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利用RNA测序对饲料效率不同的鸡进行十二指肠转录组深度研究。

In-Depth Duodenal Transcriptome Survey in Chickens with Divergent Feed Efficiency Using RNA-Seq.

作者信息

Yi Guoqiang, Yuan Jingwei, Bi Huijuan, Yan Wei, Yang Ning, Qu Lujiang

机构信息

National Engineering Laboratory for Animal Breeding and MOA Key Laboratory of Animal Genetics and Breeding, College of Animal Science and Technology, China Agricultural University, Beijing, China.

出版信息

PLoS One. 2015 Sep 29;10(9):e0136765. doi: 10.1371/journal.pone.0136765. eCollection 2015.

Abstract

Since the feed cost is a major determinant of profitability in poultry industry, how to improve feed efficiency through genetic selection is an intriguing subject for breeders and producers. As a more suitable indicator assessing feed efficiency, residual feed intake (RFI) is defined as the difference between observed and expected feed intake based on maintenance and growth. However, the genetic mechanisms responsible for RFI in chickens are still less well appreciated. In this study, we investigated the duodenal transcriptome architecture of extreme RFI phenotypes in the six brown-egg dwarf hens (three per group) using RNA sequencing technology. Among all mapped reads, an average of 75.62% fell into annotated exons, 5.50% were located in introns, and the remaining 18.88% were assigned to intergenic regions. In total, we identified 41 promising candidate genes by differential expression analysis between the low and high RFI groups. Furthermore, qRT-PCR assays were designed for 10 randomly chosen genes, and nine (90.00%) were successfully validated. Functional annotation analyses revealed that these significant genes belong to several specific biological functions related to digestibility, metabolism and biosynthesis processes as well as energy homeostasis. We also predicted 253 intergenic coding transcripts, and these transcripts were mainly involved in fundamental biological regulation and metabolism processes. Our findings provided a pioneering exploration of biological basis underlying divergent RFI using RNA-Seq, which pinpoints promising candidate genes of functional relevance, is helpful to guide future breeding strategies to optimize feed efficiency and assists in improving the current gene annotation in chickens.

摘要

由于饲料成本是家禽业盈利能力的主要决定因素,因此如何通过基因选择提高饲料效率是育种者和生产者感兴趣的课题。作为评估饲料效率的更合适指标,剩余采食量(RFI)被定义为基于维持和生长的观察到的采食量与预期采食量之间的差异。然而,鸡中负责RFI的遗传机制仍未得到充分认识。在本研究中,我们使用RNA测序技术研究了六只褐壳矮小型母鸡(每组三只)中极端RFI表型的十二指肠转录组结构。在所有比对上的 reads 中,平均75.62%落入注释外显子,5.50%位于内含子,其余18.88%分配到基因间区域。通过低RFI组和高RFI组之间的差异表达分析,我们总共鉴定出41个有前景的候选基因。此外,针对随机选择的10个基因设计了qRT-PCR检测,其中9个(90.00%)得到成功验证。功能注释分析表明,这些重要基因属于与消化率、代谢和生物合成过程以及能量稳态相关的几个特定生物学功能。我们还预测了253个基因间编码转录本,这些转录本主要参与基本的生物调节和代谢过程。我们的研究结果利用RNA-Seq对不同RFI潜在的生物学基础进行了开创性探索,确定了具有功能相关性的有前景的候选基因,有助于指导未来优化饲料效率的育种策略,并协助改进鸡目前的基因注释。

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