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Identification of Coding and Non-coding RNA Classes Expressed in Swine Whole Blood
Published on: November 28, 2018
MicroRNA identity and abundance in developing swine adipose tissue as determined by Solexa sequencing
Guoxi Li1, Yanjie Li, Xinjian Li
1Laboratory of Animal Fat Deposition and Muscle Development, Northwest A&F University, Yangling, Shaanxi Province 712100, PR China.
Abstract:
MicroRNAs (miRNAs) are small ∼22-nt regulatory RNAs that regulate the stability and translation of cognate mRNAs. MiRNAs participate in the regulation of adipogenesis, and identification of the full repertoire of miRNAs expressed in adipose tissue is likely to significantly increase our understanding of adipose tissue growth and development. Here, we adopted a deep sequencing approach to determine the identity and abundance of miRNAs in developing swine adipose tissue. Via this approach, we identified the sequences and relative expression levels of 227 conserved miRNAs (of which 59 were novel) and 66 potential porcine miRNAs. The expression levels displayed a large range, as reflected by the number of sequence reads, which varied from several counts for rare miRNAs to several million reads for the most abundant miRNAs. The abundant miRNAs principally belonged to 32 miRNA gene families, including miR-143, miR-103, let-7, and miR-148. Of the conserved miRNAs, 93 miRNAs were up-regulated and 33 miRNAs were down-regulated in the adult pig adipose tissue. Moreover, we observed sequence variants and seed edits of the miRNAs. KEGG pathway analysis and GO term enrichment suggested that highly expressed miRNAs are involved in adipose tissue development, signal transduction, cell-cell and cell-extracellular matrix communication, neural development and function, and lipid metabolism including carboxylic acid, oxoacid, fatty acid, steroid, glycerolipid, alcohol and phospholipid metabolism. Our results expand the number of known porcine miRNAs and provide a thorough account of the miRNA transcriptome in porcine adipose tissue.
Insights
This study identifies novel microRNAs (miRNAs) in developing swine adipose tissue using deep sequencing. These findings enhance understanding of miRNA roles in fat development and metabolism.
Area of Science:
- Molecular Biology
- Genomics
- Biochemistry
Background:
- MicroRNAs (miRNAs) are crucial regulators of gene expression, impacting cellular processes like adipogenesis.
- Understanding the miRNA landscape in adipose tissue is vital for comprehending fat development and metabolic functions.
Purpose of the Study:
- To comprehensively identify and quantify microRNAs (miRNAs) in developing swine adipose tissue using deep sequencing.
- To characterize the porcine miRNA transcriptome and explore its role in adipose tissue biology.
Main Methods:
- Deep sequencing of small RNAs from developing swine adipose tissue.
- Bioinformatic analysis to identify conserved and novel miRNAs, and determine their expression levels.
- KEGG pathway and GO term enrichment analysis to infer functions of highly expressed miRNAs.
Main Results:
- Identified 227 conserved miRNAs (59 novel) and 66 potential porcine miRNAs.
- Detected a wide range of miRNA expression levels, with abundant miRNAs belonging to key families like miR-143 and let-7.
- Found differential expression of miRNAs in adult pig adipose tissue and observed sequence variants.
- Enriched pathways indicated involvement of miRNAs in adipose tissue development, signal transduction, and lipid metabolism.
Conclusions:
- This study significantly expands the known repertoire of porcine miRNAs.
- The identified miRNA transcriptome provides insights into the molecular mechanisms governing swine adipose tissue development and metabolism.
