Department of Oral Biology, BK21 FOUR Project, Yonsei University College of Dentistry, Seodaemun-gu, Seoul 03722, Korea.
Department of Oral Biology, BK21 FOUR Project, Yonsei University College of Dentistry, Seodaemun-gu, Seoul 03722, Korea
Proc Natl Acad Sci U S A. 2021 Feb 16;118(7). doi: 10.1073/pnas.2004523118.
The integration of two or more distinct sensory cues can help animals make more informed decisions about potential food sources, but little is known about how feeding-related multimodal sensory integration happens at the cellular and molecular levels. Here, we show that multimodal sensory integration contributes to a stereotyped feeding behavior in the model organism Simultaneous olfactory and mechanosensory inputs significantly influence a taste-evoked feeding behavior called the proboscis extension reflex (PER). Olfactory and mechanical information are mediated by antennal neurons and leg hair plate mechanosensory neurons, respectively. We show that the controlled delivery of three different sensory cues can produce a supra-additive PER via the concurrent stimulation of olfactory, taste, and mechanosensory inputs. We suggest that the fruit fly is a versatile model system to study multisensory integration related to feeding, which also likely exists in vertebrates.
两种或多种不同感觉线索的整合可以帮助动物更明智地决定潜在的食物来源,但对于与摄食相关的多模态感觉整合如何在细胞和分子水平上发生,我们知之甚少。在这里,我们展示了多模态感觉整合有助于模型生物中刻板的摄食行为,即同时嗅觉和机械感觉输入对称为触角延伸反射(PER)的味觉诱发摄食行为有显著影响。嗅觉和机械信息分别由触角神经元和腿部毛板机械感觉神经元介导。我们表明,通过同时刺激嗅觉、味觉和机械感觉输入,可以控制三种不同感觉线索的传递,从而产生超相加的 PER。我们认为果蝇是研究与摄食相关的多感觉整合的多功能模型系统,这种整合在脊椎动物中也可能存在。