Goeritz Marie L, Bowers Matthew R, Slepian Brian, Marder Eve
Biology Department and Volen Center, Brandeis University, Waltham, Massachusetts, United States of America.
PLoS One. 2013 Dec 3;8(12):e79306. doi: 10.1371/journal.pone.0079306. eCollection 2013.
Sensory neurons provide important feedback to pattern-generating motor systems. In the crustacean stomatogastric nervous system (STNS), feedback from the anterior gastric receptor (AGR), a muscle receptor neuron, shapes the activity of motor circuits in the stomatogastric ganglion (STG) via polysynaptic pathways involving anterior ganglia. The AGR soma is located in the dorsal ventricular nerve posterior to the STG and it has been thought that its axon passes through the STG without making contacts. Using high-resolution confocal microscopy with dye-filled neurons, we show here that AGR from the crab Cancer borealis also has local projections within the STG and that these projections form candidate contact sites with STG motor neurons or with descending input fibers from other ganglia. We develop and exploit a new masking method that allows us to potentially separate presynaptic and postsynaptic staining of synaptic markers. The AGR processes in the STG show diversity in shape, number of branches and branching structure. The number of AGR projections in the STG ranges from one to three simple to multiply branched processes. The projections come in close contact with gastric motor neurons and descending neurons and may also be electrically coupled to other neurons of the STNS. Thus, in addition to well described long-loop pathways, it is possible that AGR is involved in integration and pattern regulation directly in the STG.
感觉神经元为模式生成运动系统提供重要反馈。在甲壳类动物的口胃神经系统(STNS)中,来自前胃受体(AGR,一种肌肉受体神经元)的反馈通过涉及前神经节的多突触通路塑造口胃神经节(STG)中运动回路的活动。AGR的胞体位于STG后方的背侧室神经中,一直以来人们认为其轴突穿过STG但不形成接触。通过对填充染料的神经元使用高分辨率共聚焦显微镜,我们在此表明,来自北方黄道蟹的AGR在STG内也有局部投射,并且这些投射与STG运动神经元或来自其他神经节的下行输入纤维形成候选接触位点。我们开发并运用了一种新的掩蔽方法,该方法使我们有可能分离突触标记物的突触前和突触后染色。STG中的AGR突起在形状、分支数量和分支结构上表现出多样性。STG中AGR投射的数量范围为一到三个简单到多次分支的突起。这些投射与胃运动神经元和下行神经元紧密接触,并且也可能与STNS的其他神经元形成电耦合。因此,除了已被充分描述的长环通路外,AGR也有可能直接参与STG中的整合和模式调节。