首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >Genetic characterization of a new set of recombinant inbred lines (LGXSM) formed from the inter-cross of SM/J and LG/J inbred mouse strains
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Genetic characterization of a new set of recombinant inbred lines (LGXSM) formed from the inter-cross of SM/J and LG/J inbred mouse strains

机译:由SM / J和LG / J自交系小鼠品系的杂交形成的一组新的重组自交系(LGXSM)的遗传学表征

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A new set of LGXSM recombinant inbred (RI) strains is presented. The RI strain panel consists of 18 remaining strains of the original 55 founding strains. Strain characterization is based on 506 polymorphic microsatellites and 4,289 single nucleotide polymorphisms (SNPs) distributed across the genome. Average microsatellite inter-marker distance is 4.80+/-4.84 Mb or 2.91+/-3.21 F(2) cM. SNPs are more densely spaced at 0.57+/-1.27 Mb. Ninety-five percent of all microsatellite inter-marker intervals are separated by less than 15.00 Mb or 8.50 F(2) cM, while 95% of the SNPs are less than 0.95 Mb apart. Strains show expected low levels of nonsyntenic association among loci and complete genomic independence. During inbreeding, the RI strains went through strong natural selection on the agouti locus on Chromosome 2, especially when the epistatically interacting tyrosinase locus on Chromosome 7 carried the wild-type allele. The LG/J and SM/J strains differ in a large number of biomedically important traits, and they and their inter-cross progeny have been used in multiple mapping studies. The LGxSM RI strain panel provides a powerful new resource for mapping the genetic bases of complex traits and should prove to be of great biomedical utility in modeling complex human diseases such as obesity and diabetes.
机译:介绍了一组新的LGXSM重组自交(RI)菌株。 RI菌株组由原始55个创始菌株中的18个剩余菌株组成。菌株表征基于506个多态微卫星和分布在基因组中的4,289个单核苷酸多态性(SNP)。平均微卫星标记间距离为4.80 +/- 4.84 Mb或2.91 +/- 3.21 F(2)cM。 SNP的密度更高,为0.57 +/- 1.27 Mb。所有微卫星标记间间隔的百分之九十五间隔小于15.00 Mb或8.50 F(2)cM,而95%的SNP间隔小于0.95 Mb。菌株显示预期的基因座之间的非同义关联水平低和完全基因组独立性。在近交过程中,RI菌株在2号染色体上的刺齿位点经历了强烈的自然选择,尤其是当7号染色体上的上位相互作用酪氨酸酶基因座携带了野生型等位基因时。 LG / J和SM / J菌株在许多生物医学重要性状上有所不同,并且它们及其杂交后代已用于多种作图研究中。 LGxSM RI菌株小组为绘制复杂性状的遗传基础图谱提供了强大的新资源,应该被证明在建模肥胖症和糖尿病等复杂人类疾病方面具有巨大的生物医学实用性。

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