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多代小鼠高级互交系中等位基因间的传递扭曲和遗传不兼容性。

Transmission distortion and genetic incompatibilities between alleles in a multigenerational mouse advanced intercross line.

机构信息

Breeding Biology and Molecular Genetics, Albrecht Daniel Thaer Institute for Agricultural and Horticultural Sciences, Humboldt University Berlin, Berlin D-10115, Germany.

出版信息

Genetics. 2022 Jan 4;220(1). doi: 10.1093/genetics/iyab192.

Abstract

While direct additive and dominance effects on complex traits have been mapped repeatedly, additional genetic factors contributing to the heterogeneity of complex traits have been scarcely investigated. To assess genetic background effects, we investigated transmission ratio distortions (TRDs) of alleles from parent to offspring using an advanced intercross line (AIL) of an initial cross between the mouse inbred strains C57BL/6NCrl (B6N) and BFMI860-12 [Berlin Fat Mouse Inbred (BFMI)]. A total of 341 males of generation 28 and their respective 61 parents and 66 grandparents were genotyped using Mega Mouse Universal Genotyping Arrays. TRDs were investigated using allele transmission asymmetry tests, and pathway overrepresentation analysis was performed. Sequencing data were used to test for overrepresentation of nonsynonymous SNPs (nsSNPs) in TRD regions. Genetic incompatibilities were tested using the Bateson-Dobzhansky-Muller two-locus model. A total of 62 TRD regions were detected, many in close proximity to the telocentric centromere. TRD regions contained 44.5% more nsSNPs than randomly selected regions (182 vs 125.9 ± 17.0, P < 1 × 10-4). Testing for genetic incompatibilities between TRD regions identified 29 genome-wide significant incompatibilities between TRD regions [P(BF) < 0.05]. Pathway overrepresentation analysis of genes in TRD regions showed that DNA methylation, epigenetic regulation of RNA, and meiotic/meiosis regulation pathways were affected independent of the parental origin of the TRD. Paternal BFMI TRD regions showed overrepresentation in the small interfering RNA biogenesis and in the metabolism of lipids and lipoproteins. Maternal B6N TRD regions harbored genes involved in meiotic recombination, cell death, and apoptosis pathways. The analysis of genes in TRD regions suggests the potential distortion of protein-protein interactions influencing obesity and diabetic retinopathy as a result of disadvantageous combinations of allelic variants in Aass, Pgx6, and Nme8. Using an AIL significantly improves the resolution at which we can investigate TRD. Our analysis implicates distortion of protein-protein interactions as well as meiotic drive as the underlying mechanisms leading to the observed TRD in our AIL. Furthermore, genes with large amounts of nsSNPs located in TRD regions are more likely to be involved in pathways that are related to the phenotypic differences between the parental strains. Genes in these TRD regions provide new targets for investigating genetic adaptation, protein-protein interactions, and determinants of complex traits such as obesity.

摘要

虽然已经多次映射出对复杂性状的直接加性和显性效应,但对导致复杂性状异质性的其他遗传因素的研究却很少。为了评估遗传背景效应,我们使用初始杂交 B6N 和 BFMI860-12 之间的近交系(柏林胖鼠近交系(BFMI))的先进互交系(AIL),研究了从亲代到子代的等位基因的传递比失真(TRD)。使用 Mega Mouse Universal Genotyping Arrays 对第 28 代的 341 只雄性及其各自的 61 只亲代和 66 只祖代进行了基因分型。通过等位基因传递不对称性测试研究了 TRD,并进行了途径过表达分析。使用测序数据测试 TRD 区域中非同义 SNP(nsSNP)的过表达。使用 Bateson-Dobzhansky-Muller 双位点模型测试遗传不兼容性。总共检测到 62 个 TRD 区域,许多位于着丝粒中心体附近。TRD 区域包含的 nsSNP 比随机选择的区域多 44.5%(182 比 125.9±17.0,P<1×10-4)。TRD 区域之间遗传不兼容性的测试确定了 TRD 区域之间 29 个全基因组显著不兼容性[P(BF)<0.05]。TRD 区域中基因的途径过表达分析表明,DNA 甲基化、RNA 的表观遗传调控以及减数分裂/减数分裂调控途径受到 TRD 亲代起源的影响。父本 BFMI TRD 区域在小干扰 RNA 生物发生和脂质和脂蛋白代谢途径中表现出过表达。母本 B6N TRD 区域包含涉及减数分裂重组、细胞死亡和细胞凋亡途径的基因。TRD 区域中基因的分析表明,由于 Aass、Pgx6 和 Nme8 等位基因变异的不利组合,可能会导致蛋白质-蛋白质相互作用的扭曲,从而影响肥胖和糖尿病性视网膜病变。使用 AIL 可显著提高我们调查 TRD 的分辨率。我们的分析表明,蛋白质-蛋白质相互作用的扭曲以及减数分裂驱动是导致我们的 AIL 中观察到的 TRD 的潜在机制。此外,位于 TRD 区域且具有大量 nsSNP 的基因更有可能参与与亲本菌株之间表型差异相关的途径。这些 TRD 区域中的基因提供了新的目标,用于研究遗传适应、蛋白质-蛋白质相互作用以及肥胖等复杂性状的决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d881/8733443/523a55500840/iyab192f1.jpg

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