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Bovine-specific nucleotide polymorphisms and mRNA expression of the growth hormone secretagogue receptor 1a (GHSR1a) gene and its genetic association with growth and carcass traits

机译:牛特异性核苷酸多态性和生长激素促分泌素受体1a(GHSR1a)基因的mRNA表达及其与生长和car体性状的遗传关联

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摘要

The growth hormone secretagogue receptor 1a (GHSR1a) is involved in many important functions including growth hormone (GH) secretion and appetite regulation and other important functions. We reveal herein, the unravelling of bovine-specific 5'untranslated region (5'UTR) microsatellite polymorphisms, a 3bp-indel in exon 1 (DelR2402) and two different kinds of transcripts of the GHSR1a gene (spliced, without a microsatellite with in the 5'UTR (GHSR1a); and non-spliced, with the microsatellite (GHSR1b)). A total of 17 alleles ((TG)10~33) in the 5'UTR microsatellite was found in 11 cattle breeds. Furthermore, we found the DelR242 (3R) allele, a truncated 3-arginine residue (3R) (major type: 4 arginine residues (4R)) within the intracellular loop 3 of GHSR1a protein in Japanese Shorthorn with a high frequency of 0.43 compared to the low frequency of 0.00~0.09 in other cattle breeds. We carried out a genetic association study between the 5'UTR microsatellite and growth and carcass traits in 1,285 steers. Statistical analysis revealed that the 5'UTR microsatellite locus had a significant additive effect on carcass weight (CW) and average daily gain (ADG). The 19-TG allele had a significantly desirable effect on these traits. We proposed a translational hypothesis that the association is due to differences in the secondary structure of GHSR1b mRNA among the GHSR1a gene haplotypes. We also examined age-related changes in the expressions of GHSR1a and GHSR1b in many cattle tissues. The GHSR1a mRNA expression in the arcuate nucleus of post-weaning calves was more than 10-fold higher than those of pre-weaning calves and cows. In peripheral tissues, there were 3 marked differences in mRNA expression between cattle, humans and mice, as follows: (1) the GHSR1a mRNA expression in the liver is high in cattle and very low in 3 humans and mice; (2) the GHSR1b mRNA expression in the liver is low in cattle and high in humans; (3) the GHSR1b mRNA expression in the pancreas is very high in cattle.
机译:生长激素促分泌素受体1a(GHSR1a)参与许多重要功能,包括生长激素(GH)分泌和食欲调节以及其他重要功能。我们在本文中揭示了牛特异性5'非翻译区(5'UTR)微卫星多态性,外显子1(DelR2402)中3bp插入缺失和GHSR1a基因的两种不同转录本的分解(剪接,无微卫星和5'UTR(GHSR1a);并且未剪接,带有微卫星(GHSR1b))。在11个牛的5'UTR微卫星中共发现17个等位基因((TG)10〜33)。此外,我们在日本短角牛的GHSR1a蛋白的细胞内环3内发现了DelR242(3R)等位基因,它是一个截短的3-精氨酸残基(3R)(主要类型:4个精氨酸残基(4R)),与0.43的高频率相比其他牛品种中0.00〜0.09的频率较低。我们在1,285头公牛中对5'UTR微卫星与生长和car体性状进行了遗传关联研究。统计分析表明,5'UTR微卫星基因座对car体重量(CW)和平均日增重(ADG)具有显着的累加作用。 19-TG等位基因对这些性状具有显着的理想作用。我们提出了一个翻译假设,即该关联是由于GHSR1a基因单倍型中GHSR1b mRNA二级结构的差异所致。我们还检查了许多牛组织中GHSR1a和GHSR1b表达的年龄相关变化。断奶后犊牛的弧形核中GHSR1a mRNA的表达比断奶前犊牛和牛的高十倍以上。在外周组织中,牛,人和小鼠之间的mRNA表达存在3个显着差异,如下:(1)肝脏中GHSR1a mRNA表达在牛中较高,而在3个人和小鼠中则很低。 (2)肝脏中GHSR1b mRNA的表达在牛中低,而人中高。 (3)牛胰腺中GHSR1b mRNA的表达很高。

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