| Literature DB >> 26702356 |
Hanfang Cai1, Yang Zhou1, Wenchao Jia1, Bowen Zhang1, Xianyong Lan1, Chuzhao Lei1, Xintang Fang2, Hong Chen1.
Abstract
BACKGROUND: Identification of genetic variants, including SNPs (Single Nucleotide Polymorphisms), CNVs (Copy Number Variations) and alternative splicing, within functional genes has received increasing attention in animal science research. HGF (Hepatocyte Growth Factor) is a very important growth factor that works as a mitogen or a morphogen during tissue growth, development and regeneration. However, to date, the functions of genetic variants within the bovine HGF gene, particularly their effects on mRNA expression, have not been determined well.Entities:
Keywords: Alternative splicing; Expression; HGF; Qinchuan cattle; SNPs
Year: 2015 PMID: 26702356 PMCID: PMC4688982 DOI: 10.1186/s40104-015-0059-3
Source DB: PubMed Journal: J Anim Sci Biotechnol ISSN: 1674-9782
Primers used for mutation detecting, cloning and expression survey
| Primer | Sequences (5′–3′) | Size, bp | Tm, °C |
|---|---|---|---|
| P-BglII | F: TTTACCAATAGCCCACAG | 229 | 53 |
| R: CATTCTGCCTACTGAAATG | |||
| P-HGF-CDS | F: TCTGAGTCGGAAGAGGGT | 2, 250 | 54 |
| R: ATAAGGCACCACAGTTGTAG | |||
| P-Q-HGF | F: ACCAATGTGCCAATAGATG | 229 | 60 |
| R: TTAGTGATAGATACCGTCCC | |||
| P-qHGF-W | F: GTATCATTGGTAAAGGCGGTAG | 119 | 60 |
| R: ATAGCTCGAAGGCAAAAAG | |||
| P-qHGF-M | F: GTATCATTGGTAAAGGCGGTAG | 109 | 60 |
| R: CCCCGATAGCTGTGTTCG | |||
| P-Q-GAPDH | F: TGTTTGTGATGGGCGTGAACCA | 154 | 60 |
| R: ATGGCGTGGACAGTGGTCATAA | |||
| P-HGF-AS | F: TTGGTAAAGGCGGTAGCT | 205/190 | 58 |
| R: TAGCGTACCTCTGGATTGCT |
Fig. 1Association between bovine HGF gene expression in fetal skeletal muscle and its genetic variants. a–e The association between bovine HGF gene expression level and the 5 SNPs loci. Only SV1 locus has a significant effect on HGF expression (P < 0.05). f The comparison of HGF expression among different genotypic combinations. The bars represent the mean of ΔCt value ± SE. “*” indicates the significant difference in the HGF expression (P < 0.05)
Fig. 2Comparison of HGF-W and HGF-M. a The sequence differences between HGF-W and HGF-M. These are the reversed sequencing maps. b The detecting of HGF-W and HGF-M by agarose gel electrophoresis. DNA molecular weight marker is DNA MarkerI. Tissue expression of HGF-W and HGF-M in fetal c and adult d cattle were shown. Gene expression was normalized against HGF-W expression in heart. Each column denotes the mean ± SE. “*” indicates a significant difference at P < 0.05
Fig. 3Alternative splicing of bovine HGF gene. a The genomic location of splicing fragment (gray region) in HGF-M was compared to HGF-W. Boxes show the exons and lines represents introns. Dashed line indicating the partial genomic structures are not listed. b Positions of primers for detecting the HGF-W and HGF-M mRNA expression level. Lower cases show the splicing fragment sequence. The bow line indicates that the reverse primer for HGF-M skips the splicing fragment