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转录谱分析和通路分析揭示了在遗传选择高或低体重的鸡的垂体腺功能、形态和血管化方面的差异。

Transcriptional profiling and pathway analysis reveal differences in pituitary gland function, morphology, and vascularization in chickens genetically selected for high or low body weight.

机构信息

Department of Poultry Science, University of Georgia, Athens, GA, 30602, USA.

Department of Animal and Avian Sciences, University of Maryland, College Park, MD, 20742, USA.

出版信息

BMC Genomics. 2019 Apr 25;20(1):316. doi: 10.1186/s12864-019-5670-9.

Abstract

BACKGROUND

Though intensive genetic selection has led to extraordinary advances in growth rate and feed efficiency in production of meat-type chickens, endocrine processes controlling these traits are still poorly understood. The anterior pituitary gland is a central component of the neuroendocrine system and plays a key role in regulating important physiological processes that directly impact broiler production efficiency, though how differences in pituitary gland function contribute to various growth and body composition phenotypes is not fully understood.

RESULTS

Global anterior pituitary gene expression was evaluated on post-hatch weeks 1, 3, 5, and 7 in male broiler chickens selected for high (HG) or low (LG) growth. Differentially expressed genes (DEGs) were analyzed with gene ontology categorization, self-organizing maps, gene interaction network determination, and upstream regulator identification to uncover novel pituitary genes and pathways contributing to differences in growth and body composition. A total of 263 genes were differentially expressed between HG and LG anterior pituitary glands (P ≤ 0.05 for genetic line-by-age interaction or main effect of line; ≥1.6-fold difference between lines), including genes encoding four anterior pituitary hormones. Genes involved in signal transduction, transcriptional regulation, and vesicle-mediated transport were differentially expressed and are predicted to influence expression and secretion of pituitary hormones. DEGs involved in immune regulation provide evidence that inflammation and response to cellular stressors may compromise pituitary function in LG birds, affecting their ability to adequately produce pituitary hormones. Many DEGs were also predicted to function in processes that regulate organ morphology and angiogenesis, suggesting pituitary gland structure differs between the divergently selected lines.

CONCLUSIONS

The large number of DEGs within the anterior pituitary gland of birds selected for high or low body weight highlights the importance of this gland in regulating economically important traits such as growth and body composition in broiler chickens. Intracellular signaling, transcriptional regulation, and membrane trafficking are important cellular processes contributing to proper hormone production and secretion. The data also suggest that pituitary function is intimately tied to structure, and organization of the gland could influence hypothalamic and systemic metabolic inputs and delivery of hormones regulating growth and metabolism into peripheral circulation.

摘要

背景

尽管密集的遗传选择使肉用型鸡的生长速度和饲料效率有了显著提高,但控制这些特性的内分泌过程仍知之甚少。脑垂体是神经内分泌系统的一个重要组成部分,在调节直接影响肉鸡生产效率的重要生理过程中起着关键作用,但垂体功能的差异如何导致各种生长和身体成分表型尚不完全清楚。

结果

在选择高生长速度(HG)或低生长速度(LG)的雄性肉鸡孵化后第 1、3、5 和 7 周,评估了其垂体前叶的全基因表达。使用基因本体分类、自组织映射、基因互作网络确定和上游调控因子识别对差异表达基因(DEGs)进行分析,以揭示新的与生长和身体成分差异有关的垂体基因和途径。HG 和 LG 垂体前叶之间有 263 个基因差异表达(遗传系-年龄互作或系的主要效应 P ≤ 0.05;系间差异≥1.6 倍),包括编码四种垂体激素的基因。参与信号转导、转录调控和囊泡介导运输的基因差异表达,预计会影响垂体激素的表达和分泌。参与免疫调节的 DEGs 提供了证据表明,炎症和对细胞应激源的反应可能使 LG 鸟类的垂体功能受损,影响其产生足够垂体激素的能力。许多 DEGs 还被预测在调节器官形态和血管生成的过程中起作用,这表明在不同选择的系之间,垂体的结构可能不同。

结论

在体重选择高低的鸟类的垂体前叶中存在大量的差异表达基因,这突出表明该腺体在调节肉鸡的生长和身体成分等经济重要性状方面的重要性。细胞内信号转导、转录调控和膜转运是激素产生和分泌的重要细胞过程。该数据还表明,垂体功能与腺体的结构密切相关,腺体的结构可能影响下丘脑和系统代谢的输入以及调节生长和代谢的激素进入外周循环的输送。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0bd/6482517/4bbeeb057c8a/12864_2019_5670_Fig1_HTML.jpg

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