Transcriptional profiling of subcutaneous adipose tissue in Italian Large White pigs divergent for backfat thickness.
P ZambonelliE GaffoM ZappaterraStefania BortoluzziR DavoliPublished in: Animal genetics (2016)
Fat deposition is a widely studied trait in pigs because of its implications with animal growth efficiency, technological and nutritional characteristics of meat products, but the global framework of the biological and molecular processes regulating fat deposition in pigs is still incomplete. This study describes the backfat tissue transcription profile in Italian Large White pigs and reports genes differentially expressed between fat and lean animals according to RNA-seq data. The backfat transcription profile was characterised by the expression of 23 483 genes, of which 54.1% were represented by known genes. Of 63 418 expressed transcripts, about 80% were non-previously annotated isoforms. By comparing the expression level of fat vs. lean pigs, we detected 86 robust differentially expressed transcripts, 72 more highly expressed (e.g. ACP5, BCL2A1, CCR1, CD163, CD1A, EGR2, ENPP1, GPNMB, INHBB, LYZ, MSR1, OLR1, PIK3AP1, PLIN2, SPP1, SLC11A1, STC1) and 14 lower expressed (e.g. ADSSL1, CDO1, DNAJB1, HSPA1A, HSPA1B, HSPA2, HSPB8, IGFBP5, OLFML3) in fat pigs. The main functional categories enriched in differentially expressed genes were immune system process, response to stimulus, cell activation and skeletal system development, for the overexpressed genes, and unfolded protein binding and stress response, for the underexpressed genes, which included five heat shock proteins. Adipose tissue alterations and impaired stress response are linked to inflammation and, in turn, to adipose tissue secretory activity, similar to what is observed in human obesity. Our results provide the opportunity to identify biomarkers of carcass fat traits to improve the pig production chain and to identify genetic factors that regulate the observed differential expression.
Keyphrases
- adipose tissue
- genome wide
- insulin resistance
- heat shock
- rna seq
- heat shock protein
- single cell
- high fat diet
- genome wide identification
- transcription factor
- bioinformatics analysis
- dna methylation
- fatty acid
- poor prognosis
- metabolic syndrome
- genome wide analysis
- binding protein
- gene expression
- bone mineral density
- small molecule
- body mass index
- fluorescent probe
- endoplasmic reticulum stress
- immune response
- stem cells
- body composition
- bone marrow
- regulatory t cells
- dna binding
- high fat diet induced