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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Cell-Specific and Temporal Aspects of Gene Expression in the Chicken Oviduct at Different Stages of the Laying Cycle
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Cell-Specific and Temporal Aspects of Gene Expression in the Chicken Oviduct at Different Stages of the Laying Cycle

机译:产卵周期不同阶段鸡输卵管中基因表达的细胞特异性和时间方面

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摘要

Egg formation and embryonic development occur as the yolk passes through the magnum, isthmus, and shell gland of the oviduct before oviposition in hens. The present study identified candidate genes associated with secretory function of the chicken oviduct after ovulation and contributing to egg formation and oviposition. Hens (n = 5 per time point) were euthanized to recover the reproductive tract when the egg was in the magnum (3 h after ovulation) and the shell gland (20 h after ovulation). Total RNA was extracted from each segment of the oviducts and subjected to Affymetrix chicken GeneChip analysis. Quantitative PCR and in situ hybridization analyses of selected genes confirmed the validity of the gene expression patterns detected using microarray analysis. In particular, ACP1, CALB1, CYP26A1, PENK, RCAN1 and SPP1 expression increased significantly in the shell gland between 3 h and 20 h postovulation, whereas only RCNA1 expression increased significantly in the magnum between 3 h and 20 h postovulation. Results of the high-throughput analysis revealed cell-specific and temporal changes in gene expression in the oviduct at 3 h and 20 h postovulation in laying hens provide novel insight into changes at the molecular and cellular levels of candidate genes related to formation of the egg and oviposition.
机译:卵的形成和胚胎的发育发生在蛋黄通过母鸡的输卵管之前,通过卵黄质,峡部和壳腺。本研究确定了与排卵后鸡输卵管分泌功能相关并有助于卵形成和排卵的候选基因。当鸡蛋在大瓶中(排卵后3小时)和壳腺(排卵后20小时)时,对母鸡(每个时间点n = 5)实施安乐死以恢复生殖道。从输卵管的每个片段中提取总RNA,并进行Affymetrix鸡GeneChip分析。所选基因的定量PCR和原位杂交分析证实了使用微阵列分析检测到的基因表达模式的有效性。特别地,排卵后3 h至20 h之间,壳腺中ACP1,CALB1,CYP26A1,PENK,RCAN1和SPP1的表达显着增加,而排卵后3 h至20 h中,大瓶中只有RCNA1表达显着增加。高通量分析的结果表明,在产蛋母猪排卵后3小时和20小时,输卵管中基因表达的细胞特异性和时间变化为发现与卵形成有关的候选基因在分子和细胞水平上的变化提供了新颖的见解。和产卵。

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