Siju K P, Bräcker Lasse B, Grunwald Kadow I C
a Sensory Neurogenetics Group; Max-Planck Institute of Neurobiology; Martinsried, Germany.
Fly (Austin). 2014;8(2):68-74. doi: 10.4161/fly.28000.
The fruit fly, Drosophila melanogaster, innately avoids even low levels of CO2. CO2 is part of the so-called Drosophila stress odor produced by stressed flies, but also a byproduct of fermenting fruit, a main food source, making the strong avoidance behavior somewhat surprising. Therefore, we addressed whether feeding states might influence the fly's behavior and processing of CO2. In a recent report, we showed that this innate behavior is differentially processed and modified according to the feeding state of the fly. Interestingly, we found that hungry flies require the function of the mushroom body, a higher brain center required for olfactory learning and memory, but thought to be dispensable for innate olfactory behaviors. In addition, we anatomically and functionally characterized a novel bilateral projection neuron connecting the CO2 sensory input to the mushroom body. This neuron was essential for processing of CO2 in the starved fly but not in the fed fly. In this Extra View article, we provide evidence for the potential involvement of the neuromodulator dopamine in state-dependent CO2 avoidance behavior. Taken together, our work demonstrates that CO2 avoidance behavior is mediated by alternative neural pathways in a context-dependent manner. Furthermore, it shows that the mushroom body is not only involved in processing of learned olfactory behavior, as previously suggested, but also in context-dependent innate olfaction.
果蝇,即黑腹果蝇,天生会避开即使是低浓度的二氧化碳。二氧化碳是受压果蝇产生的所谓果蝇应激气味的一部分,但也是主要食物来源——发酵水果的副产品,这使得果蝇强烈的回避行为有些令人惊讶。因此,我们探讨了进食状态是否会影响果蝇对二氧化碳的行为和处理。在最近的一份报告中,我们表明这种先天行为会根据果蝇的进食状态进行不同的处理和调节。有趣的是,我们发现饥饿的果蝇需要蕈形体发挥功能,蕈形体是嗅觉学习和记忆所需的高级脑中枢,但人们认为它对于先天嗅觉行为是可有可无的。此外,我们从解剖学和功能上对一种将二氧化碳感觉输入与蕈形体相连的新型双侧投射神经元进行了表征。这种神经元对于饥饿果蝇处理二氧化碳至关重要,但对饱腹果蝇则不然。在这篇“额外观点”文章中,我们提供了神经调质多巴胺可能参与状态依赖型二氧化碳回避行为的证据。综上所述,我们的研究表明,二氧化碳回避行为是由不同的神经通路以情境依赖的方式介导的。此外,研究表明,蕈形体不仅如先前所示参与习得嗅觉行为的处理,还参与情境依赖型先天嗅觉。