Context-dependent regulation of feeding behaviour by the insulin receptor, DAF-2, in Caenorhabditis elegans.

Q4 Neuroscience Invertebrate Neuroscience Pub Date : 2016-06-01 Epub Date: 2016-05-21 DOI:10.1007/s10158-016-0187-2
James Dillon, Lindy Holden-Dye, Vincent O'Connor, Neil A Hopper
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Abstract

Insulin signalling plays a significant role in both developmental programmes and pathways modulating the neuronal signalling that controls adult behaviour. Here, we have investigated insulin signalling in food-associated behaviour in adult C. elegans by scoring locomotion and feeding on and off bacteria, the worm's food. This analysis used mutants (daf-2, daf-18) of the insulin signalling pathway, and we provide evidence for an acute role for insulin signalling in the adult nervous system distinct from its impact on developmental programmes. Insulin receptor daf-2 mutants move slower than wild type both on and off food and showed impaired locomotory responses to food deprivation. This latter behaviour is manifest as a failure to instigate dispersal following prolonged food deprivation and suggests a role for insulin signalling in this adaptive response. Insulin receptor daf-2 mutants are also deficient in pharyngeal pumping on food and off food. Pharmacological analysis showed the pharynx of daf-2 is selectively compromised in its response to 5-HT compared to the excitatory neuropeptide FLP-17. By comparing the adaptive pharyngeal behaviour in intact worms and isolated pharyngeal preparations, we determined that an insulin-dependent signal extrinsic to the pharyngeal system is involved in feeding adaptation. Hence, we suggest that reactive insulin signalling modulates both locomotory foraging and pharyngeal pumping as the animal adapts to the absence of food. We discuss this in the context of insulin signalling directing a shift in the sensitivity of neurotransmitter systems to regulate the worm's response to changes in food availability in the environment.

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草履虫胰岛素受体 DAF-2 对摄食行为的情境依赖性调控
胰岛素信号在发育程序和控制成虫行为的神经元信号调节途径中都发挥着重要作用。在这里,我们通过对蠕虫的运动和在细菌(蠕虫的食物)上的进食和离体进食进行评分,研究了胰岛素信号在成虫与食物相关行为中的作用。这项分析使用了胰岛素信号通路的突变体(daf-2、daf-18),我们为胰岛素信号在成虫神经系统中的急性作用提供了证据,这种作用不同于其对发育程序的影响。胰岛素受体daf-2突变体在进食和不进食时都比野生型行动迟缓,并对食物剥夺表现出运动反应受损。后一种行为表现为长期缺乏食物后无法驱散,这表明胰岛素信号在这种适应性反应中的作用。胰岛素受体daf-2突变体在进食和不进食时也缺乏咽泵功能。药理分析表明,与兴奋性神经肽FLP-17相比,daf-2的咽部对5-羟色胺的反应受到了选择性损害。通过比较完整蠕虫和离体咽部制备物的咽部适应行为,我们确定咽部系统外的胰岛素依赖信号参与了摄食适应。因此,我们认为反应性胰岛素信号在动物适应缺乏食物时会调节运动性觅食和咽部泵动。我们将从胰岛素信号引导神经递质系统敏感性的转变来调节蠕虫对环境中食物供应变化的反应这一角度来讨论这一问题。
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Invertebrate Neuroscience
Invertebrate Neuroscience NEUROSCIENCES-
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>12 weeks
期刊介绍: Invertebrate Neurosciences publishes peer-reviewed original articles, reviews and technical reports describing recent advances in the field of invertebrate neuroscience. The journal reports on research that exploits the simplicity and experimental tractability of the invertebrate preparations to underpin fundamental advances in neuroscience. Articles published in Invertebrate Neurosciences serve to highlight properties of signalling in the invertebrate nervous system that may be exploited in the field of antiparisitics, molluscicides and insecticides. Aspects of particular interest include: Functional analysis of the invertebrate nervous system; Molecular neuropharmacology and toxicology; Neurogenetics and genomics; Functional anatomy; Neurodevelopment; Neuronal networks; Molecular and cellular mechanisms of behavior and behavioural plasticity.
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