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Identification of Candidate Gene Regions in the Rat by Co-Localization of QTLs for Bone Density Size Structure and Strength

机译:通过QTLs共定位来鉴定大鼠候选基因区域的骨密度大小结构和强度

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摘要

Susceptibility to osteoporotic fracture is influenced by genetic factors that can be dissected by whole-genome linkage analysis in experimental animal crosses. The aim of this study was to characterize quantitative trait loci (QTLs) for biomechanical and two-dimensional dual-energy X-ray absorptiometry (DXA) phenotypes in reciprocal F2 crosses between diabetic GK and normo-glycemic F344 rat strains and to identify possible co-localization with previously reported QTLs for bone size and structure. The biomechanical measurements of rat tibia included ultimate force, stiffness and work to failure while DXA was used to characterize tibial area, bone mineral content (BMC) and areal bone mineral density (aBMD). F2 progeny (108 males, 98 females) were genotyped with 192 genome-wide markers followed by sex- and reciprocal cross-separated whole-genome QTL analyses. Significant QTLs were identified on chromosome 8 (tibial area; logarithm of odds (LOD) = 4.7 and BMC; LOD = 4.1) in males and on chromosome 1 (stiffness; LOD = 5.5) in females. No QTLs showed significant sex-specific interactions. In contrast, significant cross-specific interactions were identified on chromosome 2 (aBMD; LOD = 4.7) and chromosome 6 (BMC; LOD = 4.8) for males carrying F344mtDNA, and on chromosome 15 (ultimate force; LOD = 3.9) for males carrying GKmtDNA, confirming the effect of reciprocal cross on osteoporosis-related phenotypes. By combining identified QTLs for biomechanical-, size- and qualitative phenotypes (pQCT and 3D CT) from the same population, overlapping regions were detected on chromosomes 1, 3, 4, 6, 8 and 10. These are strong candidate regions in the search for genetic risk factors for osteoporosis.
机译:骨质疏松性骨折的易感性受遗传因素影响,可以通过实验动物杂交中的全基因组连锁分析将其分解。这项研究的目的是表征糖尿病GK和正常血糖F344大鼠品系之间相互F2杂交的生物力学和二维双能X射线吸收测定(DXA)表型的定量特征位点(QTL),并确定可能的共-使用先前报告的QTL对骨骼大小和结构进行定位。大鼠胫骨的生物力学测量包括极限力,刚度和断裂功,而DXA用于表征胫骨面积,​​骨矿物质含量(BMC)和面骨矿物质密度(aBMD)。 F2后代(男108例,女98例)使用192个全基因组标记进行基因分型,然后进行性别和相互交叉交叉分离的全基因组QTL分析。在男性的第8号染色体(胫骨区;优势对数(LOD)= 4.7和BMC; LOD == 4.1)和女性的第1号染色体(刚度; LOD == 5.5)上发现了重要的QTL。没有QTL显示出明显的性别特异性相互作用。相反,对于携带F344mtDNA的雄性,在2号染色体(aBMD; LOD = 4.7)和6号染色体(BMC; LOD = 4.8)和15号染色体(终极力; LOD = 3.9)上鉴定出显着的交叉特异性相互作用。 GKmtDNA,证实相互交叉对骨质疏松症相关表型的影响。通过结合已鉴定的来自同一种群的生物力学,大小和定性表型(pQCT和3D CT)的QTL,可在1、3、4、6、8和10号染色体上检测到重叠区域。这些是搜索中的强候选区域骨质疏松症的遗传危险因素。

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