Temperature Sensation and Its Behavioral Consequences

温度感觉及其行为后果

基本信息

  • 批准号:
    7360220
  • 负责人:
  • 金额:
    $ 20.74万
  • 依托单位:
  • 依托单位国家:
    美国
  • 项目类别:
  • 财政年份:
    2007
  • 资助国家:
    美国
  • 起止时间:
    2007-09-01 至 2009-06-30
  • 项目状态:
    已结题

项目摘要

DESCRIPTION (provided by applicant): Body temperature has profound influences on all aspects of animal biology. Mammals have the ability to control body temperature by adjusting their physiology (e.g. non-shivering thermogenesis, perspiration) and by behavioral measures (e.g. huddling, locating areas of more favorable temperatures or thermotaxis). This process is thought to involve an internal set point and complex feedback loops that rely on thermoreceptor neurons in the skin and in the hypothalamus. Our understanding of the connections between such thermoreceptor neurons and motor centers is incomplete at best. Even less is known about the mechanisms of sensorimotor integration responsible for behavioral thermoregulation and its modification during short-term and long-term acclimation. In the nematode C. elegans, by contrast, a single pair of thermoreceptor neurons is linked to changes in behavioral responses to thermal gradients (thermotaxis). Their connections with interneurons and, ultimately, with motor neurons are known. Thus, in C. elegans, it is possible to understand how thermoreceptor neuron signaling affects behavior at a level of detail that is not possible in mammals. In this exploratory proposal, we seek to expand understanding of the link between temperature sensation and behavior by investigating the mechanism by which mutations can disrupt this link and by developing new tools for altering neuronal function. We focus on a mutant isolated in our laboratory that exhibits an intriguing defect in sensorimotor integration. We seek to extend this work by screening for genes responsible for the development and/or function of neurons that link thermosensation to motor output and to develop new tools for analyzing behavioral responses to neuron activation. The general strategy is to combine classical genetics with quantitative behavioral analysis and in vivo whole-cell patch-clamp recording in order to elucidate the relationship between temperature sensation and its behavioral consequences. The long-term objective of the proposed is to establish C. elegans as a new model for the study of behavioral thermoregulation and sensorimotor integration. The relevance of this project to human health lies in its potential to uncover universal motifs in sensorimotor integration and to provide insight into thermal dysregulation. All animals, including humans, have the ability to regulate their body temperature by moving to favorable areas in the environment. This ability relies on nerve cells that sense temperature and communicate with the nervous system to produce the needed movements. This complex process is only poorly understood. To improve understanding, we will study a simple roundworm that has only 302 neurons. Two of these neurons sense temperature and appear to aid a form of thermoregulation. What is learned from this study will clarify basic mechanisms of temperature sensation as well as learning and could improve understanding of thermoregulation and its dysfunction in disease and in response to recreational drugs such as ecstasy.
描述(由申请人提供):体温对动物生物学的各个方面都有深远的影响。哺乳动物有能力通过调节其生理机能(例如,非颤抖性产热、出汗)和行为措施(例如,蜷缩、定位温度更有利的区域或趋热性)来控制体温。这个过程被认为涉及一个内部设定点和复杂的反馈回路,依赖于皮肤和下丘脑中的温度感受器神经元。我们对这种温度感受神经元和运动中枢之间的联系的理解充其量也是不完整的。甚至更少的是知道的感觉运动整合的机制,负责行为的温度调节和它的修改在短期和长期的适应。线虫C.与此相反,一对温度感受器神经元与对温度梯度的行为反应(趋热性)的变化有关。它们与中间神经元的联系,最终与运动神经元的联系是已知的。因此,在C. elegans,有可能在哺乳动物中不可能的细节水平上理解温度感受器神经元信号传导如何影响行为。在这个探索性的建议中,我们试图通过研究突变可以破坏这种联系的机制,并通过开发改变神经元功能的新工具,来扩大对温度感觉和行为之间联系的理解。我们专注于在我们的实验室中分离的突变体,表现出一个有趣的缺陷,感觉运动整合。我们试图通过筛选负责神经元发育和/或功能的基因来扩展这项工作,这些神经元将温度感觉与运动输出联系起来,并开发新的工具来分析神经元激活的行为反应。一般的策略是将联合收割机经典遗传学与定量行为分析和在体全细胞膜片钳记录相结合,以阐明温度感觉及其行为后果之间的关系。提出的长远目标是建立C。elegans作为行为体温调节和感觉运动整合研究的新模型。该项目与人类健康的相关性在于它有可能揭示感觉运动整合中的普遍基序,并提供对热失调的深入了解。 包括人类在内的所有动物都有能力通过移动到环境中有利的区域来调节体温。这种能力依赖于感觉温度并与神经系统沟通以产生所需运动的神经细胞。这个复杂的过程只是知之甚少。为了提高理解,我们将研究一个只有302个神经元的简单蛔虫。其中两个神经元感知温度,似乎有助于某种形式的体温调节。从这项研究中学到的东西将阐明温度感觉和学习的基本机制,并可以提高对疾病中的体温调节及其功能障碍的理解,以及对摇头丸等娱乐性药物的反应。

