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全基因组mRNA测序分析揭示,小尾寒羊脂肪组织中脂质代谢过程的下调程度比多赛特羊更为显著。

Genome-wide mRNA-seq profiling reveals predominant down-regulation of lipid metabolic processes in adipose tissues of Small Tail Han than Dorset sheep.

作者信息

Miao Xiangyang, Luo Qingmiao, Qin Xiaoyu, Guo Yuntao, Zhao Huijing

机构信息

Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

出版信息

Biochem Biophys Res Commun. 2015 Nov 13;467(2):413-20. doi: 10.1016/j.bbrc.2015.09.129. Epub 2015 Sep 28.

Abstract

Small Tail Han and Dorset sheep are two different sheep with distinguished morphologies in fat depositions. In order to characterize their gene expression profiles, our present study took the advantages of RNA sequencing technology with the aims to identify important genes regulating the metabolisms in adipose tissues of two different sheep. In obtained high quality sequencing reads, 85.9 (Han) and 86.1% (Dorset) were uniquely aligned to Oar v3.1 sheep reference genome, and over 76% of bases in mapped reads corresponded to mRNA. Using R package EBSeq, we identified 602 differentially expressed genes. Using the 602 genes, GO analysis showed that 30 out of 56 significantly enriched biological processes were metabolism related, of which the most significant one was triglyceride biosynthetic process. The KEGG pathway analysis indicated the down-regulation of several fat metabolic pathways. The predominant down-regulation of massive metabolic processes, particularly the lipid metabolism, in adipose tissues of Han sheep could explain, at least in part, the distinguished fat deposition between two different sheep, and our data constitute a basic picture of transcriptomes in these sheep for better understanding of underline biological mechanism in their lipid metabolisms.

摘要

小尾寒羊和多赛特羊是两种在脂肪沉积方面形态各异的绵羊。为了表征它们的基因表达谱,我们目前的研究利用RNA测序技术,旨在鉴定调控两种不同绵羊脂肪组织代谢的重要基因。在获得的高质量测序读数中,85.9%(寒羊)和86.1%(多赛特羊)的读数被唯一比对到Oar v3.1绵羊参考基因组,并且比对读数中超过76%的碱基对应于mRNA。使用R包EBSeq,我们鉴定出602个差异表达基因。利用这602个基因进行GO分析表明,56个显著富集的生物学过程中有30个与代谢相关,其中最显著的是甘油三酯生物合成过程。KEGG通路分析表明几个脂肪代谢通路下调。寒羊脂肪组织中大量代谢过程,特别是脂质代谢的显著下调,至少可以部分解释两种不同绵羊之间脂肪沉积的差异,我们的数据构成了这些绵羊转录组的基本图谱,有助于更好地理解其脂质代谢的潜在生物学机制。

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