Department of Animal Science, Faculty of Agriculture, Ferdowsi University of Mashhad, Mashhad, Iran.
Biochem Genet. 2023 Dec;61(6):2633-2649. doi: 10.1007/s10528-023-10395-9. Epub 2023 May 24.
The productivity of beef cows depends on early reproduction traits such as puberty and has an economic impact on the efficiency of production system. Imprinted genes modulate many important endocrine processes such as growth, the onset of puberty and maternal reproductive and behavior. The role of imprinted genes in puberty is a challenging subject since they show the reciprocal role of maternal and paternal genomes in progeny. Although, there are evidences of the involvement of imprint genes in puberty in human, the role of this type of genes in the onset of puberty in cattle has not been studied yet. Here we examined the expression of 27 imprinted genes in pre and post puberty in a bovine model to find differentially expressed imprinted genes in maternal-paternal purebreds and reciprocal crosses across eight tissues and discussed the task of these genes in this crucial process of development and in onset of puberty. DLK1 and MKRN3 that previously described as cause of the central precocious puberty (CPP) in human were differentially expressed in this study. Functional annotation analysis of differentially imprinted genes in different tissues showed significant biological processes of cellular response to growth factor stimulus, response to growth factor, response to parathyroid hormone, developmental growth and the importance of alternative splicing. The results of this study have implications in understanding the role of imprinted genes in the onset of puberty in cattle.
肉牛的生产力取决于早期繁殖性状,如青春期,对生产系统的效率有经济影响。印迹基因调节许多重要的内分泌过程,如生长、青春期的开始以及母性生殖和行为。印迹基因在青春期中的作用是一个具有挑战性的课题,因为它们在后代中表现出母本和父本基因组的相互作用。尽管有证据表明印迹基因参与了人类青春期,但这种基因在牛青春期开始中的作用尚未得到研究。在这里,我们检查了在牛模型中青春期前后的 27 个印迹基因的表达,以寻找在母本-父本纯合子和正反交中在八个组织中差异表达的印迹基因,并讨论了这些基因在这一关键发育过程和青春期开始中的作用。在这项研究中,先前被描述为导致人类中枢性早熟(CPP)的 DLK1 和 MKRN3 在本研究中表现出差异表达。在不同组织中差异印迹基因的功能注释分析显示,细胞对生长因子刺激的反应、对生长因子的反应、对甲状旁腺激素的反应、发育生长以及选择性剪接的重要性等重要的生物学过程。本研究的结果对理解印迹基因在牛青春期开始中的作用具有重要意义。