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利用转基因技术可视化中缝特异性pet1表达,研究发育中和成年斑马鱼(Danio rerio)中缝5-羟色胺能神经元发出的轴突投射。

Axonal projections originating from raphe serotonergic neurons in the developing and adult zebrafish, Danio rerio, using transgenics to visualize raphe-specific pet1 expression.

作者信息

Lillesaar Christina, Stigloher Christian, Tannhäuser Birgit, Wullimann Mario F, Bally-Cuif Laure

机构信息

HelmholtzZentrum München, German Research Center for Environmental Health, Department of Zebrafish Neurogenetics, Institute of Developmental Genetics, D-85764 Neuherberg, Germany.

出版信息

J Comp Neurol. 2009 Jan 10;512(2):158-82. doi: 10.1002/cne.21887.

Abstract

Serotonin is a major central nervous modulator of physiology and behavior and plays fundamental roles during development and plasticity of the vertebrate central nervous system (CNS). Understanding the developmental control and functions of serotonergic neurons is therefore an important task. In all vertebrates, prominent serotonergic neurons are found in the superior and inferior raphe nuclei in the hindbrain innervating most CNS regions. In addition, all vertebrates except for mammals harbor other serotonergic centers, including several populations in the diencephalon. This, in combination with the intricate and wide distribution of serotonergic fibers, makes it difficult to sort out serotonergic innervation originating from the raphe from that of other serotonergic cell populations. To resolve this issue, we isolated the regulatory elements of the zebrafish raphe-specific gene pet1 and used them to drive expression of an eGFP transgene in the raphe population of serotonergic neurons. With this approach together with retrograde tracing we 1) describe in detail the development, anatomical organization, and projection pattern of zebrafish pet1-positive neurons compared with their mammalian counterparts, 2) identify a new serotonergic population in the ventrolateral zebrafish hindbrain, and 3) reveal some extent of functional subdivisions within the zebrafish superior raphe complex. Together, our results reveal for the first time the specific innervation pattern of the zebrafish raphe and, thus, provide a new model and various tools to investigate further the role of raphe serotonergic neurons in vertebrates.

摘要

血清素是生理和行为的主要中枢神经调节剂,在脊椎动物中枢神经系统(CNS)的发育和可塑性过程中发挥着重要作用。因此,了解血清素能神经元的发育控制和功能是一项重要任务。在所有脊椎动物中,在后脑的中缝上核和中缝下核中发现了突出的血清素能神经元,它们支配着大多数CNS区域。此外,除了哺乳动物外,所有脊椎动物都有其他血清素能中枢,包括间脑中的几个群体。这与血清素能纤维的复杂和广泛分布相结合,使得难以区分源自中缝的血清素能神经支配与其他血清素能细胞群体的神经支配。为了解决这个问题,我们分离了斑马鱼中缝特异性基因pet1的调控元件,并用它们来驱动血清素能神经元中缝群体中eGFP转基因的表达。通过这种方法以及逆行追踪,我们1)详细描述了斑马鱼pet1阳性神经元与其哺乳动物对应物相比的发育、解剖组织和投射模式,2)在斑马鱼后脑腹外侧鉴定出一个新的血清素能群体,3)揭示了斑马鱼中缝上核复合体内部一定程度的功能细分。总之,我们的结果首次揭示了斑马鱼中缝的特定神经支配模式,从而为进一步研究中缝血清素能神经元在脊椎动物中的作用提供了一个新模型和各种工具。

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