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Retina Development in Vertebrates: Systems Biology Approaches to Understanding Genetic Programs On the Contribution of Next-Generation Sequencing Methods to the Characterization of the Regulatory Networks Controlling Vertebrate Eye Development

机译:脊椎动物的视网膜发育:系统生物学方法,以了解遗传计划对下一代测序方法贡献,以控制脊椎动物的监管网络的特征

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摘要

The ontogeny of the vertebrate retina has been a topic of interest to developmental biologists and human geneticists for many decades. Understanding the unfolding of the genetic program that transforms a field of progenitors cells into a functionally complex and multi-layered sensory organ is a formidable challenge. Although classical genetic studies succeeded in identifying the key regulators of retina specification, understanding the architecture of their gene network and predicting their behavior are still a distant hope. The emergence of next-generation sequencing platforms revolutionized the field unlocking the access to genome-wide datasets. Emerging techniques such as RNA-seq, ChIP-seq, ATAC-seq, or single cell RNA-seq are used to characterize eye developmental programs. These studies provide valuable information on the transcriptional and cis-regulatory profiles of precursors and differentiated cells, outlining the trajectories that connect each intermediate state. Here, recent systems biology efforts are reviewed to understand the genetic programs shaping the vertebrate retina.
机译:脊椎动物视网膜的组织发生了几十年的发育生物学家和人类遗传学家感兴趣的话题。了解将祖细胞的遗传程序的遗传程序的展开展开成为功能复杂和多层感觉器官的变化是一种突起的挑战。尽管古典遗传学研究成功地识别视网膜规范的关键调节因子,但了解他们基因网络的架构,并预测其行为仍然是一个遥远的希望。下一代测序平台的出现彻底改变了解锁对基因组数据集的访问。诸如RNA-SEQ,CHIP-SEQ,ATAC-SEQ或单细胞RNA-SEQ等新兴技术用于表征眼发育计划。这些研究提供了有关前体和分化细胞的转录和CIS调节谱的有价值信息,概述了连接每个中间状态的轨迹。这里,最近的系统生物学努力被审查以了解塑造脊椎动物视网膜的遗传程序。

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