Department of Microbiology, Immunology, and Molecular Genetics, University of California, Los Angeles, CA 90095.
Molecular Biology Institute, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2023 May 9;120(19):e2218023120. doi: 10.1073/pnas.2218023120. Epub 2023 May 1.
Many chemosensory cues evoke responses of the same valence under widely varying physiological conditions. It remains unclear whether similar or distinct neural mechanisms are involved in the detection and processing of such chemosensory cues across contexts. We show that in , a chemosensory cue is processed by distinct neural mechanisms at two different life stages that share the same valence state. Both starved adults and dauer larvae are attracted to carbon dioxide (CO), but CO evokes different patterns of neural activity and different motor outputs at the two life stages. Moreover, the same interneuron within the CO microcircuit plays a different role in driving CO-evoked motor output at the two life stages. The dauer-specific patterns of CO-evoked activity in this interneuron require a dauer-specific gap junction complex and insulin signaling. Our results demonstrate that functionally distinct microcircuits are engaged in response to a chemosensory cue that triggers the same valence state at different life stages, revealing an unexpected complexity to chemosensory processing.
许多化学感觉线索在广泛变化的生理条件下会引发相同效价的反应。目前尚不清楚在不同的情境下,检测和处理此类化学感觉线索是否涉及相似或不同的神经机制。我们表明,在 中,一种化学感觉线索在两个具有相同效价状态的不同生命阶段通过不同的神经机制进行处理。饥饿的成虫和 dauer 幼虫都被二氧化碳(CO)吸引,但 CO 在两个生命阶段引发不同的神经活动模式和不同的运动输出。此外,CO 微电路中的同一中间神经元在两个生命阶段驱动 CO 诱发的运动输出中发挥着不同的作用。该中间神经元中 dauer 特异性的 CO 诱发活动模式需要 dauer 特异性间隙连接复合物和胰岛素信号。我们的结果表明,功能不同的微电路参与了对化学感觉线索的反应,该化学感觉线索在不同的生命阶段引发相同的效价状态,揭示了化学感觉处理的出人意料的复杂性。