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斑马鱼视神经融合的转录组分析。

Transcriptome profiling of zebrafish optic fissure fusion.

机构信息

Development, Ageing and Disease, UCL Institute of Ophthalmology, London, UK.

Department of Genetics, Moorfields Eye Hospital NHS Foundation Trust, London, UK.

出版信息

Sci Rep. 2019 Feb 7;9(1):1541. doi: 10.1038/s41598-018-38379-5.

Abstract

Incomplete fusion of the optic fissure leads to ocular coloboma, a congenital eye defect that affects up to 7.5 per 10,000 births and accounts for up to 10 percent of childhood blindness. The molecular and cellular mechanisms that facilitate optic fissure fusion remain elusive. We have profiled global gene expression during optic fissure morphogenesis by transcriptome analysis of tissue dissected from the margins of the zebrafish optic fissure and the opposing dorsal retina before (32 hours post fertilisation, hpf), during (48 hpf) and after (56 hpf) optic fissure fusion. Differential expression analysis between optic fissure and dorsal retinal tissue resulted in the detection of several known and novel developmental genes. The expression of selected genes was validated by qRT-PCR analysis and localisation investigated using in situ hybridisation. We discuss significantly overrepresented functional ontology categories in the context of optic fissure morphogenesis and highlight interesting transcripts from hierarchical clustering for subsequent analysis. We have identified netrin1a (ntn1a) as highly differentially expressed across optic fissure fusion, with a resultant ocular coloboma phenotype following morpholino antisense translation-blocking knockdown and downstream disruption of atoh7 expression. To support the identification of candidate genes in human studies, we have generated an online open-access resource for fast and simple quantitative querying of the gene expression data. Our study represents the first comprehensive analysis of the zebrafish optic fissure transcriptome and provides a valuable resource to facilitate our understanding of the complex aetiology of ocular coloboma.

摘要

视裂未完全融合会导致眼部裂缺损,这是一种先天性眼部缺陷,每 10000 例出生中就有 7.5 例,占儿童失明的 10%。促进视裂融合的分子和细胞机制仍然难以捉摸。我们通过对斑马鱼视裂边缘和对侧背侧视网膜组织进行转录组分析,对视裂形态发生过程中的全局基因表达进行了分析。在视裂融合之前(受精后 32 小时,hpf)、期间(48 hpf)和之后(56 hpf),从组织中分离出来。在视裂和背侧视网膜组织之间的差异表达分析导致了几个已知和新的发育基因的检测。通过 qRT-PCR 分析验证了选定基因的表达,并通过原位杂交研究了其定位。我们讨论了在视裂形态发生过程中功能本体类别显著过表达的情况,并强调了层次聚类中有趣的转录本,以便进一步分析。我们已经确定了 netrin1a(ntn1a)在整个视裂融合过程中表达差异很大,在形态发生后,眼部裂缺损表型出现,同时下游的 atoh7 表达也受到干扰。为了支持在人类研究中识别候选基因,我们生成了一个在线开放资源,用于快速简单地查询基因表达数据。我们的研究代表了对斑马鱼视裂转录组的首次全面分析,并提供了有价值的资源,以促进我们对眼部裂缺损复杂病因的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073c/6367446/981f36c879de/41598_2018_38379_Fig1_HTML.jpg

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