The intestinal microbiota-driven dopamine level influences social interaction and innate color preference in zebrafish larvae

Author:

Wang Ju,Zheng Feng,Yin Lifen,Shi Shengnan,Hu Bing,Zheng Lei

Abstract

AbstractGut microbiota influence neurodevelopment of brain and programing of behaviors. However, the mechanism underlining the relationship between shoals’ behaviors and intestinal microbiota remain controversial and the roles of neurotransmitters are still unclear. Here we show that, shoaling behavior affected the innate color preference of shoals, indicating that shoals tended to choose a favorable color environment that benefits social contact. Meanwhile, administration of D1-R antagonist disrupted the social interaction which led to the deficits of color preference. More importantly, the altered microbiota caused by an antibiotic OTC decreased the sociability and weakened shoals’ color preference. When given a supplement of LGG after OTC exposure, fish exhibited an unexpectedly recovery capability in social cohesion and color preference. Our findings show that dopamine level of brain could mediate both social recognition and color preference, and highlight the pathway of microbial metabolites through the microbiota-gut-brain axis that coordinate the production of dopamine.

Publisher

Cold Spring Harbor Laboratory

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