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快速通讯:microRNA 共表达网络揭示了产蛋鸡蜕皮期间生殖道中的细胞凋亡。

Rapid Communication: MicroRNA co-expression network reveals apoptosis in the reproductive tract during molting in laying hens.

出版信息

J Anim Sci. 2017 Nov;95(11):5100-5104. doi: 10.2527/jas2017.1972.

Abstract

The aim of this study was to determine the regulatory mechanisms of molting and recrudescence via studying the micro-RNA (miRNA) expression in the oviduct of laying hens. We performed a cDNA microarray analysis in the magnum tissue from the oviduct to identify the whole miRNA profiles through the molting and recrudescence periods. A total of 35 laying hens (47-wk-old) were divided into 7 groups (0 d: a control group; 6 and 12 d: 2 molting-period groups fed on a high-zinc diet; and 20, 25, 30, and 35 d: 4 recrudescence-period groups fed on a normal diet after a 12-d period on a high-zinc diet). An miRNA co-expression network (miRCN) was generated using the differentially expressed miRNA (DEM) according to the entire data integration. The significantly co-expressed miRNA ( = 111) were highly differentially expressed from 12 to 20 d, which was a transition period between molting and recrudescence, while their expression patterns were contrary to the estrogen changes. The targets of highly connected miRNA ( = 12) indicated the significant biological pathways and gene ontology (GO) terms, such as MAPK and Wnt signaling and magnesium-ion binding, which are associated with apoptotic activities. These results suggest that the miRNA of the miRCN might play a role in the apoptotic progression of the reproductive tract during molting.

摘要

本研究旨在通过研究产卵母鸡输卵管中 microRNA (miRNA) 的表达来确定蜕皮和再殖的调控机制。我们在输卵管的大囊组织中进行了 cDNA 微阵列分析,以确定蜕皮和再殖期间的整个 miRNA 图谱。共有 35 只产蛋母鸡(47 周龄)分为 7 组(0 d:对照组;6 和 12 d:2 组在高锌饮食下蜕皮;20、25、30 和 35 d:在高锌饮食 12 天后在正常饮食下进行的 4 组再殖)。根据整个数据集成,使用差异表达 miRNA (DEM) 生成 miRNA 共表达网络 (miRCN)。在蜕皮和再殖之间的过渡时期,从 12 到 20 天,高度共表达的 miRNA (= 111) 的表达模式高度差异,而其表达模式与雌激素变化相反。高度连接 miRNA (= 12) 的靶标表明了重要的生物学途径和基因本体 (GO) 术语,如 MAPK 和 Wnt 信号传导和镁离子结合,这些与凋亡活性有关。这些结果表明,miRCN 的 miRNA 可能在生殖道蜕皮过程中的凋亡进展中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c536/6292248/db821e81724a/5100fig1.jpg

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