Bioinformatics analysis of <i>Acdq15</i>.
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Anterior chamber depth (ACD) is a quantitative trait associated with primary angle closure glaucoma (PACG). Although ACD is highly heritable, known genetic variations explain a small fraction of the phenotypic variability. The purpose of this study was to identify additional ACD-influencing loci using strains of mice. Cohorts of 86 N2 and 111 F2 mice were generated from crosses between recombinant inbred BXD24/TyJ and wild-derived CAST/EiJ mice. Using anterior chamber optical coherence tomography, mice were phenotyped at 10–12 weeks of age, genotyped based on 93 genome-wide SNPs, and subjected to quantitative trait locus (QTL) analysis. In an analysis of ACD among all mice, six loci passed the significance threshold of p = 0.05 and persisted after multiple regression analysis. These were on chromosomes 6, 7, 11, 12, 15 and 17 (named Acdq6, Acdq7, Acdq11, Acdq12, Acdq15, and Acdq17, respectively). Our findings demonstrate a quantitative multi-genic pattern of ACD inheritance in mice and identify six previously unrecognized ACD-influencing loci. We have taken a unique approach to studying the anterior chamber depth phenotype by using mice as genetic tool to examine this continuously distributed trait.
前房深度(Anterior Chamber Depth,ACD)是与原发性闭角型青光眼(Primary Angle Closure Glaucoma,PACG)相关的数量性状。尽管ACD具有较高的遗传力,但目前已知的遗传变异仅能解释小部分表型变异。本研究旨在利用小鼠品系,鉴定额外的调控ACD的基因座。 研究团队通过重组近交系BXD24/TyJ与野生来源CAST/EiJ小鼠杂交,构建了包含86只N2代和111只F2代小鼠的队列。在小鼠10~12周龄时,采用前房光学相干断层扫描技术完成表型鉴定,基于93个全基因组单核苷酸多态性(Single Nucleotide Polymorphisms,SNPs)标记完成基因分型,并开展数量性状基因座(Quantitative Trait Locus,QTL)分析。 对所有小鼠的ACD进行分析后,共有6个基因座达到p=0.05的显著性阈值,且经多元回归分析后仍保持统计学显著性。这些基因座分别位于6、7、11、12、15和17号染色体,依次命名为Acdq6、Acdq7、Acdq11、Acdq12、Acdq15和Acdq17。 本研究结果揭示了小鼠ACD遗传的多基因数量性状模式,并鉴定出6个此前未被报道的ACD调控基因座。本研究采用了独特的研究策略,以小鼠作为遗传工具来探究这一连续分布性状。



