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采用配对末端 RNA 测序技术,对生长和脂肪沉积表型极端的全同胞对猪三个组织中的转录组进行全球分析。

A global view of porcine transcriptome in three tissues from a full-sib pair with extreme phenotypes in growth and fat deposition by paired-end RNA sequencing.

机构信息

Key Laboratory for Animal Biotechnology of Jiangxi Province and the Ministry of Agriculture of China, Jiangxi Agricultural University, 330045, Nanchang, China.

出版信息

BMC Genomics. 2011 Sep 10;12:448. doi: 10.1186/1471-2164-12-448.

Abstract

BACKGROUND

Elucidation of the pig transcriptome is essential for interpreting functional elements of the genome and understanding the genetic architecture of complex traits such as fat deposition, metabolism and growth.

RESULTS

Here we used massive parallel high-throughput RNA sequencing to generate a high-resolution map of the porcine mRNA and miRNA transcriptome in liver, longissimus dorsi and abdominal fat from two full-sib F2 hybrid pigs with segregated phenotypes on growth, blood physiological and biochemical parameters, and fat deposition. We obtained 8,508,418-10,219,332 uniquely mapped reads that covered 78.0% of the current annotated transcripts and identified 48,045-122,931 novel transcript fragments, which constituted 17,085-29,499 novel transcriptional active regions in six tested samples. We found that about 18.8% of the annotated genes showed alternative splicing patterns, and alternative 3' splicing is the most common type of alternative splicing events in pigs. Cross-tissue comparison revealed that many transcriptional events are tissue-differential and related to important biological functions in their corresponding tissues. We also detected a total of 164 potential novel miRNAs, most of which were tissue-specifically identified. Integrated analysis of genome-wide association study and differential gene expression revealed interesting candidate genes for complex traits, such as IGF2, CYP1A1, CKM and CES1 for heart weight, hemoglobin, pork pH value and serum cholesterol, respectively.

CONCLUSIONS

This study provides a global view of the complexity of the pig transcriptome, and gives an extensive new knowledge about alternative splicing, gene boundaries and miRNAs in pigs. Integrated analysis of genome wide association study and differential gene expression allows us to find important candidate genes for porcine complex traits.

摘要

背景

阐明猪转录组对于解释基因组的功能元件以及理解诸如脂肪沉积、代谢和生长等复杂性状的遗传结构至关重要。

结果

在这里,我们使用大规模平行高通量 RNA 测序技术,生成了来自两个具有不同生长、血液生理生化参数和脂肪沉积表型的全同胞 F2 杂交猪的肝脏、背最长肌和腹部脂肪的高分辨率 mRNA 和 miRNA 转录组图谱。我们获得了 8508418-10219332 个唯一映射的读数,这些读数覆盖了当前注释转录本的 78.0%,并鉴定了 48045-122931 个新的转录本片段,这些片段构成了 6 个测试样本中 17085-29499 个新的转录活性区域。我们发现约 18.8%的注释基因表现出选择性剪接模式,而 3' 选择性剪接是猪中最常见的选择性剪接事件类型。组织间比较表明,许多转录事件是组织差异的,与相应组织中的重要生物学功能有关。我们还检测到总共 164 个潜在的新 miRNA,其中大多数是组织特异性鉴定的。全基因组关联研究和差异表达基因的综合分析揭示了复杂性状的有趣候选基因,例如 IGF2、CYP1A1、CKM 和 CES1 分别对应心脏重量、血红蛋白、猪肉 pH 值和血清胆固醇。

结论

本研究提供了猪转录组复杂性的整体视图,并提供了关于猪中选择性剪接、基因边界和 miRNA 的广泛新知识。全基因组关联研究和差异表达基因的综合分析使我们能够找到猪复杂性状的重要候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8c0/3188532/60eabfdea7ee/1471-2164-12-448-1.jpg

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