Characterization of the microbiome of Down syndrome mouse model (Ts65Dn) in standard and high-fat diet.
Wilczynski, B.; Fructuoso, M.; De Toma, I.; Dierssen, M.; Grabowicz, I. E.
Show abstract
The intestinal microbiota is known to affect its host in numerous ways and can be altered by many factors including the host genotype and high-calorie diets. Down syndrome (DS) is a genetic neurodevelopmental disorder caused by the total or partial triplication of chromosome 21. Recently, a human study reported microbiota differences between DS and euploid humans. To further explore the differences due to the genotype, we here investigated the microbiome of trisomic mice (Ts65Dn). In trisomic mice we found a significant enrichment in abundances of bacteria: Bacteroides ovatus, B. thetaiotaomicron, and Akkermansia muciniphila - the mucus-degrading and gut-health promoting species. Since diet composition has an effect on microbiota species, we studied the effect of a high-fat diet on the observed genotypic differences. Our study provides evidence that microbiomes of trisomic mice on the control diet present more inter-individual differences than WT mice. Moreover, we observed that the high-fat diet led to increased differences between individuals and this effect was even more pronounced in the trisomic than in WT mice. We validated the results obtained with widely used 16rRNA gene sequencing with the sequencing of the total RNA. HighlightsO_LIDown syndrome (DS) model mice faecal microbiomes are characterized by an overrepresentation of Bacteroides ovatus, Bacteroides thetaiotaomicron, and Akkermansia muciniphila species. C_LIO_LIDS mice are characterized by higher heterogeneity of their microbiome communities than WT mice. C_LIO_LIHigh-fat diet leads to more diverse microbiome communities between mice, especially in trisomic genotype. C_LI
Matching journals
The top 12 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cerebral Small Vessel Disease Burden is Associated with Decreased Abundance of Gut Barnesiella intestinihominis Bacterium in the Framingham Heart Study 94%
- Type 1 Diabetes: an Association Between Autoimmunity the Dynamics of Gut Amyloid-producing E. coli and Their Phages 93%
- Estradiol modulates gut microbiota in female ob/ob mice fed a high fat diet 93%
Similar papers in this journal
- Parallel signatures of mammalian domestication and human industrialization in the gut microbiota 92%
- Key features of the genetic architecture and evolution of host-microbe interactions revealed by high-resolution genetic mapping of the mucosa-associated gut microbiome in hybrid mice 92%
- Microbes with higher metabolic independence are enriched in human gut microbiomes under stress 92%
Similar papers in this journal
- The host genotype actively shapes its microbiome across generations 95%
- CViewer: A Java-based statistical framework for integration of shotgun metagenomics with other omics datasets 94%
- A Comprehensive Assessment of Demographic, Environmental and Host Genetic Associations with Gut Microbiome Diversity in Healthy Individuals 93%
Similar papers in this journal
- Parkinson’s disease-associated alterations of the gut microbiome can invoke disease-relevant metabolic changes 92%
- Association of Bacteroides acidifaciens relative abundance with high-fibre diet-associated radiosensitisation 91%
- Meta-analysis of the human upper respiratory tract microbiome reveals robust taxonomic associations with health and disease. 91%
"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.