ssc-miR-451 Regulates Porcine Primary Adipocyte Differentiation by Targeting ACACA

miRNA is a small non-coding RNA, which plays an important role in diverse biological processes. In the present study, we explore the effect of ssc-miR-451 on porcine adipose development and meat quality. We observed that ssc-miR-451 was downregulated during porcine primary adipocyte differentiation....

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Veröffentlicht in:Animals (Basel) 2020-10, Vol.10 (10), p.1891
Hauptverfasser: Gan, Mailin, Shen, Linyuan, Fan, Yuan, Tan, Ya, Liu, Lin, Chen, Lei, Zhao, Ye, Niu, Lili, Tang, Guoqing, Li, Qiang, Xu, Xu, Zhang, Tinghuan, Li, Xuewei, Zhang, Shunhua, Zhu, Li
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Sprache:eng
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Zusammenfassung:miRNA is a small non-coding RNA, which plays an important role in diverse biological processes. In the present study, we explore the effect of ssc-miR-451 on porcine adipose development and meat quality. We observed that ssc-miR-451 was downregulated during porcine primary adipocyte differentiation. Overexpression of ssc-miR-451 inhibited adipogenic differentiation, while inhibition of ssc-miR-451 promoted adipogenic differentiation. The dual luciferase reporter system indicated Acetyl-CoA carboxylase alpha (ACACA) as a target gene of ssc-miR-451. Correlation analysis negatively correlated miR-451 expression with intramuscular fat content (IMF) and positively correlated ACACA expression with IMF. Further analysis of fatty acid composition revealed that pigs with high expression of ssc-miR-451 had higher monounsaturated fatty acid (MUFA) and lower polyunsaturated fatty acid (PUFA). Taken together, our study suggests that ssc-miR-451 regulates lipid deposition and fatty acid composition by targeting ACACA, and ssc-miR-451 may serve as a potential genetic marker to improve pork quality.
ISSN:2076-2615
2076-2615
DOI:10.3390/ani10101891