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Genetic polymorphisms in bovine ferroportin are associated with beef iron content.

机译:牛铁转运蛋白的遗传多态性与牛肉铁含量有关。

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摘要

Iron is an essential element for almost all living organisms. Tissue iron concentration shows natural variations among individuals, because of the influence of both environmental and genetic factors. Body iron, though essential, is also toxic in excess by generating reactive oxygen species. Iron homeostasis, thus, must be maintained systemically by the rate of iron absorption, iron utilization, iron storage and the rate of iron recycling. It is possible that mutations in any of the genes that encode proteins involved in maintaining iron homeostasis have the potential to alter iron load. The effect of single nucleotide polymorphisms (SNPs), a major genetic factor, on beef iron content were investigated in the current study.;The first objective of this study was to determine the variation of iron content in bovine longissimus dorsi (LD) muscle. The second objective was to identify single nucleotide polymorphisms (SNPs) in the exons and their flanking regions of the bovine ferroportin gene ( Fpn) and to evaluate the association between the identified SNPs and bovine muscle iron content. LD muscle samples were collected from 1086 Angus cattle for iron quantification and genomic DNA extraction. Nine exons and their flanking regions of Fpn were amplified and sequenced with 6 selected DNA samples. Genotyping was carried out for 1086 cattle. Nine novel SNPs, NC007300: g.1780 A>G, g.1872 A>G, g.7169 C>T, g.7477 C>G, g.19208 C>T, g.19263 A>G, g.19427 A>G, g.19569 C>T and g.20480 C>T, were identified. Statistical analysis showed that three of the nine SNPs, g.19208 C>T, g.19263 A>G, and g.20480 C>T, were significantly (P 0.007) associated with muscle iron content. High linkage disequilibrium was observed for SNP g.19208 C>T, g. 19263 A>G and g. 20480 C>T (R2 > 0.99), with which two haplotypes, TGC and CAT, were defined. Beef from individuals that were homozygous for the TGC haplotype had significantly (P 0.001) higher iron contents than did beef from CAT homozygous or heterozygous individuals.;In conclusion, results of the current study indicated that SNPs, NC007300: g.19208 C>T, g.19263 A>G, and g.20480 C>T, in Fpn might be useful markers for the selection of Angus cattle that produce progeny with a more desirable iron composition and therefore improve the healthfulness of beef. Further studies are needed to verify the observed effect in other independent populations and elucidate the biological mechanisms of the SNP effects.
机译:铁是几乎所有活生物体必不可少的元素。由于环境和遗传因素的影响,组织中的铁浓度表现出个体之间的自然变化。人体铁尽管是必不可少的,但由于产生活性氧,其毒性也大大超过了人体。因此,必须通过铁的吸收速率,铁的利用率,铁的存储量和铁的回收率来系统地维持铁的稳态。编码与维持铁稳态有关的蛋白质的任何基因中的突变都有可能改变铁负荷。本研究研究了主要的遗传因素单核苷酸多态性(SNPs)对牛肉中铁含量的影响。本研究的首要目的是确定牛背最长肌(LD)肌肉中铁含量的变化。第二个目标是鉴定牛铁转运蛋白基因(Fpn)的外显子及其侧翼区域中的单核苷酸多态性(SNP),并评估鉴定出的SNP与牛肌肉铁含量之间的关联。从1086只安格斯牛身上采集LD肌肉样本,以进行铁定量和基因组DNA提取。扩增了9个外显子及其Fpn侧翼区域,并用6个选定的DNA样品进行了测序。对1086头牛进行了基因分型。九个新颖的SNP,NC007300:g.1780 A> G,g.1872 A> G,g.7169 C> T,g.7477 C> G,g.19208 C> T,g.19263 A> G,g。鉴定出19427 A> G,g.19569 C> T和g.20480 C> T。统计分析表明,九个SNP中的三个,即g.19208 C> T,g.19263 A> G和g.20480 C> T与肌肉铁含量显着相关(P <0.007)。 SNP g.19208 C> T,g观察到高连锁不平衡。 19263 A> G和g。 20480 C> T(R2> 0.99),定义了两个单倍型,TGC和CAT。 TGC单倍型纯合子个体的牛肉中铁含量明显高于CAT纯合或杂合子个体的牛肉(P <0.001)。总而言之,本研究结果表明,SNPs,NC007300:g.19208 C> Fpn中的T(g.19263 A> G和g.20480 C> T)可能是选择安格斯牛的有用标记,这些安格斯牛产生的子代具有更理想的铁成分,因此提高了牛肉的健康性。需要进一步的研究以验证在其他独立人群中观察到的作用,并阐明SNP作用的生物学机制。

著录项

  • 作者

    Duan, Qing.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Biology Genetics.
  • 学位 M.S.
  • 年度 2010
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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