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Association Between the Methylation Statuses at CpG Sites in the Promoter Region of the SLCO1B3, RNA Expression and Color Change in Blue Eggshells in Lushi Chickens

机译:在兰西鸡的蓝色蛋壳的SLCO1B3,RNA表达和颜色变化中CPG位点与南风鸡的颜色变化之间的甲基化状态

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摘要

The formation mechanism underlying the blue eggshell characteristic has been discovered in birds, and SLCO1B3 is the key gene that regulates the blue eggshell color. Insertion of an endogenous retrovirus, EAV-HP, in the SLCO1B3 5′ flanking region promotes SLCO1B3 expression in the chicken shell gland, and this expression causes bile salts to enter the shell gland, where biliverdin is secreted into the eggshell, forming a blue shell. However, at different laying stages of the same group of chickens, the color of the eggshell can vary widely, and the molecular mechanism underlying the eggshell color change remains unknown. Therefore, to reveal the molecular mechanism of the blue eggshell color variations, we analyzed the change in the eggshell color during the laying period. The results indicated that the eggshell color in Lushi chickens can be divided into three stages: 20–25 weeks for dark blue, 26–45 weeks for medium blue, and 46–60 weeks for light blue. We further investigated the expression and methylation levels of the SLCO1B3 gene at eight different weeks, finding that the relative expression of SLCO1B3 was significantly higher at 25 and 30 weeks than at other laying weeks. Furthermore, the overall methylation rate of the SLCO1B3 gene in Lushi chickens increased gradually with increasing weeks of egg production, as shown by bisulfite sequencing PCR. Pearson correlation analysis showed that methylation of the promoter region of SLCO1B3 was significantly negatively correlated with both SLCO1B3 expression in the shell gland tissue and eggshell color. In addition, we predicted that CpG5 and CpG8 may be key sites for regulating SLCO1B3 gene transcription. Our findings show that as the level of methylation increases, methylation of the CpG5 and CpG8 sites hinders the binding of transcription factors to the promoter, reducing SLCO1B3 expression during the late period and resulting in a lighter eggshell color.
机译:在鸟类中发现了蓝色蛋壳特征的形成机制,SLCO1B3是调节蓝色蛋壳颜色的关键基因。在SLCO1B3 5'侧翼区域中插入内源性逆转录病毒EAV-HP促进鸡壳腺中的SLCO1B3表达,并且该表达导致胆汁进入壳体,其中Biliverdin分泌到蛋壳中,形成蓝壳。然而,在同一组鸡的不同脱水阶段,蛋壳的颜色可以广泛变化,并且蛋壳颜色变化的分子机制仍然未知。因此,为了揭示蓝蛋壳颜色变化的分子机制,我们在铺设时期分析了蛋壳颜色的变化。结果表明,兰西鸡中的蛋壳颜色可分为三个阶段:深蓝色,26-45周的蓝色26-45周,浅蓝色为46-60周。我们进一步研究了SLCO1B3基因在八个不同周的表达和甲基化水平,发现SLCO1B3的相对表达在25和30周的25和30周中显着高于其他铺设周。此外,随着鸡蛋产量的增加,植精鸡的SLCO1B3基因的总甲基化率逐渐增加,如亚硫酸氢盐测序PCR所示。 Pearson相关性分析表明,SLCO1B3的启动子区域的甲基化与壳体腺组织和蛋壳颜色的SLCO1B3表达显着呈负相关。此外,我们预测CPG5和CPG8可以是用于调节SLCO1B3基因转录的关键网站。我们的研究结果表明,随着甲基化水平的增加,CPG5和CPG8位点的甲基化阻碍了转录因子对启动子的结合,在晚期期间减少了SLCO1B3表达并导致更轻的蛋壳颜色。

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