Displacement experiments provide evidence for path integration in Drosophila

Anna V. Titova, Benedikt E. Kau, Shir Tibor, Jana Mach, T. Vo-Doan, Matthias Wittlinger, A. Straw
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引用次数: 2

Abstract

Like many other animals, insects are capable of returning to previously visited locations using path integration. Recently, Drosophila has been added to the list of insects thought capable of this navigational memory. Existing experimental evidence, however, has a potential confound. Here we show that pheromones deposited at the site of reward might enable flies to find previously rewarding locations even without memory. Thus, we designed an experiment to determine if flies can use path integration memory despite potential pheromonal cues by displacing the flies shortly after an optogenetic reward. We found that rewarded flies returned to the location predicted by a memory-based model. Several analyses are consistent with path integration as the mechanism by which flies returned to the reward. We conclude that while pheromones may often be important in fly navigation and must be carefully controlled in future experiments, Drosophila may indeed be capable of performing path integration.
位移实验为果蝇的路径整合提供了证据
像许多其他动物一样,昆虫能够通过路径整合回到以前去过的地方。最近,果蝇被列入了被认为具有这种导航记忆的昆虫名单。然而,现有的实验证据存在潜在的混淆。在这里,我们表明,信息素沉积在奖励地点可能使苍蝇找到以前奖励的位置,即使没有记忆。因此,我们设计了一项实验,以确定果蝇是否可以利用路径整合记忆,尽管有潜在的信息素提示,通过在光遗传奖励后不久取代果蝇。我们发现,受到奖励的果蝇会回到基于记忆模型预测的位置。一些分析一致认为路径整合是果蝇返回奖励的机制。我们的结论是,虽然信息素在果蝇导航中可能经常很重要,在未来的实验中必须仔细控制,果蝇可能确实有能力进行路径整合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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