项目成果

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Miriam B Goodman其他文献

Miriam B Goodman的其他文献

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{{ truncateString('Miriam B Goodman', 18)}}的其他基金

The biophysics of skin-neuron sensory tactile organs and their sensitivity to mechanical and chemical stress
皮肤神经元感觉触觉器官的生物物理学及其对机械和化学应力的敏感性
  • 批准号:
    10176122
  • 财政年份:
    2020
  • 资助金额:
    $ 20.74万
  • 项目类别:
The biophysics of skin-neuron sensory tactile organs and their sensitivity to mechanical and chemical stress
皮肤神经元感觉触觉器官的生物物理学及其对机械和化学应力的敏感性
  • 批准号:
    10320377
  • 财政年份:
    2017
  • 资助金额:
    $ 20.74万
  • 项目类别:
The biophysics of skin-neuron sensory tactile organs and their sensitivity to mechanical and chemical stress
皮肤神经元感觉触觉器官的生物物理学及其对机械和化学应力的敏感性
  • 批准号:
    10633441
  • 财政年份:
    2017
  • 资助金额:
    $ 20.74万
  • 项目类别:
The biophysics of skin-neuron sensory tactile organs and their sensitivity to mechanical and chemical stress
皮肤神经元感觉触觉器官的生物物理学及其对机械和化学应力的敏感性
  • 批准号:
    10063587
  • 财政年份:
    2017
  • 资助金额:
    $ 20.74万
  • 项目类别:
The biophysics of skin-neuron sensory tactile organs and their sensitivity to mechanical and chemical stress
皮肤神经元感觉触觉器官的生物物理学及其对机械和化学应力的敏感性
  • 批准号:
    10534243
  • 财政年份:
    2017
  • 资助金额:
    $ 20.74万
  • 项目类别:
Genetic and Physical Basis of Mechanical Neuroprotection
机械神经保护的遗传和物理基础
  • 批准号:
    9005894
  • 财政年份:
    2015
  • 资助金额:
    $ 20.74万
  • 项目类别:
Genetic and Physical Basis of Mechanical Neuroprotection
机械神经保护的遗传和物理基础
  • 批准号:
    8858468
  • 财政年份:
    2015
  • 资助金额:
    $ 20.74万
  • 项目类别:
Sensory Transduction
感觉传导
  • 批准号:
    8719730
  • 财政年份:
    2014
  • 资助金额:
    $ 20.74万
  • 项目类别:
Temperature Sensation and Its Behavioral Consequences
温度感觉及其行为后果
  • 批准号:
    7491448
  • 财政年份:
    2007
  • 资助金额:
    $ 20.74万
  • 项目类别:
Force Clamp Systems for Evaluation of Mechanotransduction
用于评估机械传导的力夹系统
  • 批准号:
    8244400
  • 财政年份:
    2007
  • 资助金额:
    $ 20.74万
  • 项目类别:

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