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协作交叉初始系血液学参数的遗传分析。

Genetic analysis of hematological parameters in incipient lines of the collaborative cross.

出版信息

G3 (Bethesda). 2012 Feb;2(2):157-65. doi: 10.1534/g3.111.001776. Epub 2012 Feb 1.

Abstract

Hematological parameters, including red and white blood cell counts and hemoglobin concentration, are widely used clinical indicators of health and disease. These traits are tightly regulated in healthy individuals and are under genetic control. Mutations in key genes that affect hematological parameters have important phenotypic consequences, including multiple variants that affect susceptibility to malarial disease. However, most variation in hematological traits is continuous and is presumably influenced by multiple loci and variants with small phenotypic effects. We used a newly developed mouse resource population, the Collaborative Cross (CC), to identify genetic determinants of hematological parameters. We surveyed the eight founder strains of the CC and performed a mapping study using 131 incipient lines of the CC. Genome scans identified quantitative trait loci for several hematological parameters, including mean red cell volume (Chr 7 and Chr 14), white blood cell count (Chr 18), percent neutrophils/lymphocytes (Chr 11), and monocyte number (Chr 1). We used evolutionary principles and unique bioinformatics resources to reduce the size of candidate intervals and to view functional variation in the context of phylogeny. Many quantitative trait loci regions could be narrowed sufficiently to identify a small number of promising candidate genes. This approach not only expands our knowledge about hematological traits but also demonstrates the unique ability of the CC to elucidate the genetic architecture of complex traits.

摘要

血液学参数,包括红细胞和白细胞计数及血红蛋白浓度,是广泛用于健康和疾病的临床指标。这些特征在健康个体中受到严格调控,受遗传控制。影响血液学参数的关键基因发生突变会产生重要的表型后果,包括多种影响疟疾易感性的变异。然而,大多数血液学特征的变异是连续的,可能受多个位点和具有小表型效应的变异的影响。我们使用一种新开发的小鼠资源群体——合作杂交群体(CC)来鉴定血液学参数的遗传决定因素。我们调查了 CC 的八个创始品系,并对 CC 的 131 条初始品系进行了图谱研究。基因组扫描鉴定了多个血液学参数的数量性状基因座,包括平均红细胞体积(Chr7 和 Chr14)、白细胞计数(Chr18)、中性粒细胞/淋巴细胞百分比(Chr11)和单核细胞数(Chr1)。我们利用进化原理和独特的生物信息学资源来缩小候选区间的大小,并在系统发育的背景下观察功能变异。许多数量性状基因座区域可以被充分缩小,以确定少数有希望的候选基因。这种方法不仅扩展了我们对血液学特征的认识,还展示了 CC 阐明复杂特征遗传结构的独特能力。

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