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转录组数据在源自不同生产系统的牛肉鉴真中的应用。

The application of transcriptomic data in the authentication of beef derived from contrasting production systems.

作者信息

Sweeney Torres, Lejeune Alex, Moloney Aidan P, Monahan Frank J, Gettigan Paul Mc, Downey Gerard, Park Stephen D E, Ryan Marion T

机构信息

UCD College of Agriculture, Food Science and Veterinary Medicine, University College Dublin, Belfield, Dublin 4, Ireland.

Teagasc, Animal and Grassland Research and Innovation Centre, Grange, Dunsany, Co. Meath, Ireland.

出版信息

BMC Genomics. 2016 Sep 21;17(1):746. doi: 10.1186/s12864-016-2851-7.

Abstract

BACKGROUND

Differences between cattle production systems can influence the nutritional and sensory characteristics of beef, in particular its fatty acid (FA) composition. As beef products derived from pasture-based systems can demand a higher premium from consumers, there is a need to understand the biological characteristics of pasture produced meat and subsequently to develop methods of authentication for these products. Here, we describe an approach to authentication that focuses on differences in the transcriptomic profile of muscle from animals finished in different systems of production of practical relevance to the Irish beef industry. The objectives of this study were to identify a panel of differentially expressed (DE) genes/networks in the muscle of cattle raised outdoors on pasture compared to animals raised indoors on a concentrate based diet and to subsequently identify an optimum panel which can classify the meat based on a production system.

RESULTS

A comparison of the muscle transcriptome of outdoor/pasture-fed and Indoor/concentrate-fed cattle resulted in the identification of 26 DE genes. Functional analysis of these genes identified two significant networks (1: Energy Production, Lipid Metabolism, Small Molecule Biochemistry; and 2: Lipid Metabolism, Molecular Transport, Small Molecule Biochemistry), both of which are involved in FA metabolism. The expression of selected up-regulated genes in the outdoor/pasture-fed animals correlated positively with the total n-3 FA content of the muscle. The pathway and network analysis of the DE genes indicate that peroxisome proliferator-activated receptor (PPAR) and FYN/AMPK could be implicit in the regulation of these alterations to the lipid profile. In terms of authentication, the expression profile of three DE genes (ALAD, EIF4EBP1 and NPNT) could almost completely separate the samples based on production system (95 % authentication for animals on pasture-based and 100 % for animals on concentrate- based diet) in this context.

CONCLUSIONS

The majority of DE genes between muscle of the outdoor/pasture-fed and concentrate-fed cattle were related to lipid metabolism and in particular β-oxidation. In this experiment the combined expression profiles of ALAD, EIF4EBP1 and NPNT were optimal in classifying the muscle transcriptome based on production system. Given the overall lack of comparable studies and variable concordance with those that do exist, the use of transcriptomic data in authenticating production systems requires more exploration across a range of contexts and breeds.

摘要

背景

养牛生产系统之间的差异会影响牛肉的营养和感官特性,尤其是其脂肪酸(FA)组成。由于源自牧场养殖系统的牛肉产品能从消费者那里获得更高溢价,因此有必要了解牧场生产肉类的生物学特性,并随后开发这些产品的认证方法。在此,我们描述一种认证方法,该方法侧重于来自不同生产系统的育肥牛肌肉转录组图谱的差异,这些生产系统与爱尔兰牛肉行业具有实际相关性。本研究的目的是确定一组在户外牧场饲养的牛与室内以浓缩饲料为基础饲养的牛的肌肉中差异表达(DE)的基因/网络,随后确定一个能根据生产系统对肉类进行分类的最佳基因组合。

结果

对户外/牧场饲养和室内/浓缩饲料饲养的牛的肌肉转录组进行比较,鉴定出26个差异表达基因。对这些基因的功能分析确定了两个重要网络(1:能量产生、脂质代谢、小分子生物化学;2:脂质代谢、分子运输、小分子生物化学),这两个网络均参与脂肪酸代谢。户外/牧场饲养动物中选定的上调基因的表达与肌肉中总n-3脂肪酸含量呈正相关。差异表达基因的通路和网络分析表明,过氧化物酶体增殖物激活受体(PPAR)和FYN/AMPK可能参与了脂质谱这些变化的调节。在认证方面,在这种情况下,三个差异表达基因(δ-氨基-γ-酮戊酸脱水酶(ALAD)、真核翻译起始因子4E结合蛋白1(EIF4EBP1)和腱生蛋白(NPNT))的表达谱几乎可以根据生产系统完全区分样本(基于牧场饲养的动物认证率为95%,基于浓缩饲料饲养的动物认证率为100%)。

结论

户外/牧场饲养的牛和浓缩饲料饲养的牛的肌肉之间的大多数差异表达基因与脂质代谢特别是β-氧化有关。在本实验中,ALAD、EIF4EBP1和NPNT的联合表达谱在根据生产系统对肌肉转录组进行分类方面是最佳的。鉴于总体上缺乏可比研究且与现有研究的一致性参差不齐,在认证生产系统中使用转录组数据需要在一系列背景和品种中进行更多探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a3a/5031250/5cc9ae1fbf0a/12864_2016_2851_Fig1_HTML.jpg

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