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全血转录组学有助于识别猪对饲料效率和营养状况的遗传选择所产生的分子变化。

Whole Blood Transcriptomics Is Relevant to Identify Molecular Changes in Response to Genetic Selection for Feed Efficiency and Nutritional Status in the Pig.

作者信息

Jégou Maëva, Gondret Florence, Vincent Annie, Tréfeu Christine, Gilbert Hélène, Louveau Isabelle

机构信息

INRA, UMR1348 Pegase, Saint-Gilles, France.

Agrocampus Ouest, UMR1348 Pegase, Rennes, France.

出版信息

PLoS One. 2016 Jan 11;11(1):e0146550. doi: 10.1371/journal.pone.0146550. eCollection 2016.

Abstract

The molecular mechanisms underlying feed efficiency need to be better understood to improve animal efficiency, a research priority to support a competitive and sustainable livestock production. This study was undertaken to determine whether pig blood transcriptome was affected by differences in feed efficiency and by ingested nutrients. Growing pigs from two lines divergently selected for residual feed intake (RFI) and fed isoproteic and isocaloric diets contrasted in energy source and nutrients were considered. Between 74 and 132 days of age, pigs (n = 12 by diet and by line) received a regular diet rich in cereals and low in fat (LF) or a diet where cereals where partially substituted by lipids and fibers (HF). At the end of the feeding trial, the total number of white blood cells was not affected by the line or by the diet, whereas the red blood cell number was higher (P<0.001) in low RFI than in high RFI pigs. Analysis of the whole blood transcriptome using a porcine microarray reveals a higher number of probes differentially expressed (DE) between RFI lines than between diets (2,154 versus 92 probes DE, P<0.01). This corresponds to 528 overexpressed genes and 477 underexpressed genes in low RFI pigs compared with high RFI pigs, respectively. Overexpressed genes were predominantly associated with translational elongation. Underexpressed genes were mainly involved in the immune response, regulation of inflammatory response, anti-apoptosis process, and cell organization. These findings suggest that selection for RFI has affected the immune status and defense mechanisms of pigs. Genes DE between diets were mainly related to the immune system and lipid metabolism. Altogether, this study demonstrates the usefulness of the blood transcriptome to identify the main biological processes affected by genetic selection and feeding strategies.

摘要

为提高动物生产效率,需要更好地理解饲料效率背后的分子机制,这是支持具有竞争力和可持续性畜牧业生产的研究重点。本研究旨在确定猪的血液转录组是否受饲料效率差异和摄入营养素的影响。研究选用了两个因剩余采食量(RFI)而被差异选择的品系的生长猪,给它们饲喂等蛋白、等热量但能量来源和营养素不同的日粮。在74至132日龄期间,猪(每种日粮和品系各12头)分别采食富含谷物且脂肪含量低的常规日粮(LF)或谷物部分被脂质和纤维替代的日粮(HF)。饲养试验结束时,白细胞总数不受品系或日粮的影响,而低RFI猪的红细胞数量高于高RFI猪(P<0.001)。使用猪微阵列对全血转录组进行分析发现,RFI品系之间差异表达(DE)的探针数量高于日粮之间(分别为2154个和92个DE探针,P<0.01)。与高RFI猪相比,低RFI猪分别有528个基因过表达和477个基因低表达。过表达基因主要与翻译延伸相关。低表达基因主要参与免疫反应、炎症反应调节、抗凋亡过程和细胞组织。这些发现表明,对RFI的选择影响了猪的免疫状态和防御机制。日粮之间差异表达的基因主要与免疫系统和脂质代谢有关。总之,本研究证明了血液转录组在识别受遗传选择和饲养策略影响的主要生物学过程方面的有用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9a4/4709134/fdd073726f7a/pone.0146550.g001.jpg

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