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Comparative analysis of temporal gene expression patterns in the developing ovary of the embryonic chicken

机译:胚胎鸡发育卵巢中时间基因表达模式的比较分析

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摘要

Many genes participate in the process of ovarian germ cell development, while the combined action mechanisms of these molecular regulators still need clarification. The present study was focused on determination of differentially expressed genes and gene functions at four critical time points in chicken ovarian development. Comparative transcriptional profiling of ovaries from embryonic day 5.5 (E5.5), E12.5, E15.5 and E18.5 was performed using an Affymetrix GeneChip chicken genome microarray. Differential expression patterns for genes specifically depleted and enriched in each stage were identified. The results showed that most of the up- and downregulated genes were involved in the metabolism of retinoic acid (RA) and synthesis of hormones. Among them, a higher number of up- and downregulated genes in the E15.5 ovary were identified as being involved in steroid biosynthesis and retinol metabolism, respectively. To validate gene changes, expressions of twelve candidate genes related to germ cell development were examined by real-time PCR and found to be consistent with the of GeneChip data. Moreover, the immunostaining results suggested that ovarian development during different stages was regulated by different genes. Furthermore, a Raldh2 knockdown chicken model was produced to investigate the fundamental role of Raldh2 in meiosis initiation. It was found that meiosis occurred abnormally in Raldh2 knockdown ovaries, but the inhibitory effect on meiosis was reversed by the addition of exogenous RA. This study offers insights into the profile of gene expression and mechanisms regulating ovarian development, especially the notable role of Raldh2 in meiosis initiation in the chicken.
机译:许多基因参与了卵巢生殖细胞的发育过程,而这些分子调节剂的联合作用机制仍然需要阐明。本研究的重点是确定在鸡卵巢发育的四个关键时间点差异表达的基因和基因功能。使用Affymetrix GeneChip鸡基因组微阵列对来自胚胎第5.5天(E5.5),E12.5,E15.5和E18.5的卵巢进行比较转录谱分析。鉴定了在每个阶段中特异性消耗和富集的基因的差异表达模式。结果表明,大多数上调和下调的基因都参与了维甲酸(RA)的代谢和激素的合成。其中,E15.5卵巢中较高数量的上调和下调基因被确定分别参与类固醇的生物合成和视黄醇的代谢。为了验证基因变化,通过实时PCR检测了与生殖细胞发育相关的十二种候选基因的表达,发现与基因芯片数据一致。此外,免疫染色结果表明,不同阶段的卵巢发育受不同基因调控。此外,产生了Raldh2组合式鸡模型以研究Raldh2在减数分裂起始中的基本作用。已经发现Raldh2敲除卵巢中减数分裂异常发生,但是通过添加外源RA逆转了对减数分裂的抑制作用。这项研究提供了对基因表达谱和调控卵巢发育的机制的见解,尤其是Raldh2在鸡减数分裂起始中的显着作用。

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