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首页> 外文期刊>Animal Genetics >Genetic variants in KDR transcriptional regulatory region affect promoter activity and intramuscular fat deposition in Erhualian pigs.
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Genetic variants in KDR transcriptional regulatory region affect promoter activity and intramuscular fat deposition in Erhualian pigs.

机译:KDR转录调控区中的遗传变异影响二化lian猪的启动子活性和肌内脂肪沉积。

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摘要

Kinase insert domain receptor (KDR), a vascular endothelial growth factor (VEGF) receptor, is widely regarded as having a principal role in mediating VEGF-induced responses in angiogenesis. As angiogenesis provides oxygen and nutrients for growth and deposition of adipose cells, our objective was to determine whether the promoter polymorphisms in the KDR gene have effects on intramuscular fat (IMF) deposition in the longissimus dorsi muscle. Three novel SNPs, c. -1316A > G, c. -1303C > T and c. -1108A > C, were revealed to have differential allele distribution between high- and low-IMF content groups by comparative sequencing of DNA pools. The three SNPs were completely linked, forming only ACA or GTC haplotypes when genotyped in 105 Erhualian purebred pigs and 98 Duroc x Large White x Yorkshire (D x L x Y) cross-bred pigs. It is interesting that the ACA haplotype is present exclusively in Erhualian pigs and not in D x L x Y pigs. The ACA promoter was found to have higher activity than GTC type for KDR transcription using either gene expression analysis or luciferase assay. Site-direct mutation analysis demonstrated that c. -1316A > G is the causation of promoter activity alteration. Furthermore, we detected that CD31 (also known as PECAM1) and CD34, two blood vessel endothelial markers, expressed higher in ACA/ACA individuals. We concluded that the ACA promoter might be a desirable form for improving IMF content by promoting higher KDR gene expression and more blood vessel network.
机译:激酶插入结构域受体(KDR)是一种血管内皮生长因子(VEGF)受体,被广泛认为在介导VEGF诱导的血管生成反应中起主要作用。由于血管生成为脂肪细胞的生长和沉积提供了氧气和营养,因此我们的目标是确定KDR基因中的启动子多态性是否对背最长肌的肌内脂肪(IMF)沉积有影响。三个新颖的SNP,c。 -1316A> G,c。 -1303C> T和c。通过对DNA库进行比较测序,发现-1108A> C具有高和低IMF含量组之间的等位基因分布差异。在105只二化hua纯种猪和98只杜洛克x大白x约克夏(D xL x Y)杂种猪中进行基因分型时,这三个SNP完全连锁,仅形成ACA或GTC单倍型。有趣的是,ACA单倍型仅存在于二化lian猪中,而不存在于D xL x Y猪中。使用基因表达分析或荧光素酶测定法,发现ACA启动子对KDR转录的活性高于GTC类型。定点突变分析表明c。 -1316A> G是启动子活性改变的原因。此外,我们检测到CD31(也称为PECAM1)和CD34(两种血管内皮标记)在ACA / ACA个人中表达更高。我们得出结论,ACA启动子可能是通过促进更高的KDR基因表达和更多的血管网络来改善IMF含量的理想形式。

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