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韩牛长肌中差异基因表达-年龄较小时大理石花纹发育相关基因的新见解。

Differential Gene Expression in Longissimus Dorsi Muscle of Hanwoo Steers-New Insight in Genes Involved in Marbling Development at Younger Ages.

机构信息

School of Environmental and Rural Science, University of New England, Armidale 2351, NSW, Australia.

Department of Beef Science, Korea National College of Agriculture and Fisheries, Jeonju 54874, Korea.

出版信息

Genes (Basel). 2020 Nov 21;11(11):1381. doi: 10.3390/genes11111381.

Abstract

The Korean Hanwoo breed possesses a high capacity to accumulate intramuscular fat, which is measured as a marbling score in the beef industry. Unfortunately, the development of marbling is not completely understood and the identification of differentially expressed genes at an early age is required to better understand this trait. In this study, we took muscle samples from 12 Hanwoo steers at the age of 18 and 30 months. From the contrast between age and marbling score, we identified in total 1883 differentially expressed genes (FDR < 0.05 and logarithm fold change ≥ 1.5) with 782 genes up-regulated and 1101 down-regulated. Differences in gene expression were higher between the ages x marbling groups rather than between high and low marbling groups. At 18 months of age, the genes , , , and two novel genes (ENSBTAG00000015330 and ENSBTAG00000046041) were up-regulated in the high marbling group. From the protein-protein interaction network analysis, we identified unique networks when comparing marbling scores between different ages. Nineteen genes (, , , , , , , , , , , , , , , , , , and ) were identified to have an important role in marbling development. Further analyses are needed to better understand the role of these genes.

摘要

韩国韩牛品种具有很高的肌内脂肪积累能力,这在牛肉行业中以大理石花纹评分来衡量。不幸的是,大理石花纹的发育还不完全清楚,需要在早期识别差异表达的基因,以更好地理解这一特性。在这项研究中,我们从 12 头韩牛公牛的 18 月龄和 30 月龄的肌肉样本中采集了样本。通过对年龄和大理石花纹评分的对比,我们总共鉴定了 1883 个差异表达基因(FDR < 0.05,对数倍数变化≥1.5),其中 782 个基因上调,1101 个基因下调。年龄和大理石花纹组之间的基因表达差异比高大理石花纹组和低大理石花纹组之间的差异更大。在 18 月龄时,高大理石花纹组中上调的基因有 、 、 、 和两个新基因(ENSBTAG00000015330 和 ENSBTAG00000046041)。通过蛋白质-蛋白质相互作用网络分析,我们在比较不同年龄的大理石花纹评分时发现了独特的网络。有 19 个基因( 、 、 、 、 、 、 、 、 、 、 、 、 、 、 和 )被鉴定为对大理石花纹发育具有重要作用。需要进一步的分析来更好地理解这些基因的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9841/7700136/512780d2b3e7/genes-11-01381-g001.jpg

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