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Comparison of the MicroRNA Expression Profiles of Male and Female Avian Primordial Germ Cell Lines

机译:雄性和女性禽流性胚芽细胞系微小RNA表达谱的比较

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Primordial germ cells (PGCs) are the precursors of adult germ cells, and among the embryonic stem-like cells in the bird embryo, only they can transmit the genetic information to the next generation. Despite the wide range of applications, very little is known about the mechanism that governs primordial germ cell self-renewal and differentiation. As a first step, we compared 12 newly established chicken PGC lines derived from two different chicken breeds, performing CCK-8 proliferation assay. All of the lines were derived from individual embryos. A significant difference was found among the lines. As microRNAs have been proved to play a key role in the maintenance of pluripotency and the cell cycle regulation of stem cells, we continued with a complex miRNA analysis. We could discover miRNAs expressing differently in PGC lines with high proliferation rate, compared to PGC lines with low proliferation rate. We found that gga-miR-2127 expresses differently in female and male cell lines. The microarray analysis also revealed high expression level of the gga-miR-302b-3p strand (member of the miR-302/367 cluster) in slowly proliferating PGC lines compared to the gga-miR-302b-5p strand. We confirmed that the inhibition of miR-302b-5p significantly increases the doubling time of the examined PGC lines. In conclusion, we found that gga-miR-181-5p, gga-miR-2127, and members of the gga-miR-302/367 cluster have a dominant role in the regulation of avian primordial germ cell proliferation.
机译:原始生殖细胞(PGCs)是成人生殖细胞的前体,并且在鸟类胚胎中的胚胎干细胞中,只有它们可以将遗传信息传送到下一代。尽管应用范围广,但对治理原始生殖细胞自我更新和分化的机制很少。作为第一步,我们比较了12种新建的鸡PGC线衍生自两种不同的鸡品种,进行CCK-8增殖测定。所有线条源自单个胚胎。在线中发现了显着的差异。由于MicroRNA已被证明在维持多能性和干细胞的细胞周期调节中发挥关键作用,我们继续进行复杂的miRNA分析。与具有低增殖率的PGC线相比,我们可以发现具有高增殖率的PGC线路不同的MIRNA。我们发现GGA-MIR-2127在女性和雄性细胞系中表达不同。微阵列分析还揭示了与GGA-MIR-302B-5P链缓慢增殖PGC系中的GGA-miR-302b-3p链(MiR-302/367簇成员)的高表达水平。我们确认MIR-302B-5P的抑制显着增加了所检测的PGC线的倍增时间。总之,我们发现GGA-MIR-181-5P,GGA-MIR-2127和GGA-MIR-302/367群的成员在禽流扬原始生殖细胞增殖调节中具有显着作用。

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