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Characterization of gene expression in the hypothalamo-pituitary-gonadal axis during the preovulatory surge in the turkey hen

机译:土耳其母鸡预防浪涌期间下丘脑 - 垂体 - 垂体轴基因表达的特征

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A preovulatory surge (PS) of luteinizing hormone (LH) and progesterone triggers follicle ovulation, which is the first step of egg production and is orchestrated by the hypothalamo-pituitary-gonadal (HPG) axis. In the HPG axis, hypothalamic peptides, gonadotropin releasing hormone, and gonadotropin inhibitory hormone, control the production of follicle stimulating hormone and LH by the pituitary, which subsequently regulate ovarian production of estradiol and progesterone, respectively. The goal of this study was to characterize the HPG axis function of average egg producing hens by assessing plasma hormone profiles and hypothalamic, pituitary, and follicle gene expression outside and during the PS (n = 3 per group). Results were analyzed by a one-way ANOVA using the mixed models procedure of SAS. Plasma estradiol was not affected by the PS (P > 0.05), but plasma progesterone levels increased 8-fold during the PS when compared to basal progesterone levels (P < 0.05). HPG axis gene expression related to ovulation stimulation (e.g., GNRH, GNRHR, and LHB) was down-regulated during the PS; whereas gene expression related to follicle development (e.g., FSHB) was up-regulated during the PS. Additionally, in the hypothalamus and pituitary, estradiol receptor expression was up-regulated during the PS, whereas progesterone receptor expression was down-regulated during the PS. In the follicle cells, gene expression pertaining to progesterone (e.g., STAR), androgen (e.g., HSD17B1), and estradiol (e.g., CYP19A1) production was up-regulated during the PS. Prior to this study, the HPG axis had yet to be characterized during the PS in the turkey hen. This study showed that the PS significantly impacted gene expression in the hypothalamus, pituitary, and ovarian follicles. These results provide a foundation for further research into the regulation of ovulation and egg production in turkey hens.
机译:叶黄素激素(LH)和孕酮触发卵泡排卵的预进性浪涌(PS),这是鸡蛋生产的第一步,并被下丘脑 - 垂体 - (HPG)轴切策划。在HPG轴,下丘脑肽,促性腺激素释放激素和促性腺激素抑制激素,垂直控制卵泡刺激激素和LH的生产,随后分别调节卵巢生成的雌二醇和孕酮。本研究的目的是通过评估血浆激素谱和下丘脑,垂体和卵泡基因表达在PS(每组n = 3)期间来表征平均卵产生母鸡的HPG轴功能。使用SAS的混合模型方法通过单向ANOVA分析结果。血浆雌二醇不受PS的影响(P> 0.05),但与基础孕酮水平相比,PS期间血浆孕酮水平增加了8倍(P <0.05)。与排卵刺激(例如,GnRH,GnRHR和LHB)相关的HPG轴基因表达在PS期间下调;虽然与卵泡开发(例如,FSHB)相关的基因表达在PS期间上调。另外,在下丘脑和垂体中,在PS期间上调雌二醇受体表达,而孕酮受体表达在PS期间下调。在卵泡细胞中,在PS期间,对孕酮(例如,星星),雄激素(例如,星形),雄激素(例如,HSD17B1)和雌二醇(例如,CYP19A1)产生的基因表达上调。在本研究之前,HPG轴尚未在土耳其母鸡的PS期间表征。该研究表明,PS显着影响下丘脑,垂体和卵巢卵泡的基因表达。这些结果为进一步研究土耳其母鸡的排卵和鸡蛋产量进行进一步研究。

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