Slankster Eryn, Lee Cammie, Hess Kristen M, Odell Seth, Mathew Dennis
Department of Biology, University of Nevada, Reno, NV 89557.
Integrative Neuroscience Program, University of Nevada, Reno, NV 89557.
Bios. 2019 Dec 9;90(4):227-238. doi: 10.1893/0005-3155-90.4.227.
The symbiotic relationship between an animal and its gut microbiota is known to influence host neural function and behavior. The mechanisms by which gut microbiota influence brain function are not well understood. This study measures the impact of gut microbiota on olfactory behavior of larvae and explores possible mechanisms by which gut microbiota communicate with neural circuits. The microbiota load in larvae was altered by treating them with antibiotics or probiotics. Control larvae and larvae with altered microbiota loads were subjected to olfactory assays to analyze the chemotaxis response of larvae to odorants. Larvae treated with antibiotics had reduced microbiota load and exhibited reduced chemotaxis response toward odorants compared to control animals. This behavioral phenotype was partially rescued in larvae treated with probiotics that resulted in partial recovery of microbiota loads. Expression levels of several olfactory genes in larvae subjected to different treatments were analyzed. The results suggest that the expression of certain components of the GABA signaling pathway is sensitive to microbiota load. The study concludes that the microbiota influences homeostatic mechanisms in the host that control GABA production and GABA-receptor expression, which are known to impact host olfactory behavior. These results have implications for understanding the bidirectional communication between a host organism and its microbiota as well as for understanding the modulation of olfactory neuron function.
已知动物与其肠道微生物群之间的共生关系会影响宿主的神经功能和行为。肠道微生物群影响大脑功能的机制尚不清楚。本研究测量了肠道微生物群对幼虫嗅觉行为的影响,并探索了肠道微生物群与神经回路沟通的可能机制。通过用抗生素或益生菌处理幼虫来改变其微生物群负荷。对对照幼虫和微生物群负荷改变的幼虫进行嗅觉测定,以分析幼虫对气味剂的趋化反应。与对照动物相比,用抗生素处理的幼虫微生物群负荷降低,对气味剂的趋化反应也降低。在用益生菌处理的幼虫中,这种行为表型得到了部分挽救,微生物群负荷部分恢复。分析了接受不同处理的幼虫中几种嗅觉基因的表达水平。结果表明,GABA信号通路某些成分的表达对微生物群负荷敏感。该研究得出结论,微生物群影响宿主中控制GABA产生和GABA受体表达的稳态机制,已知这些机制会影响宿主的嗅觉行为。这些结果对于理解宿主生物体与其微生物群之间的双向沟通以及理解嗅觉神经元功能的调节具有重要意义。