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Tito, R.

Publications and source records attributed to Tito, R..

2 recordsLinked to original sources

Gut microbiota characterization in vegetarian adults from the adventist population living in coastal, highland, and jungle regions of Peru

IntroductionThe gut microbiota plays a crucial role in various physiological processes, and its composition can be influenced by factors such as diet, genetics, age, and health status. Among these, diet is one of the most significant determinants of microbial balance. A well-balanced diet promotes the growth of beneficial bacteria, reducing intestinal inflammation and the risk of chronic diseases. Vegetarian diets have been proposed to confer beneficial effects on gut health; however, many questions remain regarding microbial profiles, their variability, and the potential influence of geographic and cultural factors--particularly within Latin American contexts. This study aims to address this gap by presenting the first characterization of the gut microbiota in vegetarian adults from the Adventist population living in three distinct regions of Peru. MethodsStool samples were used as a proxy to analyze gut microbiota composition through 16S rRNA gene sequencing. Standard descriptive analyses were performed to assess bacterial composition, including diversity and relative abundance across samples. ResultsThe gut microbial communities of Peruvian vegetarians revealed three distinct enterotypes, with distribution varying by region. Enterotype 1 (ET1), predominant in coastal and highland regions, exhibited the highest bacterial richness and diversity. Enterotype 2 (ET2), observed in highland and jungle areas, was characterized by higher levels of Prevotella. Enterotype 3 (ET3), more frequent in the jungle region, showed a greater abundance of Bacteroides and Faecalibacterium. ConclusionsDespite all participants adhering to a vegetarian diet, notable diversity in gut microbiota profiles was observed within this population. While three distinct enterotypes were identified, consistent with findings in other populations, the specific profiles differed from those previously reported. This study highlights the importance of incorporating variables that enable greater resolution in future research, allowing better control of within-population variability, such as that observed in Peruvian vegetarians, and ultimately enhancing the accuracy of microbiome-related conclusions.

microbiology↗

Successional stages in infant gut microbiota maturation

BackgroundDisturbances in the primary colonization of the infant gut can result in life-long consequences and have been associated with a range of host conditions. Although early life factors have been shown to affect the infant gut microbiota development, our current understanding of the human gut colonization in early life remains limited. To gain more insights in the unique dynamics of this rapidly evolving ecosystem, we investigated the microbiota over the first year of life in eight densely sampled infants (total number of samples, n=303). To evaluate gut microbiota maturation transition towards an adult configuration, we compared the microbiome composition of the infants to the Flemish Gut Flora Project population (n=1,106). ResultsWe observed the infant gut microbiota to mature through three distinct, conserved stages of ecosystem development. Across these successional gut microbiota maturation stages, genus predominance was observed to shift from Escherichia over Bifidobacterium to Bacteroides. Both disease and antibiotic treatment were observed to be associated occasionally with gut microbiota maturation stage regression, a transient setback in microbiota maturation dynamics. Although the studied microbiota trajectories evolved to more adult-like constellations, microbiome community typing against the background of the Flemish Gut Flora Project (FGFP) cohort clustered all infant samples within the (in adults) potentially dysbiotic Bact2 enterotype. ConclusionWe confirmed similarities between infant gut microbial colonization and adult dysbiosis. A profound knowledge about the primary gut colonization process in infants might provide crucial insights into how the secondary colonization of a dysbiotic adult gut can be redirected.

microbiology↗