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精氨酸血管催产素受体在斑马鱼中枢神经系统发育过程中的表达

Expression of arginine vasotocin receptors in the developing zebrafish CNS.

作者信息

Iwasaki Kenichi, Taguchi Meari, Bonkowsky Joshua L, Kuwada John Y

机构信息

Neuroscience Graduate Program, University of Michigan, United States.

出版信息

Gene Expr Patterns. 2013 Dec;13(8):335-42. doi: 10.1016/j.gep.2013.06.005. Epub 2013 Jul 2.

Abstract

Vasotocin/vasopressin is a neuropeptide that regulates social and reproductive behaviors in a variety of animals including fish. Arginine vasotocin (AVT) is expressed by cells in the ventral hypothalamic and preoptic areas in the diencephalon during embryogenesis in zebrafish suggesting that vasotocin might mediate other functions within the CNS prior to the development of social and reproductive behaviors. In order to examine potential early roles for vasotocin we cloned two zebrafish vasotocin receptors homologous to AVPR1a. The receptors are expressed primarily in the CNS in similar but generally non-overlapping patterns. Both receptors are expressed in the forebrain, midbrain and hindbrain by larval stage. Of note, AVTR1a-expressing neurons in the hindbrain appear to be contacted by the axons of preoptic neurons in the forebrain that include avt+ neurons and sensory axons in the lateral longitudinal fasciculus (LLF). Furthermore, AVTR1a-expressing hindbrain neurons extend axons into the medial longitudinal fasciculus (MLF) that contains axons of many neurons thought to be involved in locomotor responses to sensory stimulation. One hypothesis consistent with this anatomy is that AVT signaling mediates or gates sensory input to motor circuits in the hindbrain and spinal cord.

摘要

血管紧张素/加压素是一种神经肽,可调节包括鱼类在内的多种动物的社会行为和生殖行为。在斑马鱼胚胎发育过程中,精氨酸血管紧张素(AVT)由间脑腹侧下丘脑和视前区的细胞表达,这表明血管紧张素可能在社会行为和生殖行为发展之前就在中枢神经系统中介导其他功能。为了研究血管紧张素的潜在早期作用,我们克隆了两个与AVPR1a同源的斑马鱼血管紧张素受体。这些受体主要在中枢神经系统中以相似但通常不重叠的模式表达。在幼体阶段,这两种受体在前脑、中脑和后脑均有表达。值得注意的是,后脑表达AVTR1a的神经元似乎与前脑视前神经元的轴突接触,这些轴突包括avt+神经元和外侧纵束(LLF)中的感觉轴突。此外,后脑表达AVTR1a的神经元将轴突延伸至内侧纵束(MLF),MLF包含许多被认为参与对感觉刺激的运动反应的神经元的轴突。与这种解剖结构一致的一种假设是,AVT信号传导介导或控制后脑和脊髓中运动回路的感觉输入。

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