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对鹅垂体的转录组分析揭示了候选基因和基因网络,它们调控着鹅的生长和发育。

Transcriptome analysis of pituitary gland revealed candidate genes and gene networks regulating the growth and development in goose.

机构信息

Department of Animal Genetics, Breeding and Reproduction, College of Animal Science, South China Agricultural University, Guangzhou, Guangdong, China.

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

出版信息

Anim Biotechnol. 2022 Jun;33(3):429-439. doi: 10.1080/10495398.2020.1801457. Epub 2020 Aug 11.

Abstract

Goose is important meat poultry and its growth and development has always been the focus of attention, but the regulation mechanisms of genes and gene network underlying growth and development of goose are still unclear. Three males of large-size Shitou goose and three males of small size Wuzong goose at 5 weeks of age were used for transcriptome analysis with deep sequencing. After slaughter, their pituitary gland was taken for RNA-seq. A total of 290 DEGs were identified by fold change ≥2 and false discovery rate (FDR) <0.05, where there were 148 upregulated genes and 142 downregulated genes in Shitou goose compared to Wuzong goose. Results also showed that the DEGs related to insulin signaling pathway could increase protein synthesis and fat production, and the interaction network of DEGs was mainly related to development, endocrine system, inflammatory diseases, tissue damage and abnormality. The DEGs involved in the growth and function of the pituitary organs may regulate the growth and development of the body by affecting the synthesis and secretion of pituitary hormones. The results of this study will help to understand the regulatory mechanism of goose growth and development.

摘要

鹅是重要的肉禽,其生长发育一直是关注的焦点,但鹅生长发育相关的基因和基因网络的调控机制尚不清楚。本研究以 5 周龄的大石鹅和乌棕鹅公鹅各 3 只为研究对象,利用深度测序进行转录组分析。屠宰后取其垂体进行 RNA-seq。结果表明,大石鹅相对于乌棕鹅有 290 个差异表达基因(DEGs), fold change≥2 和 FDR<0.05,其中上调基因 148 个,下调基因 142 个。这些 DEGs 与胰岛素信号通路有关,可增加蛋白质合成和脂肪生成,DEGs 的互作网络主要与发育、内分泌系统、炎症性疾病、组织损伤和异常有关。参与垂体器官生长和功能的 DEGs 可能通过影响垂体激素的合成和分泌来调节机体的生长发育。本研究结果有助于了解鹅生长发育的调控机制。

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