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在C57BL/6J和129S1/SvImJ近交系小鼠中决定骨密度的数量性状基因座。

Quantitative trait loci that determine BMD in C57BL/6J and 129S1/SvImJ inbred mice.

作者信息

Ishimori Naoki, Li Renhua, Walsh Kenneth A, Korstanje Ron, Rollins Jarod A, Petkov Petko, Pletcher Mathew T, Wiltshire Tim, Donahue Leah Rae, Rosen Clifford J, Beamer Wesley G, Churchill Gary A, Paigen Beverly

机构信息

The Jackson Laboratory, Bar Harbor, Maine 04609, USA.

出版信息

J Bone Miner Res. 2006 Jan;21(1):105-12. doi: 10.1359/JBMR.050902. Epub 2005 Sep 9.

Abstract

UNLABELLED

BMD is highly heritable; however, little is known about the genes. To identify loci controlling BMD, we conducted a QTL analysis in a (B6 x 129) F2 population of mice. We report on additional QTLs and also narrow one QTL by combining the data from multiple crosses and through haplotype analysis.

INTRODUCTION

Previous studies have identified quantitative trait loci (QTL) that determine BMD in mice; however, identification of genes underlying QTLs is impeded by the large size of QTL regions.

MATERIALS AND METHODS

To identify loci controlling BMD, we performed a QTL analysis of 291 (B6 x 129) F2 females. Total body and vertebral areal BMD (aBMD) were determined by peripheral DXA when mice were 20 weeks old and had consumed a high-fat diet for 14 weeks.

RESULTS AND CONCLUSIONS

Two QTLs were common for both total body and vertebral aBMD: Bmd20 on chromosome (Chr) 6 (total aBMD; peak cM 26, logarithm of odds [LOD] 3.8, and vertebral aBMD; cM 32, LOD 3.6) and Bmd22 on Chr 1 (total aBMD; cM 104, LOD 2.5, and vertebral aBMD; cM 98, LOD 2.6). A QTL on Chr 10 (Bmd21, cM 68, LOD 3.0) affected total body aBMD and a QTL on Chr 7 (Bmd9, cM 44, LOD 2.7) affected vertebral aBMD. A pairwise genome-wide search did not reveal significant gene-gene interactions. Collectively, the QTLs accounted for 21.6% of total aBMD and 17.3% of vertebral aBMD of the F(2) population variances. Bmd9 was previously identified in a cross between C57BL/6J and C3H/HeJ mice, and we narrowed this QTL from 34 to 22 cM by combining the data from these crosses. By examining the Bmd9 region for conservation of ancestral alleles among the low allele strains (129S1/SvImJ and C3H/HeJ) that differed from the high allele strain (C57BL/6J), we further narrowed the region to approximately 9.9 cM, where the low allele strains share a common haplotype. Identifying the genes for these QTLs will enhance our understanding of skeletal biology.

摘要

未标记

骨密度(BMD)具有高度遗传性;然而,对相关基因却知之甚少。为了确定控制骨密度的基因座,我们在(B6×129)F2小鼠群体中进行了数量性状基因座(QTL)分析。我们报告了额外的QTL,并通过合并多个杂交的数据和单倍型分析缩小了一个QTL的范围。

引言

先前的研究已经确定了决定小鼠骨密度的数量性状基因座(QTL);然而,由于QTL区域较大,阻碍了对QTL潜在基因的鉴定。

材料与方法

为了确定控制骨密度的基因座,我们对291只(B6×129)F2雌性小鼠进行了QTL分析。当小鼠20周龄且食用高脂饮食14周后,通过外周双能X线吸收法(DXA)测定全身和椎骨的面积骨密度(aBMD)。

结果与结论

全身和椎骨aBMD共有两个QTL:位于6号染色体(Chr)上的Bmd20(全身aBMD;峰值厘摩[ cM ] 26,优势对数[ LOD ] 3.8,椎骨aBMD;cM 32,LOD 3.6)和位于1号染色体上的Bmd22(全身aBMD;cM 104,LOD 2.5,椎骨aBMD;cM 98,LOD 2.6)。位于10号染色体上的一个QTL(Bmd21,cM 68,LOD 3.00)影响全身aBMD,位于7号染色体上的一个QTL(Bmd9,cM 44,LOD 2.7)影响椎骨aBMD。全基因组成对搜索未发现显著的基因-基因相互作用。总的来说,这些QTL占F(2)群体方差中全身aBMD的21.6%和椎骨aBMD的17.3%。Bmd9先前在C57BL/6J和C3H/HeJ小鼠的杂交中被鉴定出来,我们通过合并这些杂交的数据将这个QTL从34 cM缩小到22 cM。通过检查Bmd9区域中低等位基因品系(129S1/SvImJ和C3H/HeJ)与高等位基因品系(C57BL/6J)之间祖先等位基因的保守性,我们进一步将该区域缩小到约9.9 cM,低等位基因品系在该区域共享一个共同的单倍型。确定这些QTL的基因将增进我们对骨骼生物学的理解。

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