Insitut National de la Recherche Agronomique, Département Santé des Plantes et Environnement, UMR 1272 Physiologie de l'Insecte, Versailles, France.
Chem Senses. 2011 May;36(4):323-34. doi: 10.1093/chemse/bjq133. Epub 2010 Dec 20.
Drosophila melanogaster adapt their food consumption to their internal needs and avoid ingesting noxious molecules. Defects in the genes involved in these decisions induce behavioral alterations that are usually screened by monitoring flies feeding in 2-choice or in no-choice situations. Here, we introduce a new behavioral test in which groups of flies are given access to 6 capillary feeders (MultiCAFE) containing fructose mixed with a serial dilution of a test substance. Using quinine, we first showed that fly density, distance between capillaries, and order of presentation have a minor impact on the discrimination performances of the flies. Fly discrimination was also only marginally affected by the type of test (no-choice, binary, or multiple-choice). Interestingly, the feeding reduction was well correlated with a reduction of the firing elicited by the mixture in sugar-sensitive gustatory receptor neurons, suggesting that several mechanisms concur to allow flies to make their choices. In addition to quinine, flies exhibited marked dose-dependent aversions to the consumption of berberine, caffeine, lobeline, nicotine, papaverine, strychnine, and theophylline, which all taste bitter to humans. Thus, despite of the multiplicity of choices available, flies consistently avoid alkaloids mixed with a sugar solution, and their choices are strongly dependent on their taste system. The MultiCAFE assay represents an interesting alternative to other feeding tests, in that it allows monitoring of the absolute consumption while also requiring less flies and time to run than other assays.
果蝇会根据自身内部需求来调整食物摄入量,并避免摄入有害物质。这些决策相关基因的缺陷会导致行为改变,通常通过监测果蝇在 2 选或无选择情况下的进食行为来筛选。在这里,我们引入了一种新的行为测试方法,该方法允许一群果蝇接触到含有果糖的 6 个毛细管喂食器(MultiCAFE),同时还含有一系列稀释的测试物质。我们首先使用奎宁证明了,飞蝇密度、毛细管之间的距离和呈现顺序对飞蝇的辨别性能影响较小。飞蝇的辨别能力也仅受到测试类型(无选择、二进制或多选)的轻微影响。有趣的是,喂食量的减少与混合物在糖敏感味觉神经元中引发的放电减少密切相关,这表明有几种机制共同作用,使飞蝇能够做出选择。除了奎宁,飞蝇还对小檗碱、咖啡因、洛贝林、尼古丁、罂粟碱、士的宁和茶碱等物质的消耗表现出明显的剂量依赖性厌恶,这些物质对人类来说都有苦味。因此,尽管有多种选择可用,飞蝇仍然一致地避免将生物碱与糖溶液混合食用,它们的选择强烈依赖于它们的味觉系统。MultiCAFE 测定法是另一种喂食测试的有趣替代方法,因为它不仅允许监测绝对摄入量,而且比其他测定法需要更少的飞蝇和更少的时间来运行。