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Nutritional Value–Dependent and Nutritional Value–Independent Effects on Drosophila melanogaster Larval Behavior

机译:营养价值和营养价值对果蝇幼虫行为的影响

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摘要

Gustatory stimuli allow an organism not only to orient in its environment toward energy-rich food sources to maintain nutrition but also to avoid unpleasant or even poisonous substrates. For both mammals and insects, sugars—perceived as “sweet”—potentially predict nutritional benefit. Interestingly, even Drosophila adult flies are attracted to most high-potency sweeteners preferred by humans. However, the gustatory information of a sugar may be misleading as some sugars, although perceived as “sweet,” cannot be metabolized. Accordingly, in adult Drosophila, a postingestive system that additionally evaluates the nutritional benefit of an ingested sugar has been shown to exist. By using a set of seven different sugars, which either offer (fructose, sucrose, glucose, maltodextrin, and sorbitol) or lack (xylose and arabinose) nutritional benefit, we show that Drosophila, at the larval stage, can perceive and evaluate sugars based on both nutrition-dependent and -independent qualities. In detail, we find that larval survival and feeding mainly depend on the nutritional value of a particular sugar. In contrast, larval choice behavior and learning are regulated in a more complex way by nutrition value–dependent and nutrition value–independent information. The simplicity of the larval neuronal circuits and their accessibility to genetic manipulation may ultimately allow one to identify the neuronal and molecular basis of the larval sugar perception systems described here behaviorally.
机译:味觉刺激不仅使有机体能够在其环境中朝向能量丰富的食物来源以维持营养,而且还避免了令人不快甚至有毒的底物。对于哺乳动物和昆虫来说,被认为是“甜味”的糖都有可能预测营养益处。有趣的是,即使果蝇成年蝇也被人类偏爱的大多数高效甜味剂所吸引。但是,糖的味觉信息可能会产生误导,因为有些糖虽然被视为“甜味”,但无法代谢。因此,在成年果蝇中,已经显示了另外评估摄入糖的营养益处的postestive系统。通过使用七个提供(果糖,蔗糖,葡萄糖,麦芽糊精和山梨糖醇)或缺乏(木糖和阿拉伯糖)营养益处的七种糖,我们证明果蝇在幼虫阶段可以感知和评估基于糖的糖营养依赖和非依赖品质。详细地,我们发现幼虫的存活和喂养主要取决于特定糖的营养价值。相比之下,幼虫的选择行为和学习受到营养价值相关和营养价值独立信息的控制更为复杂。幼虫神经元回路的简单性及其对遗传操作的可及性最终可能使人们能够从行为上识别此处描述的幼虫糖感知系统的神经元和分子基础。

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