Zhang Yu, Li Xin
Department of Cell and Developmental Biology, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Department of Cell and Developmental Biology, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA
Cold Spring Harb Protoc. 2024 Mar 1;2024(3):108156. doi: 10.1101/pdb.top108156.
The visual system has been a great model to study fundamental questions in neurobiology, such as neural fate specification, axon guidance, circuit formation, and information processing. The visual system is composed of the compound eye and the optic lobe. The optic lobe is divided into four neuropils-namely, the lamina, medulla, lobula, and lobula plate. There are around 200 types of optic lobe neurons, which wire together to form a complex neural structure to processes visual information. These neurons are derived from two neuroepithelial structures-namely, the outer proliferation center (OPC) and the inner proliferation center (IPC), in the larval brain. Recent work on the optic lobe has revealed basic principles underlying the development of this complex neural structure, and immunostaining has been a key tool in these studies. Here, we provide a brief overview of the optic lobe structure and development, as revealed by immunostaining. First, we introduce the structure of the adult optic lobe. Then, we summarize recent advances in the study of neural fate specification during development of different parts of the optic lobe. Last, we briefly summarize general aspects of axon guidance and neuropil assembly in the optic lobe. With this review, we aim to familiarize readers with this complex neural structure and highlight the power of this great model to study neural development to facilitate further developmental and functional studies using this system.
视觉系统一直是研究神经生物学基本问题的绝佳模型,例如神经命运特化、轴突导向、神经回路形成和信息处理等。视觉系统由复眼和视叶组成。视叶分为四个神经纤维网,即层、髓质、小叶和小叶板。视叶神经元约有200种类型,它们相互连接形成一个复杂的神经结构来处理视觉信息。这些神经元源自幼虫大脑中的两个神经上皮结构,即外增殖中心(OPC)和内增殖中心(IPC)。最近对视叶的研究揭示了这种复杂神经结构发育的基本原理,免疫染色一直是这些研究中的关键工具。在这里,我们简要概述通过免疫染色揭示的视叶结构和发育情况。首先,我们介绍成年视叶的结构。然后,我们总结视叶不同部分发育过程中神经命运特化研究的最新进展。最后,我们简要总结视叶中轴突导向和神经纤维网组装的一般情况。通过这篇综述,我们旨在使读者熟悉这种复杂的神经结构,并突出这个绝佳模型在研究神经发育方面的作用,以促进利用该系统进行进一步的发育和功能研究。