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Generating and Using Transcriptomically Based Retinal Cell Atlases
Annual Review of Vision Science ( IF 6 ) Pub Date : 2021-09-15 , DOI: 10.1146/annurev-vision-032621-075200
Karthik Shekhar 1 , Joshua R Sanes 2
Affiliation  

It has been known for over a century that the basic organization of the retina is conserved across vertebrates. It has been equally clear that retinal cells can be classified into numerous types, but only recently have methods been devised to explore this diversity in unbiased, scalable, and comprehensive ways. Advances in high-throughput single-cell RNA sequencing (scRNA-seq) have played a pivotal role in this effort. In this article, we outline the experimental and computational components of scRNA-seq and review studies that have used them to generate retinal atlases of cell types in several vertebrate species. These atlases have enabled studies of retinal development, responses of retinal cells to injury, expression patterns of genes implicated in retinal disease, and the evolution of cell types. Recently, the inquiry has expanded to include the entire eye and visual centers in the brain. These studies have enhanced our understanding of retinal function and dysfunction and provided tools and insights for exploring neural diversity throughout the brain.

中文翻译:


生成和使用基于转录组的视网膜细胞图谱

一个多世纪以来,众所周知,视网膜的基本组织在脊椎动物中是保守的。同样清楚的是,视网膜细胞可以分为多种类型,但直到最近才设计出以公正、可扩展和全面的方式探索这种多样性的方法。高通量单细胞 RNA 测序 (scRNA-seq) 的进展在这项工作中发挥了关键作用。在本文中,我们概述了 scRNA-seq 的实验和计算组件,并回顾了使用它们在几种脊椎动物物种中生成细胞类型视网膜图谱的研究。这些图谱使研究视网膜发育、视网膜细胞对损伤的反应、与视网膜疾病有关的基因表达模式以及细胞类型的进化成为可能。最近,调查范围扩大到包括大脑中的整个眼睛和视觉中心。这些研究增强了我们对视网膜功能和功能障碍的理解,并为探索整个大脑的神经多样性提供了工具和见解。

更新日期:2021-09-17
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