Gut-derived metabolites influence neurodevelopmental gene expression and Wnt signalling events in a germ-free zebrafish model
Rea, V.; Bell, I.; Van Raay, T. J.
Show abstract
Small molecule metabolites produced by the microbiome are known to be neuroactive and are capable of directly impacting the brain and central nervous system, yet there is little data on the contribution of these metabolites to the earliest stages of neural development and neural gene expression. Here, we explore the impact of rearing zebrafish embryos in the absence of microbes on early neural development as well as investigate whether any potential changes can be rescued with treatment of metabolites derived from the zebrafish gut microbiota. Overall, we did not observe any gross morphological changes between treatments but did observe a significant decrease in neural gene expression in embryos raised germ-free, which was rescued with the addition of zebrafish metabolites. Specifically, we identified 361 genes significantly down regulated in GF embryos compared to conventionally raised embryos via RNA-Seq analysis. Of these, 42 were rescued with the treatment of zebrafish gut-derived metabolites to GF embryos. Gene ontology analysis revealed that these genes are involved in prominent neurodevelopmental pathways including transcriptional regulation and Wnt signalling. Consistent with the ontology analysis, we found alterations in the development of Wnt dependent events which is rescued in the GF embryos treated with metabolites.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Gene knockdown via electroporation of short hairpin RNAs in embryos of the marine hydroid Hydractinia symbiolongicarpus 94%
- Organophosphorus diisopropylfluorophosphate (DFP) intoxication in zebrafish larvae causes behavioral defects, neuronal hyperexcitation and neuronal death 94%
- Expression of a Barhl1a reporter in subsets of retinal ganglion cells and commissural neurons of the developing zebrafish brain 94%
Similar papers in this journal
- Behavioural analysis of loss of function zebrafish supports baz1b as master regulator of domestication 94%
- FAM57B is a modulator of ceramide synthesis that regulates sphingolipid homeostasis and synaptic composition in the developing brain 93%
- Inconspicuous breeding coloration to conceal eggs during mouthbrooding in male cardinalfish 93%
Similar papers in this journal
Similar papers in this journal
- Sea lamprey enlightens the origin of the coupling of retinoic acid signaling to vertebrate hindbrain segmentation 94%
- Non-canonical nuclear function of glutaminase cooperates with Wnt signaling to drive EMT during neural crest development 93%
- Wnt signaling restores evolutionary loss of regenerative potential in Hydra 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.