首页> 外文期刊>PLoS Genetics >Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images
【24h】

Genetic variation affects morphological retinal phenotypes extracted from UK Biobank optical coherence tomography images

机译:遗传变异影响来自英国Biobank光学相干断层扫描图像中提取的形态视网膜表型

获取原文
           

摘要

Optical Coherence Tomography (OCT) enables non-invasive imaging of the retina and is used to diagnose and manage ophthalmic diseases including glaucoma. We present the first large-scale genome-wide association study of inner retinal morphology using phenotypes derived from OCT images of 31,434 UK Biobank participants. We identify 46 loci associated with thickness of the retinal nerve fibre layer or ganglion cell inner plexiform layer. Only one of these loci has been associated with glaucoma, and despite its clear role as a biomarker for the disease, Mendelian randomisation does not support inner retinal thickness being on the same genetic causal pathway as glaucoma. We extracted overall retinal thickness at the fovea, representative of foveal hypoplasia, with which three of the 46 SNPs were associated. We additionally associate these three loci with visual acuity. In contrast to the Mendelian causes of severe foveal hypoplasia, our results suggest a spectrum of foveal hypoplasia, in part genetically determined, with consequences on visual function. Author summary The thickness of the inner retinal layers is one of the biomarkers for glaucoma, the leading cause of irreversible blindness globally. Here we utilised the large-scale of the UK Biobank and the images of the retina it contains to look for genetic variants that effect the thickness of the inner retina. We find many variants associated with this variable, but surprisingly only one that also affects glaucoma. Further analysis shows that glaucoma and genetically determined inner retinal thickness are not on the same genetic pathway and it is rather the change of thickness over time that is indicative of the disease. This is important as it invites the potential for the discovered variants to be used as a representation of baseline thickness in the clinic in the future. We also show that foveal hypoplasia, the lack of the normal valley-like shape of the central retina, is present at a population level in a mild form and is affected by three variants that also affect visual acuity. This is an interesting discovery as foveal hypoplasia was previously thought of as an outcome of rare Mendelian disease.
机译:光学相干断层扫描(OCT)能够实现视网膜的非侵入性成像,用于诊断和管理包括青光眼的眼科疾病。我们介绍了源自OCT 21,434英国Biobank参与者的表型的内视网膜形态的第一种大规模基因组型关联研究。我们鉴定了与视网膜神经纤维层或神经节细胞内丛状层的厚度相关的46个基因座。这些基因座中只有一种与青光眼有关,尽管其作为疾病的生物标志物发挥作用,但孟德利安随机化不支持与青光眼相同的遗传因果途径的内视网膜厚度。我们在Fovea中提取了总体视网膜厚度,代表污水发育性,其中3个SNP中的三种是相关的。我们另外将这三个基因座与视敏度相关联。与孟德尔的严重变性发育性的原因相比,我们的结果表明,部分遗传确定的渗透性发育性的光谱,具有视觉功能的后果。作者概述内视网膜层的厚度是青光眼的生物标志物之一,全球不可逆失明的主要原因。在这里,我们利用了大规模的英国BioBank和视网膜的图像,以寻找影响内视网膜厚度的遗传变体。我们发现许多与此变量相关的变体,但令人惊讶地只有一个也影响青光眼。进一步的分析表明,青光眼和遗传确定的内视厚度不在相同的遗传途径上,并且它是厚度随时间的变化,表明疾病。这很重要,因为它邀请发现的变型的可能性在未来临床中用作基线厚度的表示。我们还表明,中央视网膜的缺乏正常谷形状的难度发育不全,以温和的形式存在于群体水平,并受三种变体的影响,这也影响视力。这是一种有趣的发现,因为心脏病发育不安者之前被认为是罕见的孟德尔疾病的结果。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号