TY - JOUR
T1 - Plasticity in the human gut microbiome defies evolutionary constraints
AU - Gomez, Andres
AU - Sharma, Ashok Kumar
AU - Mallott, Elizabeth K.
AU - Petrzelkova, Klara J.
AU - Robinson, Carolyn A.Jost
AU - Yeoman, Carl J.
AU - Carbonero, Franck
AU - Pafco, Barbora
AU - Rothman, Jessica M.
AU - Ulanov, Alexander
AU - Vlckova, Klara
AU - Amato, Katherine R.
AU - Schnorr, Stephanie L.
AU - Dominy, Nathaniel J.
AU - Modry, David
AU - Todd, Angelique
AU - Torralba, Manolito
AU - Nelson, Karen E.
AU - Burns, Michael B.
AU - Blekhman, Ran
AU - Remis, Melissa
AU - Stumpf, Rebecca M.
AU - Wilson, Brenda A.
AU - Rex Gaskins, H.
AU - Garber, Paul A.
AU - White, Bryan A.
AU - Leigh, Steven R.
N1 - Publisher Copyright:
© 2019 Gomez et al.
PY - 2019
Y1 - 2019
N2 - The gut microbiome of primates, including humans, is reported to closely follow host evolutionary history, with gut microbiome composition being specific to the genetic background of its primate host. However, the comparative models used to date have mainly included a limited set of closely related primates. To further understand the forces that shape the primate gut microbiome, with reference to human populations, we expanded the comparative analysis of variation among gut microbiome compositions and their primate hosts, including 9 different primate species and 4 human groups characterized by a diverse set of subsistence patterns (n=448 samples). The results show that the taxonomic composition of the human gut microbiome, at the genus level, exhibits increased compositional plasticity. Specifically, we show unexpected similarities between African Old World mon- keys that rely on eclectic foraging and human populations engaging in nonindustrial subsistence patterns; these similarities transcend host phylogenetic constraints. Thus, instead of following evolutionary trends that would make their microbiomes more similar to that of conspecifics or more phylogenetically similar apes, gut microbiome composition in humans from nonindustrial populations resembles that of generalist cercopithecine monkeys. We also document that wild cercopithecine monkeys with eclectic diets and humans following nonindustrial subsistence patterns harbor high gut microbiome diversity that is not only higher than that seen in humans engaging in industrialized lifestyles but also higher compared to wild primates that typically consume fiber-rich diets.
AB - The gut microbiome of primates, including humans, is reported to closely follow host evolutionary history, with gut microbiome composition being specific to the genetic background of its primate host. However, the comparative models used to date have mainly included a limited set of closely related primates. To further understand the forces that shape the primate gut microbiome, with reference to human populations, we expanded the comparative analysis of variation among gut microbiome compositions and their primate hosts, including 9 different primate species and 4 human groups characterized by a diverse set of subsistence patterns (n=448 samples). The results show that the taxonomic composition of the human gut microbiome, at the genus level, exhibits increased compositional plasticity. Specifically, we show unexpected similarities between African Old World mon- keys that rely on eclectic foraging and human populations engaging in nonindustrial subsistence patterns; these similarities transcend host phylogenetic constraints. Thus, instead of following evolutionary trends that would make their microbiomes more similar to that of conspecifics or more phylogenetically similar apes, gut microbiome composition in humans from nonindustrial populations resembles that of generalist cercopithecine monkeys. We also document that wild cercopithecine monkeys with eclectic diets and humans following nonindustrial subsistence patterns harbor high gut microbiome diversity that is not only higher than that seen in humans engaging in industrialized lifestyles but also higher compared to wild primates that typically consume fiber-rich diets.
KW - Evolution
KW - Microbiome
KW - Primate
UR - http://www.scopus.com/inward/record.url?scp=85070921236&partnerID=8YFLogxK
U2 - 10.1128/mSphere.00271-19
DO - 10.1128/mSphere.00271-19
M3 - Article
C2 - 31366708
AN - SCOPUS:85070921236
SN - 2379-5042
VL - 4
JO - mSphere
JF - mSphere
IS - 4
M1 - e00271-19
ER -