Search bioRxiv⌕ Search

Biology subjects

Valderrama, B.

Publications and source records attributed to Valderrama, B..

3 recordsLinked to original sources

The South American MicroBiome Archive (saMBA): Enriching the healthy microbiome concept by evaluating uniqueness and biodiversity of neglected populations

The composition and function of the human gut microbiome has been linked to multiple health outcomes across all world regions, often with region-specific associations. Unfortunately, the extent to which microbiomes from different populations are characterised is limited by their economic resources. Over 70% of the sequenced human microbiomes come from analyses of European and North American populations, skewing our understanding by focusing excessively on just 15% of the global population. Thus, entire continents rely on results from research conducted in wealthier countries whose main findings are unlikely to generalize across other world regions. Moreover, statistical models perform poorly when applied to minorities, a blind spot with serious consequences in biomedicine, and which can only be addressed by analysing microbiome data from currently neglected areas. To address this problem, we created saMBA-- the largest archive of gut microbiomes from South America, one of the worlds most biodiverse regions in terms of the gut microbiome of its inhabitants, yet the one with the fewest samples. saMBA includes 33 gut microbiome studies, [~]73% of which were incorporated in a microbiome archive for the first time. By leveraging this resource, we uncovered a high biodiversity within --and uniqueness between-- gut microbiomes across the continent, expanding the concept of the healthy microbiome to be more globally representative. Additionally, our results highlight that the gut microbiome biodiversity of this region remains far from fully characterized. We demonstrate how saMBA can guide new sampling efforts to better capture this diversity. Finally, the code deployed to build saMBA is compatible with that of a previous global compendium and is openly available to researchers from other underrepresented regions, fostering the inclusion of other neglected populations to accelerate microbiome research globally.

bioinformatics↗

Gut Microbiota Regulates Exercise-induced Hormetic Modulation of Cognitive Function

Lifestyle factors, particularly physical exercise, significantly influence brain structure and cognitive function through a hormetic effect dependent on exercise intensity and duration. The underlying mechanisms of this profile remain largely unexplored. Recently, the gut microbiota, has emerged a potent modulator of lifestyle-induced changes on brain and behavior. Here, we demonstrate that a 40-minute protocol of moderate exercise enhances cognitive abilities related to object recognition and memory, and increases hippocampal neurogenesis in adult mice compared to sedentary controls, but these cognitive and neurogenic benefits vanish when the exercise intensity or duration is increased. Furthermore, we identified significant alpha- and beta-diversity changes and distinct bacteria composition profiles of gut microbiota associated with different exercise regimens. Specific bacterial families showed altered relative abundances depending on exercise intensity and duration, with certain families quantities significantly correlating with cognitive performance (Angelakisella, Acetatifactor, Erysipelatoclostridium, and Coriobacteriaceae UCG-002.). To parse causal mechanisms, fecal microbiota transplantation from exercised to sedentary mice replicated the cognitive and brain structural improvements observed in the donor animals. These findings suggest that the hormetic effects of physical exercise on cognitive function and neurogenesis are mediated by corresponding changes in the gut microbiota, indicating a novel mechanistic link between exercise, brain, and gut microbiota composition.

neuroscience↗

The Neuroactive Potential of the Elderly Human Gut Microbiome is Associated with Mental Health Status

Ageing is usually associated with physiological decline, increased mental health issues, and cognitive deterioration, alongside specific changes in the gut microbiome. However, the relationship between the neuroactive potential of the gut microbiome and mental health and cognition among the elderly remains less explored. This study examines a cohort of 153 older Chilean adults with cognitive complaints, assessing anthropometric data, mental health via five distinct tests, and gut microbiome composition through 16SV4 sequencing. Our findings reveal associations between anthropometric factors and depression scores in mental tests of participants with their gut microbiome composition. Notably, depression was associated with changes in the abundance of Lachnospiraceae Eubacterium xylanophilum group and Fusobacteriaceae Fusobacterium. Additionally, bacterial pathways involved in metabolising neuroactive compounds such as tryptophan, short-chain fatty acids, p-cresol, glutamate, and nitric oxide were associated with participant age, sex, and cognitive performance. Moreover, participants sex was associated with the neuroactive potential of specific bacteria, suggesting a role of the gut microbiome in sex-related mental health differences in the elderly. Together, to the best of our knowledge, this study demonstrates for the first time the association between the neuroactive potential of the human gut microbiome and mental health status in older individuals with cognitive complaints.

animal behavior and cognition↗