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成年果蝇腹神经索中枢神经元的发育组织。

Developmental organization of central neurons in the adult Drosophila ventral nervous system.

机构信息

School of Natural Sciences, Bangor University, Bangor, Gwynedd, UK.

School of Informatics, University of Edinburgh, Edinburgh, UK.

出版信息

J Comp Neurol. 2019 Oct 15;527(15):2573-2598. doi: 10.1002/cne.24690. Epub 2019 Apr 8.

Abstract

We have used MARCM to reveal the adult morphology of the post embryonically produced neurons in the thoracic neuromeres of the Drosophila VNS. The work builds on previous studies of the origins of the adult VNS neurons to describe the clonal organization of the adult VNS. We present data for 58 of 66 postembryonic thoracic lineages, excluding the motor neuron producing lineages (15 and 24) which have been described elsewhere. MARCM labels entire lineages but where both A and B hemilineages survive (e.g., lineages 19, 12, 13, 6, 1, 3, 8, and 11), the two hemilineages can be discriminated and we have described each hemilineage separately. Hemilineage morphology is described in relation to the known functional domains of the VNS neuropil and based on the anatomy we are able to assign broad functional roles for each hemilineage. The data show that in a thoracic hemineuromere, 16 hemilineages are primarily involved in controlling leg movements and walking, 9 are involved in the control of wing movements, and 10 interface between both leg and wing control. The data provide a baseline of understanding of the functional organization of the adult Drosophila VNS. By understanding the morphological organization of these neurons, we can begin to define and test the rules by which neuronal circuits are assembled during development and understand the functional logic and evolution of neuronal networks.

摘要

我们使用 MARCM 揭示了果蝇 VNS 胸神经节中胚胎后产生的神经元的成年形态。这项工作建立在先前对成年 VNS 神经元起源的研究基础上,旨在描述成年 VNS 的克隆组织。我们提供了 66 个胚胎后胸谱系中的 58 个数据,不包括已经在其他地方描述过的产生运动神经元的谱系(15 和 24)。MARCM 标记整个谱系,但当 A 和 B 半谱系都存活时(例如,谱系 19、12、13、6、1、3、8 和 11),可以区分这两个半谱系,并且我们已经分别描述了每个半谱系。半谱系形态与 VNS 神经丛的已知功能域有关,并基于解剖学,我们能够为每个半谱系分配广泛的功能角色。数据表明,在一个胸神经节中,16 个半谱系主要参与控制腿部运动和行走,9 个参与控制翅膀运动,10 个参与腿部和翅膀控制之间的接口。这些数据提供了对成年果蝇 VNS 功能组织的基本了解。通过了解这些神经元的形态组织,我们可以开始定义和测试神经元电路在发育过程中组装的规则,并理解神经元网络的功能逻辑和进化。

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