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Molecular and Sensory Basis of a Food Related Two-State Behavior in C. elegans

机译:秀丽隐杆线虫与食物相关的两种状态行为的分子和感觉基础

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摘要

Most animals display multiple behavioral states and control the time allocation to each of their activity phases depending on their environment. Here we develop a new quantitative method to analyze Caenorhabditis elegans behavioral states. We show that the dwelling and roaming two-state behavior of C. elegans is tightly controlled by the concentration of food in the environment of the animal. Sensory perception through the amphid neurons is necessary to extend roaming phases while internal metabolic perception of food nutritional value is needed to induce dwelling. Our analysis also shows that the proportion of time spent in each state is modulated by past nutritional experiences of the animal. This two-state behavior is regulated through serotonin as well as insulin and TGF-beta signaling pathways. We propose a model where food nutritional value is assessed through internal metabolic signaling. Biogenic amines signaling could allow the worm to adapt to fast changes in the environment when peptide transcriptional pathways may mediate slower adaptive changes.
机译:大多数动物会表现出多种行为状态,并根据其环境控制对每个活动阶段的时间分配。在这里,我们开发了一种新的定量方法来分析秀丽隐杆线虫的行为状态。我们表明,秀丽隐杆线虫的居住和漫游两种状态行为受到动物环境中食物浓度的严格控制。通过两栖神经元的感官知觉是延长漫游阶段所必需的,同时需要对食物营养价值的内部新陈代谢知觉以引起居住。我们的分析还表明,每种状态所花费的时间比例受动物过去的营养经验影响。这种两种状态的行为是通过血清素以及胰岛素和TGF-β信号通路来调节的。我们提出了一种通过内部代谢信号来评估食品营养价值的模型。当肽的转录途径可能介导较慢的适应性变化时,生物胺信号传导可能使蠕虫适应环境的快速变化。

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