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详细分析果蝇神经系统中表达白细胞激肽的神经元及其候选功能。

Detailed analysis of leucokinin-expressing neurons and their candidate functions in the Drosophila nervous system.

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas, USA.

出版信息

Cell Tissue Res. 2010 Feb;339(2):321-36. doi: 10.1007/s00441-009-0890-y. Epub 2009 Nov 26.

Abstract

The distribution of leucokinin (LK) neurons in the central nervous system (CNS) of Drosophila melanogaster was described by immunolabelling many years ago. However, no detailed underlying information of the input or output connections of their neurites was then available. Here, we provide a more accurate morphological description by employing a novel LK-specific GAL4 line that recapitulates LK expression. In order to analyse the possible afferent and efferent neural candidates of LK neurons, we used this lk-GAL4 line together with other CNS-Gal4 lines, combined with antisera against various neuropeptides or neurotransmitters. We found four kinds of LK neurons in the brain. (1) The lateral horn neurons connect the antennal glomerula to the mushroom bodies. (2) The suboesophageal neurons connect the gustatory receptors to the suboesophageal ganglia and ventral nerve cord. (3) The anterior neurons innervate the corpus cardiacum of the ring gland but LK expression is surprisingly not detectable from the third instar onwards in these neurons. (4) A set of abdominal ganglion neurons connect to the dorsal median tract in larvae and send their axons to a segmental muscle 8. Thus, the methods employed in our study can be used to identify individual neuropeptidergic neurons and thereby characterize functional cues or developmental transformations in their differentiation.

摘要

多年前,通过免疫标记法描述了黑腹果蝇中枢神经系统(CNS)中白细胞激肽(LK)神经元的分布。然而,当时没有关于其神经突输入或输出连接的详细信息。在这里,我们使用一种新的、特异性的 LK-GAL4 线,对其进行重新表达,从而提供了更准确的形态描述。为了分析 LK 神经元可能的传入和传出神经候选物,我们使用了这种 lk-GAL4 线,结合其他 CNS-Gal4 线,以及针对各种神经肽或神经递质的抗血清。我们在脑中发现了四种 LK 神经元。(1)侧角神经元将触角小球与蘑菇体连接起来。(2)食管下神经元将味觉感受器与食管下神经节和腹神经索连接起来。(3)前神经元支配心冠,但令人惊讶的是,从第三龄幼虫开始,这些神经元中不再检测到 LK 表达。(4)一组腹神经节神经元在幼虫中连接到背正中束,并将其轴突发送到一个节段性肌肉 8。因此,我们研究中采用的方法可用于鉴定单个神经肽能神经元,从而描述其分化过程中的功能线索或发育变化。

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