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Identification of differentially expressed genes in longissimus muscle of pigs with high and low intramuscular fat content using RNA sequencing

Authors
Lim, K. S.Lee, K. T.Park, J. E.Chung, W. H.Jang, G. W.Choi, B. H.Hong, K. C.Kim, T. H.
Issue Date
4월-2017
Publisher
WILEY
Keywords
differential expression; Gene Ontology; IMF; swine; transcriptome
Citation
ANIMAL GENETICS, v.48, no.2, pp.166 - 174
Indexed
SCIE
SCOPUS
Journal Title
ANIMAL GENETICS
Volume
48
Number
2
Start Page
166
End Page
174
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/84053
DOI
10.1111/age.12518
ISSN
0268-9146
Abstract
Intramuscular fat (IMF) content in pork is an important element of consumer preference and is positively correlated with meat quality, including tenderness and juiciness. With advances in RNA sequencing technologies, transcriptome-related differences can be associated with specific traits in animals. The objective of this study was to investigate differentially expressed genes (DEGs) closely related to IMF content in porcine longissimus muscle using RNA sequencing. A total of 107 Berkshire pigs were used for IMF content measurements, and significant differences between extremely high (H, n - 3) and low (L, n - 3) IMF content groups were found (P < 0.0001). From multi- dimensional scaling analyses, it was observed that the relationships between H and L groups were similar to each other. Here, we identified a total of 134 genes that were differentially expressed between the groups ( false discovery rate < 0.05; fold change >= 2). Functional analyses with DEGs revealed that lipid metabolism (SCD and FASN) was one of the significant biological processes related to IMF content determination. In addition, we found that DEGs related to muscle regeneration (MYOG and VEGFA) and extracellular matrix (COL1A1, COL1A2, COL5A1, COL14A1 and COL15A1) were changed among individuals with extreme IMF contents. These results will aid in understanding the regulation of IMF content in pigs.
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