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Distinct Neural Circuits Control Rhythm Inhibition and Spitting by the Myogenic Pharynx of C. elegans

机译:不同的神经回路控制线虫的成肌咽部抑制节律和吐痰

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摘要

Neural circuits have long been known to modulate myogenic muscles such as the heart, yet a mechanistic understanding at the cellular and molecular levels remains limited. We studied how light inhibits pumping of the Caenorhabditis elegans pharynx, a myogenic muscular pump for feeding, and found three neural circuits that alter pumping. First, light inhibits pumping via the 12 neuron monosynaptic circuit. Our electron microscopic reconstruction of the anterior pharynx revealed evidence for synapses from 12 onto muscle that were missing from the published connectome, and we show that these "missed synapses" are likely functional. Second, light inhibits pumping through the RIP-I1-MC neuron polysynaptic circuit, in which an inhibitory signal is likely transmitted from outside the pharynx into the pharynx in a manner analogous to how the mammalian autonomic nervous system controls the heart. Third, light causes a novel pharyngeal behavior, reversal of flow or "spitting," which is induced by the M-1 neuron. These three neural circuits show that neurons can control a myogenic muscle organ not only by changing the contraction rate but also by altering the functional consequences of the contraction itself, transforming swallowing into spitting. Our observations also illustrate why connectome builders and users should be cognizant that functional synaptic connections might exist despite the absence of a declared synapse in the connectome.
机译:早已知道神经回路可调节诸如心脏的肌源性肌肉,但是在细胞和分子水平上的机械理解仍然有限。我们研究了光如何抑制秀丽隐杆线虫咽部的泵吸,这是一种用于喂养的肌源性肌肉泵,并发现了三个改变泵浦的神经回路。首先,光抑制了通过12个神经元单突触回路的泵浦。我们对前咽的电子显微镜重建揭示了已发表的连接组中缺少从12到肌肉的突触的证据,并且我们表明这些“缺失的突触”可能具有功能。第二,光抑制泵送通过RIP-11-MC神经元多突触回路,其中抑制信号很可能以类似于哺乳动物自主神经系统控制心脏的方式从咽外传递到咽部。第三,光引起新的咽部行为,即由M-1神经元诱导的逆流或“吐痰”。这三个神经回路表明,神经元不仅可以通过改变收缩率,而且可以通过改变收缩本身的功能后果,将吞咽转变为吐痰来控制肌原性肌肉器官。我们的观察结果也说明了为什么连接套构建者和用户应该认识到,尽管连接套中没有声明的突触,功能性突触连接仍可能存在。

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