下丘脑和肾上腺的转录组图谱与猪应对行为的单倍型有关。

Kevin Gley, Eduard Murani, Nares Trakooljul, Manuela Zebunke, Birger Puppe, Klaus Wimmers, Siriluck Ponsuksili
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引用次数: 0

摘要

下丘脑-垂体-肾上腺(HPA)轴是神经内分泌应激调节和应对行为的重要组成部分。我们评估了下丘脑和肾上腺的转录组图谱,以确定猪应对行为的分子通路和候选基因。根据我们之前关于应对行为的全基因组关联研究(GWAS)中发现的SSC12上一个显著QTL区域的单倍型信息,选择了高反应(HR)和低反应(LR)猪各10头(n = 20)进行表达谱分析。对 HR 猪和 LR 猪进行比较后发现,肾上腺和下丘脑分别有 692 个和 853 个差异表达基因(DEGs)。有趣的是,在这两种组织中发现的 DEGs 中,47%(36 个中的 17 个)位于 SSC12 上确定的 GWAS 区域,这表明应对行为存在重要的功能性位置候选基因。通路分析将 DEGs 与肾上腺的糖皮质激素受体信号转导联系起来。此外,在下丘脑中还发现了氧化磷酸化、线粒体功能障碍、NGF 信号以及胆囊收缩素/胃泌素介导的途径。我们通过分析 HPA 轴的 DEGs,缩小了 GWAS 区域候选基因的范围。包括 ATP1B2、AURKB、MPDU1 和 NDEL1 在内的最高识别转录本为 GWAS 地区应对行为的分子相关性提供了证据。
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Transcriptome profiles of hypothalamus and adrenal gland linked to haplotype related to coping behavior in pigs.

The hypothalamic-pituitary-adrenal (HPA) axis is an important component of neuroendocrine stress regulation and coping behavior. Transcriptome profiles of the hypothalamus and adrenal gland were assessed to identify molecular pathways and candidate genes for coping behavior in pigs. Ten each of high- (HR) and low- (LR) reactive pigs (n = 20) were selected for expression profiling based haplotype information of a prominent QTL-region on SSC12 discovered in our previous genome-wide association study (GWAS) on coping behavior. Comparing the HR and LR pigs showed 692 differentially expressed genes (DEGs) in the adrenal gland and 853 DEGs in the hypothalamus, respectively. Interestingly, 47% (17 out of 36) of DEGs found in both tissues were located in GWAS regions identified on SSC12, indicating that there are significant functional positional candidate genes for coping behaviour. Pathway analysis assigned DEGs to glucocorticoid receptor signaling in the adrenal gland. Furthermore, oxidative phosphorylation, mitochondrial dysfunction, and NGF signaling as well as cholecystokinin/Gastrin-mediated were identified in the hypothalamus. We narrowed the list of candidate genes in GWAS regions by analyzing their DEGs in the HPA axis. The top identified transcripts, including ATP1B2, AURKB, MPDU1 and NDEL1 provide evidence for molecular correlates of coping behavior in GWAS regions.

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