Department of Livestock Farm Complex, West Bengal University of Animal and Fishery Sciences, Kolkata-37, West Bengal, India.
Department of Computer Science, Indian Institute of Technology, Kharagpur, Paschim Medinipur, West Bengal, India.
Domest Anim Endocrinol. 2020 Apr;71:106405. doi: 10.1016/j.domaniend.2019.106405. Epub 2019 Oct 18.
The GH has a multifaceted role in growth, reproduction, and milk production. Nonsynonymous mutations identified as L153V were observed from GH1 (L) to GH2 (V) with higher genotypic frequency for GH1 being 0.87. GH2 (V) allele was identified as a rare allele and the population followed Hardy-Weinberg equilibrium. LL homozygote variant had significantly better growth, reproduction, and expected milk production at different ages in crossbred (CB) males. Reports are scanty explaining the molecular mechanism of how individuals with LV genotype were phenotypically inferior to that of wild-type LL. In the present study, it was explored that GH peptide with LV heterozygotes of GH gene, were observed to have reduced structural stability thermodynamically and thus functionally leads to reduced economic traits in CB animals. The fact was first time reported and confirmed through genomic analysis, bioinformatics, and later confirmed through immunohistochemistry. Differential expression analysis of the GH gene with respect to other genes in the hypothalamus-pituitary growth axis of CB cattle was also studied to have a complete insight of the GH gene.
GH 在生长、繁殖和牛奶生产中具有多方面的作用。从 GH1(L)到 GH2(V)发现了作为 L153V 的非同义突变,GH1 的更高基因型频率为 0.87。GH2(V)等位基因被鉴定为罕见等位基因,群体遵循 Hardy-Weinberg 平衡。在杂交(CB)雄性中,LL 纯合变体在不同年龄的生长、繁殖和预期产奶量方面表现出显著优势。目前的研究中,首次通过基因组分析、生物信息学和免疫组织化学进行了验证,探索了 GH 基因的 GH 肽与 LV 杂合子,其结构稳定性在热力学上观察到降低,从而导致 CB 动物的经济性状降低。有报道解释了具有 LV 基因型的个体在表型上劣于野生型 LL 的分子机制,但这些报道很少。