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CAREER: Mechanistic dissection of sleep and behavioral arousal: A model system approach to interdisciplinarity in neuroscience research and education

CAREER: Mechanistic dissection of sleep and behavioral arousal: A model system approach to interdisciplinarity in neuroscience research and education
职业:睡眠和行为唤醒的机制剖析:神经科学研究和教育跨学科的模型系统方法
批准号:
2042873
负责人:
Divya Sitaraman
金额:
$75.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2021
资助国家:
美国
项目状态:
未结题
起止时间:
2021-10-01 至 2026-09-30

项目摘要

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中文摘要
翻译
睡眠和清醒是高度保守的基本行为状态。调节这些状态以响应环境条件和体内平衡需求的能力对生存至关重要。目标导向的动机行为,如交配、进食和攻击,本质上依赖于强烈的行为唤醒。尽管如此,人们对区分和协调动机过程与睡眠-觉醒调节的神经元机制知之甚少。在这里,研究人员通过研究睡眠和社会行为(如求爱)的行为协调,利用果蝇的实验可追溯性,确定了唤醒状态是如何在大脑行为中编码和整合的。关注生物体中具有可测量行为输出的小电路,以适应遗传操作和神经生理学记录,为初中,高中,本科生和研究生提供了跨学科研究的资源和专业知识。该项目的研究和教育项目协同作用,通过研究参与、职业指导、技能培训、跨学科思维和包容性教学实践,支持女性、少数民族和第一代大学生整合跨学科的技能和概念。在任何生物体中,睡眠和行为唤醒协调的电路机制尚不清楚。这个项目的重点是定义果蝇大脑中编码睡眠和觉醒的电路机制,以及它们如何影响与求爱和攻击等动机性社会行为相关的唤醒状态。研究小组已经确定了整合神经元,它们编码求爱的动机,也调节清醒和觉醒。该项目研究了这些积分神经元启动和维持唤醒的机制,以共同调节睡眠表达和动机行为。研究人员通过开发新的行为分析、针对单个细胞类型的工具和记录这种共同调节被破坏的网络活动,将果蝇建立为睡眠和行为唤醒共同调节的电路分析的有利模型。在Aims 1和2中,研究绘制了积分子P1网络与时钟网络、蘑菇体和中枢复合体的睡眠调节神经元之间的兴奋性和抑制性突触相互作用,这是睡眠和社会行为双向控制的基础。在Aim 3中,测量了具有不稳定睡眠或社会唤醒状态的已识别微电路动物的自发神经活动。这个项目将建立基因、电路和行为之间的联系,以理解内部状态依赖的决策和行动选择。该项目还让初高中、本科生和研究生参与跨学科研究。其中一个重点是支持女性、少数族裔和第一代大学生通过研究参与、职业指导、技能培训、跨学科思维和包容性教学实践来整合跨学科的技能和概念。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Sleep and wakefulness are highly conserved and fundamental behavioral states. The ability to regulate these states in response to environmental conditions and homeostatic needs is critical for survival. Goal-directed motivated behaviors like mating, feeding and aggression are essentially dependent on strong behavioral arousal. Nonetheless, little is known about the neuronal mechanisms that compartmentalize and coordinate motivational processes with sleep-wake regulation. Here, the investigators determine how arousal states are encoded and integrated across behaviors in the brain by studying the behavioral coordination of sleep and social behaviors like courtship using the experimental tractability of the fruit fly Drosophila. The focus on small circuits with measurable behavioral outputs in organisms amenable to genetic manipulations and neurophysiological recordings generates resources and expertise that exposes middle-school, high-school, undergraduate and graduate students to interdisciplinary research. The research and educational programs in this project act synergistically to support female, minority, and first-generation college students to integrate skills and concepts across disciplines through research engagement, career mentoring, skills-training, interdisciplinary thinking, and inclusive teaching practices.Circuit mechanisms underlying the coordination of sleep and behavioral arousal are not understood in any organism. The focus of this project is to define the circuit mechanisms by which sleep and wake are encoded in the fly brain and how they causally influence arousal states associated with motivated social behaviors like courtship and aggression. The research team has identified integrator neurons that encode motivation to court and also mediate wakefulness and arousal. This project investigates the mechanisms by which these integrator neurons initiate and maintain arousal to co-regulate sleep expression with motivated behaviors. The investigators have established Drosophila as an advantageous model for circuit analysis of co-regulation of sleep and behavioral arousal by developing novel behavioral assays, tools to target individual cell-types and record network activity where this co-regulation has been destabilized. In Aims 1 and 2, studies map excitatory and inhibitory synaptic interactions between integrator P1 network and sleep-regulating neurons of clock network, Mushroom Body and Central Complex that underlies the bidirectional control of sleep and social behaviors. In Aim 3, measurements are made of the spontaneous neural activity of identified microcircuits animals with destabilized sleep- or social-arousal states. This project will establish connections between genes, circuits, and behavior in understanding internal state dependent decision making and action-selection. The project also exposes middle-school, high-school, undergraduate and graduate students to interdisciplinary research. A key focus is supporting female, minority, and first-generation college students to integrate skills and concepts across disciplines through research engagement, career mentoring, skills-training, interdisciplinary thinking, and inclusive teaching practices.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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