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果蝇视觉系统的单细胞转录组学:细胞身份调控、连接和神经元多样性进化的研究进展和展望。

Single-cell transcriptomics in the Drosophila visual system: Advances and perspectives on cell identity regulation, connectivity, and neuronal diversity evolution.

机构信息

Department of Biology, New York University, New York, NY, 10003, USA.

Department of Biology, New York University, New York, NY, 10003, USA; Institut Jacques Monod, Centre National de la Recherche Scientifique-UMR 7592, Université Paris Diderot, Paris, France.

出版信息

Dev Biol. 2021 Nov;479:107-122. doi: 10.1016/j.ydbio.2021.08.001. Epub 2021 Aug 8.

Abstract

The Drosophila visual system supports complex behaviors and shares many of its anatomical and molecular features with the vertebrate brain. Yet, it contains a much more manageable number of neurons and neuronal types. In addition to the extensive Drosophila genetic toolbox, this relative simplicity has allowed decades of work to yield a detailed account of its neuronal type diversity, morphology, connectivity and specification mechanisms. In the past three years, numerous studies have applied large scale single-cell transcriptomic approaches to the Drosophila visual system and have provided access to the complete gene expression profile of most neuronal types throughout development. This makes the fly visual system particularly well suited to perform detailed studies of the genetic mechanisms underlying the evolution and development of neuronal systems. Here, we highlight how these transcriptomic resources allow exploring long-standing biological questions under a new light. We first present the efforts made to characterize neuronal diversity in the Drosophila visual system and suggest ways to further improve this description. We then discuss current advances allowed by the single-cell datasets, and envisage how these datasets can be further leveraged to address fundamental questions regarding the regulation of neuronal identity, neuronal circuit development and the evolution of neuronal diversity.

摘要

果蝇的视觉系统支持复杂的行为,其解剖结构和分子特征与脊椎动物的大脑有许多相似之处。然而,它包含的神经元和神经元类型要少得多。除了广泛的果蝇遗传工具包外,这种相对简单性还使得数十年来的工作能够详细描述其神经元类型多样性、形态、连接和特化机制。在过去的三年中,许多研究已经将大规模单细胞转录组学方法应用于果蝇的视觉系统,并获得了整个发育过程中大多数神经元类型的完整基因表达谱。这使得果蝇的视觉系统特别适合对神经元系统进化和发育的遗传机制进行详细研究。在这里,我们强调了这些转录组资源如何使人们能够从新的角度来探索长期存在的生物学问题。我们首先介绍了在果蝇视觉系统中描述神经元多样性所做的努力,并提出了进一步改进这一描述的方法。然后,我们讨论了单细胞数据集所带来的当前进展,并设想了如何进一步利用这些数据集来解决关于神经元身份调控、神经元回路发育和神经元多样性进化的基本问题。

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