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Myogenic factor 5 (myf-5) is the product of the MYF5 gene, belonging to the MyoD family. This transcription factor participates in the control of myogenesis. We identified 3 new mutations in the promoter region of the gene: A65C, C580T and C613T. The aim of this study was to evaluate the influence of the A65C transversion on gene expression. The analysis was conducted on 15 Polish Large White gilts. The relative content of MYF5 mRNA in m. longissimus dorsi did not differ significantly across MYF5 genotypes (AA, AC, CC). This result suggests that the A65C transversion may not play an important role in the expression of the MYF5 gene in analysed adult muscle but it abolishes a putative binding site for two transcription factors (CDP and HSF1) and creates such a site for Sp1.
The expression profile was evaluated of MYF5 and MYF6 genes in skeletal muscles of young growing Polish Large White (PLW), Polish Landrace (PL), Pietrain (PIE), Duroc (DUR) and Pulawska (PUL) gilts at different ages. Normalization of MYF5 and MYF6 was performed on reliable porcine reference genes (PRGs), where expression stabilities of nine of them (ACTB, B2M, GAPDH, SDHA, HPRTI, RPL13A, YWHAZ, TBP, TOP2B) were evaluated by RT-qPCR method and NormFinder software. Results revealed HPRTI, TBP and TOP2B as highly stable and PRGs. The age-dependent and breed-specific skeletal muscle expression comparisons revealed highly significant (P<0.01) differences in MYF6 expression levels of all skeletal muscles among investigated breeds. MYF6 gene expression in PIE and DUR were higher compared to PLW, PL and PUL gilts. Contrarily, paired-wise comparison of MYF5 gene expression showed only significant difference between DUR and PUL for semimembranosus, and PL and PLW, DUR and PL, PIE and PL, DUR and PUL and PIE and PUL for gluteus medius muscle. There was no significant relationship identified between gilt ages and the level of expression of MYF5 and MYF6 genes. However, their highest expression was identified in longissimus dorsi followed by gluteus medius and semimembranosus muscles. It is concluded that normalization of gene expression has to be done on more than one PRG to reduce the errors in transcription level estimates. Moreover, significantly different breed-specific expression of porcine MYF5 and MYF6 allowed the authors to prioritize these genes as potential candidate genes for trait-associated study.
The aim of this study was to characterize the polymorphism of genes RYR1, LEP, GH, MYOG, MYF5 and GDF8 in wild boar population inhabiting North-East of Poland. The above genes are considered candidate genes for carcass quality traits in domestic pigs. Ninety animals were tested. Genes RYR1, LEP and MYF5 appeared to be monomorphic, whereas genes MYOG, GH and GDF8 showed polymorphism similar to that observed in European pig breeds. However, no PCR product was obtained for several animals when MYOG and GDF8 gene fragments were amplified, suggesting the difference between wild boars tested and domestic pig in sequence of the gene regions where primers annealed. Moreover,this suggests a possibility of identification of new variants of these genes in wild boar.
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