途径资源结合在一起,有助于理解在紫外线接合处维持生命的精子生活。

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