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小鼠海马体的遗传结构:具有选择性区域效应的基因座的鉴定。

Genetic architecture of the mouse hippocampus: identification of gene loci with selective regional effects.

作者信息

Peirce J L, Chesler E J, Williams R W, Lu L

机构信息

Center for Neuroscience, Department of Anatomy and Neurobiology, University of Tennessee Health Science Center, Monroe Avenue, Memphis, Tennessee 38163, USA.

出版信息

Genes Brain Behav. 2003 Aug;2(4):238-52. doi: 10.1034/j.1601-183x.2003.00030.x.

Abstract

We recently mapped two quantitative trait loci that have widespread effects on hippocampal architecture in mouse: Hipp1a and Hipp5a. We also noted remarkable strain differences in the relative sizes of different hippocampal regions. Estimated heritable variation for these differences was 42% in hippocampus proper, 40% in dentate gyrus, 31% in granule cell layer and 18% in pyramidal cell layer. Region size varied at least 50% from largest to smallest measurement. Here we have utilized these differences to identify loci with effects on the dentate gyrus, granule cell layer, hippocampus proper and pyramidal cell layer. Our sample consists of C57BL/6J and DBA/2J and 32 BXD recombinant inbred strains. Volumetric data were corrected for shrinkage and for differences in brain weight. We identified significant loci on chromosomes (Chr) 6, 13 and 15, and a significant interaction locus on proximal Chr 11. A suggestive distal Chr 1 locus overlaps with Hipp1a. HipV13a (Chr 13, 42-78Mb) has an additive effect of 0.56 mm3 (12.1%) on dentate gyrus volume, while GrV6a (Chr 6, 29-65 Mb) has additive effects of 0.14 mm3 (16.0%) on the volume of the granule cell layer. HipV13a also interacts with DGVi11a, a locus on proximal Chr 11 that operates exclusively through its epistatic effect on HipV13a and has no independent main effect HipV15a (Chr 15, 0-51 Mb) has an additive effect of 1.76 mm3 (9.0%) on the volume of the hippocampus proper. We used WebOTL, a recently described web-based tool, to examine genetic correlation of gene expression with hippocampal volume. We identified a number of genes that map within the OTL intervals and have highly correlated expression patterns. Using WebQTL's extensive database of published BXD phenotypes, we also detected a strong and potentially biologically meaningful correlation between hippocampal volume and the acoustic startle response.

摘要

我们最近绘制了两个对小鼠海马结构有广泛影响的数量性状基因座

Hipp1a和Hipp5a。我们还注意到不同海马区域相对大小存在显著的品系差异。这些差异的估计遗传变异在海马体中为42%,在齿状回中为40%,在颗粒细胞层中为31%,在锥体细胞层中为18%。区域大小从最大测量值到最小测量值至少相差50%。在这里,我们利用这些差异来识别对齿状回、颗粒细胞层、海马体和锥体细胞层有影响的基因座。我们的样本包括C57BL/6J和DBA/2J以及32个BXD重组近交系。对体积数据进行了收缩校正和脑重差异校正。我们在6号、13号和15号染色体上鉴定出显著的基因座,在近端11号染色体上鉴定出一个显著的相互作用基因座。一个提示性的远端1号染色体基因座与Hipp1a重叠。HipV13a(13号染色体,42 - 78Mb)对齿状回体积有0.56 mm³(12.1%)的加性效应,而GrV6a(6号染色体,29 - 65 Mb)对颗粒细胞层体积有0.14 mm³(16.0%)的加性效应。HipV13a还与DGVi11a相互作用,DGVi11a是近端11号染色体上的一个基因座,仅通过其对HipV13a的上位效应起作用,没有独立的主效应。HipV15a(15号染色体,0 - 51 Mb)对海马体体积有1.76 mm³(9.0%)的加性效应。我们使用WebOTL(一种最近描述的基于网络的工具)来检查基因表达与海马体体积的遗传相关性。我们鉴定出一些位于数量性状基因座区间内且具有高度相关表达模式的基因。利用WebQTL广泛的已发表BXD表型数据库,我们还检测到海马体体积与听觉惊吓反应之间存在强烈且可能具有生物学意义的相关性。

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