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Functional characterization and theoretical modeling of the Caenorhabditis elegans egg-laying circuit.

机译:秀丽隐杆线虫产卵回路的功能表征和理论建模。

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摘要

The nervous system grants animals the ability to react to the complex and ever-changing environment. The ability of the nervous system to control behavior relies not only on the functional properties of individual neurons, but also on the specific pattern of connections in the neural circuits that make up the brain. This dissertation presents the functional study of a simple circuit, specifically the egg-laying circuit in the nematode Caenorhabditis elegan, as a model to understand the principles by which networks of neurons generate behavioral patterns.;We first studied the circuit mechanism for individual egg-laying events using neural imaging and laser microsurgery. Our results indicated that the HSN and VC motorneurons together with vulval muscles (vm1 and vm2) comprise a core circuit that produces egg-laying events upon activation in the absence of sensory inputs. HSN serves as the command neuron of this core circuit, while the VCs, which are reciprocally connected to HSNs, provide a negative feedback loop as well as redundantly exciting the vulval muscles. The roles of two neurotransmitters expressed in these motorneurons, acetycholine and serotonin, have been investigated by directly monitoring both the activities of neurons in the egg-laying circuit in biosynthetic mutants.;With this information about the functional roles of the egg-laying neurons, the egg-laying circuit provides a nice system for studying the effects of specific receptors and channels on neuronal function. As an example, we characterized a newly cloned novel voltage gated cation channel, NCA-1, and demonstrated its function in cellbody-to-synapse excitation in the HSNs.;Based on our results, we have proposed a theoretical model for how the clustered temporal pattern in the egg-laying behavior is generated in wild type animals. The VCs are suggested to work as "the single egg counter" that is activated by individual egg-laying events and inhibits the command neuron HSN for a short period of about 20 seconds. The uv1 cell may serve as "the cluster egg counter", activated by a cluster of closely spaced egg-laying events and inhibiting HSN activity for a longer time of about 20 minutes. Together, these two pathways could produce the observed clustered temporal pattern by acting as negative regulators acting on different time scales.
机译:神经系统使动物能够对复杂且不断变化的环境做出反应。神经系统控制行为的能力不仅取决于单个神经元的功能特性,还取决于构成大脑的神经回路中连接的特定模式。本文提出了一个简单电路的功能研究,特别是线虫秀丽隐杆线虫的产卵电路,作为理解神经元网络产生行为模式的原理的模型。使用神经成像和激光显微外科手术进行活动。我们的结果表明,HSN和VC运动神经元以及外阴肌肉(vm1和vm2)组成了一个核心电路,该核心电路在没有感觉输入的情况下被激活后会产生产卵事件。 HSN充当此核心电路的命令神经元,而与HSN相互连接的VC提供负反馈回路以及多余地刺激外阴肌肉。通过直接监测生物合成突变体产卵回路中神经元的活动,已经研究了在这些运动神经元中表达的两种神经递质的作用,即乙酰胆碱和5-羟色胺。产卵回路为研究特定受体和通道对神经元功能的影响提供了一个很好的系统。例如,我们表征了一个新克隆的新型电压门控阳离子通道NCA-1,并证明了其在HSNs中从细胞突触激发的功能。基于我们的研究结果,我们提出了一个如何聚类的理论模型产卵行为的时间模式是在野生型动物中产生的。建议VC充当“单个鸡蛋计数器”,该计数器由单个产蛋事件激活,并在大约20秒的短时间内抑制命令神经元HSN。 uv1细胞可以充当“簇状卵计数器”,由一簇紧密间隔的产卵事件激活,并在大约20分钟的较长时间内抑制HSN活性。这两个途径共同作用于不同的时间尺度,可以充当负调节剂,从而产生观察到的聚集时间模式。

著录项

  • 作者

    Zhang, Mi.;

  • 作者单位

    University of California, San Diego and San Diego State University.;

  • 授予单位 University of California, San Diego and San Diego State University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人口学 ;
  • 关键词

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