Comparative Analysis of Meat Quality and Muscle Transcriptome between Landrace and Jeju Native Pig
Na-Young Kim1,2, Sanghoon Lee1, Hyeon-Ah Kim2
1Department of Animal Biotechnology, Faculty of Biotechnology, College of Applied Life Sciences, Jeju National University, Jeju 63243, Korea.
Abstract:
Jeju native pig (JNP) is an indigenous breed originating from Korea, characterized by short black hair, small stature, and superior meat quality compared with commercial breeds. This study investigated meat quality and transcriptome differences in the Longissimus dorsi muscles of Landrace and JNP pigs. Phenotypic analysis of meat quality traits was performed on each breed, revealing significant differences in cooking loss, crude fat, moisture, CIE L*, CIE a*, shear force, pH, hardness, gumminess, and chewiness (p<0.05). JNP exhibited significantly higher intramuscular fat content and CIE a* (p<0.001), which increases consumer preference, suggesting that JNP have superior meat quality traits. To understand transcript expression differences, indicating differences in meat quality characteristics and growth between the two breeds, RNA sequencing was performed on Longissimus dorsi muscle samples from each breed. Overall, 427 differentially expressed genes (DEG) were upregulated in JNP, while 821 genes were upregulated in Landrace. Among these, MYH2, MYH6, MYH7B, MYO5B, IGF1, IGFBP5, SFRP2, EGFL6, MATN3, HAPLN1, FBLN7, and LINGO1 were key candidate genes. Enrichment analysis in Gene Ontology and Kyoto Encyclopedia of Genes and Genomes pathways suggested DEG are involved in biological processes such as the cell cycle, extracellular space, collagen trimer, platelet-derived growth factor binding, and motor proteins. This study provides important insights into the genetic expression characteristics of Landrace and JNP and elucidates the mechanisms related to economic traits, such as superior meat quality and growth rate. Additionally, these findings provide foundational data for improving meat quality and suggest strategies for the genetic improvement of both breeds.
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