TY - JOUR
T1 - Predictability and persistence of prebiotic dietary supplementation in a healthy human cohort
AU - HST Microbiome Consortium
AU - Gurry, Thomas
AU - Dannenberg, Paul H.
AU - Finlayson, Samuel G.
AU - Hughes, Travis K.
AU - Macias-Trevino, Claudio
AU - Owusu-Boaitey, Kwadwo
AU - Shomorony, Andre
AU - Tuang, Suan Lian
AU - Valenstein, Max L.
AU - Wang, Kathy K.
AU - Wu, Michael Pei hong
AU - Zack, Travis I.
AU - Gibbons, Sean M.
AU - Nguyen, Le Thanh Tu
AU - Kearney, Sean M.
AU - Ananthakrishnan, Ashwin
AU - Jiang, Xiaofang
AU - Duvallet, Claire
AU - Kassam, Zain
AU - Alm, Eric J.
N1 - Publisher Copyright:
© 2018, The Author(s).
PY - 2018/12/1
Y1 - 2018/12/1
N2 - Dietary interventions to manipulate the human gut microbiome for improved health have received increasing attention. However, their design has been limited by a lack of understanding of the quantitative impact of diet on a host’s microbiota. We present a highly controlled diet perturbation experiment in a healthy, human cohort in which individual micronutrients are spiked in against a standardized background. We identify strong and predictable responses of specific microbes across participants consuming prebiotic spike-ins, at the level of both strains and functional genes, suggesting fine-scale resource partitioning in the human gut. No predictable responses to non-prebiotic micronutrients were found. Surprisingly, we did not observe decreases in day-to-day variability of the microbiota compared to a complex, varying diet, and instead found evidence of diet-induced stress and an associated loss of biodiversity. Our data offer insights into the effect of a low complexity diet on the gut microbiome, and suggest that effective personalized dietary interventions will rely on functional, strain-level characterization of a patient’s microbiota.
AB - Dietary interventions to manipulate the human gut microbiome for improved health have received increasing attention. However, their design has been limited by a lack of understanding of the quantitative impact of diet on a host’s microbiota. We present a highly controlled diet perturbation experiment in a healthy, human cohort in which individual micronutrients are spiked in against a standardized background. We identify strong and predictable responses of specific microbes across participants consuming prebiotic spike-ins, at the level of both strains and functional genes, suggesting fine-scale resource partitioning in the human gut. No predictable responses to non-prebiotic micronutrients were found. Surprisingly, we did not observe decreases in day-to-day variability of the microbiota compared to a complex, varying diet, and instead found evidence of diet-induced stress and an associated loss of biodiversity. Our data offer insights into the effect of a low complexity diet on the gut microbiome, and suggest that effective personalized dietary interventions will rely on functional, strain-level characterization of a patient’s microbiota.
UR - https://www.scopus.com/pages/publications/85052211052
U2 - 10.1038/s41598-018-30783-1
DO - 10.1038/s41598-018-30783-1
M3 - Article
C2 - 30139999
AN - SCOPUS:85052211052
SN - 2045-2322
VL - 8
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 12699
ER -