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Genetic regulation of intrinsic endurance exercise capacity in mice.

机译:小鼠内在耐力运动能力的遗传调控。

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摘要

Endurance exercise capacity is a powerful predictor of health status. Having low levels of endurance exercise capacity has been linked with cardiovascular disease. Variation in endurance exercise capacity, measured during a graded exercise test, has been reported across cross-section, twin, and family studies. This variation is evidence of a genetic component to the phenotype of endurance exercise capacity: however, the genetic factors responsible for explaining this variation are undefined, in part because previous research has been performed on a limited scale. Therefore, three sets of experiments were designed to identify: 1) Novel quantitative trait loci (QTL) for endurance exercise capacity in 34 strains of inbred mice using genome-wide association mapping. 2) The effect of chromosome substitution on endurance exercise capacity using linkage analysis in F2 mice. 3) The effect of chromosome substitution on endurance exercise capacity using wild-derived mice.;The main findings of this dissertation are: 1) There are strain-specific differences in endurance exercise capacity across 34 strains of male inbred mice. Genome-wide association mapping identified novel putative QTL on chromosomes 2, 7, 11, and 13. 2) Linkage analysis identified a novel QTL on chromosome 14 at the 56 cM position for run time and work. Linkage analysis also identified a potential sex-specific QTL, with the identified QTL significant for male mice only. 3) Novel putative QTL were identified on chromosomes 3 and 14 in chromosome substitution mice from wild-derived mice. These data suggest that chromosome 14 is an important contributor to the genetic regulation of intrinsic endurance exercise capacity. These studies support a genetic component to endurance exercise capacity by identifying strain-specific differences and novel, putative QTL.
机译:耐力运动能力是健康状况的有力预测指标。耐力水平低的运动能力与心血管疾病有关。在横断面,双胞胎和家庭研究中,已报告了在分级运动测试中测得的耐力运动能力的变化。这种变异是耐力运动能力表型的遗传成分的证据:然而,解释这种变异的遗传因素尚不确定,部分原因是先前的研究规模有限。因此,设计了三组实验来识别:1)使用全基因组关联映射在34个近交系小鼠中耐力运动能力的新型定量性状基因位点(QTL)。 2)使用连锁分析在F2小鼠中进行染色体替代对耐力运动能力的影响。 3)染色体替代对野生小鼠耐力运动能力的影响。本论文的主要发现是:1)34只雄性自交系小鼠的耐力运动能力存在菌株特异性差异。全基因组关联图谱鉴定了在2号,7号,11号和13号染色体上的新假定QTL。2)连锁分析在56 cM位置的运行时间和工作上鉴定了14号染色体上的新QTL。连锁分析还确定了潜在的性别特异性QTL,其中所确定的QTL仅对雄性小鼠有意义。 3)在来自野生小鼠的染色体替代小鼠的3号和14号染色体上鉴定了新的推定的QTL。这些数据表明,第14号染色体是内在耐力锻炼能力的遗传调控的重要贡献者。这些研究通过鉴定菌株特异性差异和新颖的假定QTL来支持耐力运动能力的遗传成分。

著录项

  • 作者

    Courtney, Sean Michael.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Kinesiology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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