导语
动物如何根据环境威胁灵活调整学习速度?刘鹤教授团队于2026年9月23日发表在 PNAS 上的文章以秀丽隐杆线虫为模型发现,病原菌毒力越强,线虫形成厌恶学习的速度越快。肠道神经肽FLP-18通过作用相反的受体NPR-5和NPR-6,以“推—拉”方式调节ADF感觉神经元,将内部生理状态转化为灵活的行为适应。
关键词:肠脑轴、秀丽隐杆线虫、厌恶学习、神经肽FLP-18、推—拉调控

论文题目:A push–pull gut–brain signal regulates flexible learning in Caenorhabditis elegans 论文链接:https://www.pnas.org/doi/10.1073/pnas.2604270123 发表时间:2026年9月23日 论文来源:PNAS
招生信息
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HZ Liu, ..., H Liu. A Push-Pull Gut-Brain Signal Regulates Flexible Learning in C. elegans. PNAS,2026 -
Jiangpeng Zheng, ..., He Liu. WormVIO: Deep visual-inertial odometry via hierarchical instinct-bias sensor fusion.Information Fusion,2026 -
X Wang, ..., H Liu. Developmental patterns of the C. elegans neural circuits using community detection. Neuroscience, 2026 -
RX Shi, ..., H Liu. Computational Protocol for Quantifying Body-Bending Amplitude and Period in Caenorhabditis elegans. STAR Protocols,2026 -
H Liu, PP Zheng, XB Wang. From Small Brains to Smart Machines: Translating Caenorhabditis Elegans Neural Circuit Principles into Artificial Intelligence.Frontiers in Neural Circuits,2025 -
Y Yang, H Jia, H Liu. Cerebrospinal fluid dynamics and brain function regulation: from homeostasis to neurological disorders.Frontiers in Neuroscience,2026 -
Y Yang*, ..., H Liu. An AIEgen-Based Carrier Enables Efficient Cytosolic Delivery of Bioactive Proteins. International Journal of Nanomedicine,2025 -
RX Qin, ..., H Liu. Global trends in Alzheimer's Disease and Other Dementias: A comprehensive analysis of incidence, socio-demographic variations, and future projections. Plos One,2025 -
HJ Zhao#, ..., H Liu*. Hungry for Knowledge: Octopamine Signaling Regulates Hunger-Enhanced Olfactory Learning.Advanced Science,2025 -
X Wang, ..., H Liu. Prediction of functional neural circuits in caenorhabditis elegans based on overlapping community detection.
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JP Zheng, ..., H Liu. A Lightweight Detection Network inspired by the Olfactory Learning Circuit of Caenorhabditis elegans. International Conference on Intelligent Computing, 2025 (计算机领域会议论文) -
X Wang, ..., H Liu*. An Artificial Neural Network for Image Classification Inspired by the Aversive Olfactory Learning Neural Circuit in Caenorhabditis elegans. Advanced Science, 2025 -
XB Wang#, ..., H Liu. Dimorphic Neural Network Architecture Prioritizes Sexual-related Behaviors in Male C. elegans. eLife, 2025
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