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与内洛尔牛胴体性状相关的比较肌肉转录组

Comparative muscle transcriptome associated with carcass traits of Nellore cattle.

作者信息

Silva-Vignato Bárbara, Coutinho Luiz L, Cesar Aline S M, Poleti Mirele D, Regitano Luciana C A, Balieiro Júlio C C

机构信息

College of Animal Science and Food Engineering, University of São Paulo, Pirassununga, SP, 13635-900, Brazil.

College of Agriculture "Luiz de Queiroz", University of São Paulo, Piracicaba, SP, 13418-900, Brazil.

出版信息

BMC Genomics. 2017 Jul 3;18(1):506. doi: 10.1186/s12864-017-3897-x.

Abstract

BACKGROUND

Commercial cuts yield is an important trait for beef production, which affects the final value of the products, but its direct determination is a challenging procedure to be implemented in practice. The measurement of ribeye area (REA) and backfat thickness (BFT) can be used as indirect measures of meat yield. REA and BFT are important traits studied in beef cattle due to their strong implication in technological (carcass yield) and nutritional characteristics of meat products, like the degree of muscularity and total body fat. Thus, the aim of this work was to study the Longissimus dorsi muscle transcriptome of Nellore cattle, associated with REA and BFT, to find differentially expressed (DE) genes, metabolic pathways, and biological processes that may regulate these traits.

RESULTS

By comparing the gene expression level between groups with extreme genomic estimated breeding values (GEBV), 101 DE genes for REA and 18 for BFT (false discovery rate, FDR 10%) were identified. Functional enrichment analysis for REA identified two KEGG pathways, MAPK (Mitogen-Activated Protein Kinase) signaling pathway and endocytosis pathway, and three biological processes, response to endoplasmic reticulum stress, cellular protein modification process, and macromolecule modification. The MAPK pathway is responsible for fundamental cellular processes, such as growth, differentiation, and hypertrophy. For BFT, 18 biological processes were found to be altered and grouped into 8 clusters of semantically similar terms. The DE genes identified in the biological processes for BFT were ACHE, SRD5A1, RSAD2 and RSPO3. RSAD2 has been previously shown to be associated with lipid droplet content and lipid biosynthesis.

CONCLUSION

In this study, we identified genes, metabolic pathways, and biological processes, involved in differentiation, proliferation, protein turnover, hypertrophy, as well as adipogenesis and lipid biosynthesis related to REA and BFT. These results enlighten some of the molecular processes involved in muscle and fat deposition, which are economically important carcass traits for beef production.

摘要

背景

商业切割产量是牛肉生产的一个重要性状,它影响产品的最终价值,但在实践中直接测定是一个具有挑战性的过程。眼肌面积(REA)和背膘厚度(BFT)的测量可作为肉产量的间接指标。REA和BFT是肉牛研究中的重要性状,因为它们对肉产品的技术(胴体产量)和营养特性有很大影响,如肌肉发达程度和总体脂肪含量。因此,本研究的目的是研究与REA和BFT相关的内洛尔牛背最长肌转录组,以寻找可能调控这些性状的差异表达(DE)基因、代谢途径和生物学过程。

结果

通过比较具有极端基因组估计育种值(GEBV)的组间基因表达水平,确定了101个与REA相关的DE基因和18个与BFT相关的DE基因(错误发现率,FDR<10%)。对REA的功能富集分析确定了两条KEGG途径,即丝裂原活化蛋白激酶(MAPK)信号通路和内吞作用途径,以及三个生物学过程,即对内质网应激的反应、细胞蛋白质修饰过程和大分子修饰。MAPK途径负责基本的细胞过程,如生长、分化和肥大。对于BFT,发现18个生物学过程发生了改变,并分为8个语义相似术语的簇。在BFT生物学过程中鉴定出的DE基因是ACHE、SRD5A1、RSAD2和RSPO3。先前已证明RSAD2与脂滴含量和脂质生物合成有关。

结论

在本研究中,我们鉴定了与REA和BFT相关的参与分化、增殖、蛋白质周转、肥大以及脂肪生成和脂质生物合成的基因、代谢途径和生物学过程。这些结果揭示了一些参与肌肉和脂肪沉积的分子过程,这些过程是牛肉生产中具有经济重要性的胴体性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/475c/5496360/3f017edc2171/12864_2017_3897_Fig1_HTML.jpg

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