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蛋白质基因组学揭示了高饲料效率系谱肉鸡雄性的核糖体组装和蛋白质翻译增强。

Proteogenomics Reveals Enriched Ribosome Assembly and Protein Translation in of High Feed Efficiency Pedigree Broiler Males.

作者信息

Bottje Walter G, Lassiter Kentu, Piekarski-Welsher Alissa, Dridi Sami, Reverter Antonio, Hudson Nicholas J, Kong Byung-Whi

机构信息

Department of Poultry Science, Center of Excellence for Poultry Science, University of ArkansasFayetteville, AR, USA.

Computational and Systems Biology, Agriculture and Food (CSIRO)St. Lucia, QLD, Australia.

出版信息

Front Physiol. 2017 May 16;8:306. doi: 10.3389/fphys.2017.00306. eCollection 2017.

Abstract

In production animal agriculture, the cost of feed represents 60-70% of the total cost of raising an animal to market weight. Thus, development of viable biomarkers for feed efficiency (FE, g gain/g feed) to assist in genetic selection of breeding stock remains an important goal in commercial breeding programs. Global gene (cDNA microarray, RNAseq) and protein expression (shotgun proteomics) analyses have been conducted on breast muscle samples obtained from pedigree broiler males (PedM) exhibiting high and low FE phenotypes. Using the entire datasets (i.e., no cutoffs for significance or fold difference in expression) the number of genes or proteins that were expressed numerically higher or lower in the high FE compared to the low FE phenotype for key terms or functions, e.g., ribosomal, mitochondrial ribosomal, tRNA, RNA binding motif, RNA polymerase, small nuclear ribonucleoprotein, and protein tyrosine phosphatase, were determined. Bionomial distribution analysis (exact) was then conducted on these datasets to determine significance between numerically up or down expression. Processes associated with mitochondrial proteome expression (e.g., mitochondrial ribosomal proteins, mitochondrial transcription, mitochondrial tRNA, and translation) were enriched in breast muscle from the high FE compared to the low FE pedigree male broiler phenotype. Furthermore, the high FE phenotype exhibited enrichment of ribosome assembly (e.g., RNA polymerase, mitochondrial and cytosolic ribosomes, small, and heterogeneous nuclear ribonucleoproteins), as well as nuclear transport and protein translation processes compared to the low FE phenotype. Quality control processes (proteosomes and autophagy) were also enriched in the high FE phenotype. In contrast, the low FE phenotype exhibited enrichment of cytoskeletal proteins, protein tyrosine phosphatases, and tyrosine kinases compared to the high FE phenotype. These results suggest that processes of mitochondrial and cytosolic ribosomal construction, activity, and protein translation would be enhanced in high FE breast muscle, and that phosphorylation of tyrosine moieties of proteins could be prolonged in the high compared to low FE phenotype. The results indicate the presence of a proteogenomic architecture that could enhance ribosome construction, protein translation, and quality control processes and contribute to the phenotypic expression of feed efficiency in this PedM broiler model.

摘要

在生产性畜牧业中,饲料成本占将动物饲养至出栏体重总成本的60%-70%。因此,开发可行的饲料效率生物标志物(饲料效率,克增重/克饲料)以辅助种畜的遗传选择仍是商业育种计划中的一个重要目标。已对从表现出高饲料效率和低饲料效率表型的纯种肉用雄性雏鸡(PedM)获得的胸肌样本进行了全基因组(cDNA微阵列、RNA测序)和蛋白质表达(鸟枪法蛋白质组学)分析。使用整个数据集(即对表达的显著性或倍数差异不设阈值),确定了在高饲料效率与低饲料效率表型相比,关键术语或功能(如核糖体、线粒体核糖体、tRNA、RNA结合基序、RNA聚合酶、小核核糖核蛋白和蛋白酪氨酸磷酸酶)中在数值上表达较高或较低的基因或蛋白质数量。然后对这些数据集进行二项分布分析(精确分析),以确定数值上上调或下调表达之间的显著性。与低饲料效率纯种雄性肉用雏鸡表型相比,高饲料效率纯种雄性肉用雏鸡胸肌中线粒体蛋白质组表达相关的过程(如线粒体核糖体蛋白、线粒体转录、线粒体tRNA和翻译)更为丰富。此外,与低饲料效率表型相比,高饲料效率表型在核糖体组装(如RNA聚合酶、线粒体和胞质核糖体、小核和不均一核核糖核蛋白)以及核运输和蛋白质翻译过程方面表现出富集。质量控制过程(蛋白酶体和自噬)在高饲料效率表型中也更为丰富。相比之下,与高饲料效率表型相比,低饲料效率表型在细胞骨架蛋白、蛋白酪氨酸磷酸酶和酪氨酸激酶方面表现出富集。这些结果表明,高饲料效率胸肌中线粒体和胞质核糖体构建、活性及蛋白质翻译过程会增强,且与低饲料效率表型相比,高饲料效率表型中蛋白质酪氨酸部分的磷酸化可能会延长。结果表明存在一种蛋白质基因组结构,可增强核糖体构建、蛋白质翻译和质量控制过程,并有助于该PedM肉用雏鸡模型中饲料效率的表型表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6db/5432614/03cb8f8ca273/fphys-08-00306-g0001.jpg

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