Department of Animal Production, Faculty of Agriculture, Tanta University, Tanta, Egypt.
Department of Animal Wealth Development, Veterinary Genetics & Genetic Engineering, Faculty of Veterinary Medicine, Zagazig University, Zagazig, Egypt.
Domest Anim Endocrinol. 2021 Jan;74:106541. doi: 10.1016/j.domaniend.2020.106541. Epub 2020 Aug 17.
Members of the somatotrophic axis, especially GH and IGF1, are essential for growth. The association between GH polymorphisms and growth traits was numerously studied in cattle; however, no data are available for such association studies in buffalo. Therefore, this study was conducted to screen for polymorphisms in the GH gene and to study their putative association with growth traits in 200 Egyptian buffaloes. Polymerase chain reaction single-strand conformation polymorphism and sequencing were applied to look for polymorphisms in 3 loci spanning all exons and introns of buffalo GH. The C (MspI+) >T (MspI-) SNP in intron3, which is well known in cattle, was not detected in the examined buffaloes. However, 2 missense mutations were detected in exon5: one previously detected p.Leu153Val SNP, with very low frequencies for the mutant (Val) allele and one novel p.Asn174His SNP. At weaning age, the p.Leu153Val SNP was significantly associated with weaning body weight and gain with the positive effect of the wild allele (Leu) and higher GH serum, mRNA, and protein levels in animals with Leu/Asn and Leu/His haplotypes. At yearling age, the 2 SNPs associated with yearling weight and gain with positive effect for the mutant (Val and His) alleles with increased GH, and IGF1 serum, mRNA, and protein and GHR mRNA and protein levels in animals with Val/Asn haplotype. Therefore, the selection of Egyptian buffaloes with the Val/Asn haplotype could improve the growth traits of Egyptian buffaloes at yearling age which is the target age for perfect growing.
生长轴成员,尤其是 GH 和 IGF1,对生长至关重要。GH 基因多态性与生长性状的关联在牛中已被广泛研究,但在水牛中尚无此类关联研究的数据。因此,本研究旨在筛选 GH 基因的多态性,并研究其与 200 头埃及水牛生长性状的潜在关联。应用聚合酶链反应单链构象多态性和测序技术,在跨越水牛 GH 所有外显子和内含子的 3 个位点寻找多态性。在检查的水牛中,未检测到已知在牛中存在的 3 号内含子 C(MspI+)>T(MspI-)SNP。然而,在exon5 中检测到 2 个错义突变:一个先前检测到的 p.Leu153Val SNP,其突变(Val)等位基因的频率非常低,另一个是新的 p.Asn174His SNP。在断奶时,p.Leu153Val SNP 与断奶体重和断奶体重增加显著相关,野生等位基因(Leu)的正效应,以及具有 Leu/Asn 和 Leu/His 单倍型的动物的 GH 血清、mRNA 和蛋白质水平较高。在一岁时,2 个 SNP 与一岁体重和一岁体重增加相关,突变(Val 和 His)等位基因的正效应,以及具有 Val/Asn 单倍型的动物的 GH 和 IGF1 血清、mRNA 和蛋白质以及 GHR mRNA 和蛋白质水平增加。因此,选择具有 Val/Asn 单倍型的埃及水牛可以提高埃及水牛在一岁时的生长性状,这是完美生长的目标年龄。