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不同光周期下绿头鸭中OPN5通过TSH-DIO2/DIO3途径调控卵泡发育的机制

OPN5 Regulating Mechanism of Follicle Development Through the TSH-DIO2/DIO3 Pathway in Mountain Ducks Under Different Photoperiods.

作者信息

Liufu Sui, Pan Jianqiu, Sun Junfeng, Shen Xu, Jiang Danli, Ouyang Hongjia, Xu Danning, Tian Yunbo, Huang Yunmao

机构信息

College of Animal Science & Technology, Zhongkai University of Agriculture and Engineering, Guangzhou, China.

Guangdong Province Key Laboratory of Waterfowl Healthy Breeding, Guangzhou, China.

出版信息

Front Physiol. 2022 Jun 1;13:813881. doi: 10.3389/fphys.2022.813881. eCollection 2022.

Abstract

Photoperiod is an important environmental factor that influence seasonal reproduction behavior in bird. Birds translates photoperiodic information into neuroendocrine signals through deep brain photoreceptors (DBPs). OPN5 has been considered as candidate DBPs involving in regulation of seasonal reproduction in birds. However, little is known about the effect of OPN5 in non-seasonal breeding birds. Thus, we pondered on whether OPN5 regulating follicular development through TSH-DIO2/DIO3 system responds to different photoperiods in non-seasonal laying ducks. As an ideal non-seasonal breeding bird, a total of 120 mountain ducks were randomly divided into three groups and treated respectively to a different photoperiod: group S (8 L:16D), group C (17 L:7D), and group L (24 L:0D). The ducks were caged in a fully enclosed shelter with the same feeding conditions for each group, free water and limited feeding (150 g per duck each day). Samples were collected from each group at d 0, d 5, d 8, d 20, and d 35 ( = 8). The ducks in 24 h photoperiod had the highest laying rate and the lowest feed-to-egg ratio, while the ducks in 8 h photoperiod had the lowest laying rate and the highest feed-to-egg ratio. Long-day photoperiod for 24 h significantly increased the ovarian index and GnRH, LH, E2, and P4 levels in serum; short-day photoperiod for 8 h increased testosterone levels in serum. Compared with 8 h photoperiod, long-day photoperiod significantly or highly significantly increased the mRNA level and protein expression of OPN5 in the hypothalamus of long-day photoperiod on d 35 ( < 0.05). The gene or protein expression patterns of GnRH, TRH, TSHβ, DIO2, THRβ, VIP, and PRL were positively correlated with OPN5, whereas the gene expression patterns of and were negatively correlated with . The results revealed that OPN5 mediated the effect of light on follicular development through the TSH-DIO2/DIO3 pathway, the expression of OPN5 increased with light duration and improved the efficiency of the HPG axis to promote follicular development in mountain ducks.

摘要

光周期是影响鸟类季节性繁殖行为的重要环境因素。鸟类通过深部脑光感受器(DBP)将光周期信息转化为神经内分泌信号。OPN5被认为是参与鸟类季节性繁殖调控的候选DBP。然而,关于OPN5在非季节性繁殖鸟类中的作用知之甚少。因此,我们思考在非季节性产蛋鸭中,通过TSH-DIO2/DIO3系统调节卵泡发育的OPN5是否对不同光周期有反应。作为理想的非季节性繁殖鸟类,总共120只山鸭被随机分为三组,分别给予不同的光周期处理:S组(8小时光照:16小时黑暗)、C组(17小时光照:7小时黑暗)和L组(24小时光照:0小时黑暗)。将鸭子关在完全封闭的畜舍中,每组的饲养条件相同,自由饮水,限量喂食(每只鸭子每天150克)。在第0天、第5天、第8天、第20天和第35天(每组n = 8)从每组采集样本。24小时光周期的鸭子产蛋率最高,料蛋比最低,而8小时光周期的鸭子产蛋率最低,料蛋比最高。24小时长日照显著提高了卵巢指数以及血清中GnRH、LH、E2和P4水平;8小时短日照提高了血清中睾酮水平。与8小时光周期相比,长日照在第35天显著或极显著提高了长日照组下丘脑OPN5的mRNA水平和蛋白表达(P < 0.05)。GnRH、TRH、TSHβ、DIO2、THRβ、VIP和PRL的基因或蛋白表达模式与OPN5呈正相关,而DIO3和TPO的基因表达模式与OPN5呈负相关。结果表明,OPN5通过TSH-DIO2/DIO3途径介导光照对卵泡发育的影响,OPN5的表达随光照时长增加,并提高了下丘脑-垂体-性腺轴促进山鸭卵泡发育的效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51f1/9208676/50488dd22b13/fphys-13-813881-g001.jpg

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