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首页> 外文期刊>Livestock Science >Polymorphism within TATA-box of bovine lactoferrin gene and its association with performance traits in Holstein cattle.
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Polymorphism within TATA-box of bovine lactoferrin gene and its association with performance traits in Holstein cattle.

机译:牛乳铁蛋白基因TATA-box内的多态性及其与荷斯坦牛的生产性状的关系。

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摘要

Bovine lactoferrin (LTF) is a well known glycoprotein present in mammalian milk. LTF has many biological functions, such as: non-specific immune defense against pathogens, immunomodulatory activity, iron homeostasis, antioxidant properties and the regulation of cell growth. Many polymorphisms have been found in the bovine LTF gene. The aim of this study is to find out whether a single SNP (A/C) located at position --28 (within the TATA box) influences the transcription complex in mammary epithelial cells and performance traits in dairy cattle. Four hundred fifty nine Polish Holstein-Friesian bulls and 274 cows - the daughters of 6 bulls were screened by PCR-SSCP method. Cows were selected into two groups showing low (less than 105/ml) and a high (more than 106/ml) somatic cell count measured 10 times during the first lactation. Electrophoretic mobility shift assay (EMSA) showed that the LTF gene was expressed during lactation and that the A allele was bound by the nuclear proteins more efficiently. The C allele was significantly more frequent in cows with low number of SCC (P < 0.0001). The effects of LTF genotype on the breeding value of bulls were estimated for 29 traits routinely evaluated in the national database. Significant negative effects of the AA genotype were found for 6 conformation traits and 3 fertility traits. The lack of an antagonistic correlation between allele C of LTF and milk performance traits highlights its benefit for breeding programs
机译:牛乳铁蛋白(LTF)是哺乳动物牛奶中存在的众所周知的糖蛋白。 LTF具有许多生物学功能,例如:对病原体的非特异性免疫防御,免疫调节活性,铁稳态,抗氧化特性和细胞生长调节。在牛LTF基因中发现了许多多态性。这项研究的目的是找出位于--28位(在TATA框内)的单个SNP(A / C)是否会影响奶牛上皮细胞的转录复合物和性能特征。通过PCR-SSCP方法筛选了459只波兰荷斯坦-弗里斯兰公牛和274头牛-6只公牛的女儿。母牛被分为两组,在第一次实验中,他们的体细胞计数低(小于10 5 / ml)和高(大于10 6 / ml)。哺乳期。电泳迁移率变动分析(EMSA)表明,LTF基因在哺乳期表达,A等位基因更有效地与核蛋白结合。 SCC数量低的母牛中C等位基因的发生率明显更高(P <0.0001)。在国家数据库中常规评估了29个性状,评估了LTF基因型对公牛育种价值的影响。发现AA基因型对6个构象性状和3个生育性状具有显着的负面影响。 LTF的等位基因C与乳汁性状之间缺乏拮抗相关性,突出了其对育种计划的好处

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