TY - JOUR
T1 - Dispersal strategies shape persistence and evolution of human gut bacteria
AU - Hildebrand, Falk
AU - Gossmann, Toni I.
AU - Frioux, Clémence
AU - Özkurt, Ezgi
AU - Myers, Pernille Neve
AU - Ferretti, Pamela
AU - Kuhn, Michael
AU - Bahram, Mohammad
AU - Nielsen, Henrik Bjørn
AU - Bork, Peer
PY - 2021/7/14
Y1 - 2021/7/14
N2 - Human gut bacterial strains can co-exist with their hosts for decades, but little is known about how these microbes persist and disperse, and evolve thereby. Here, we examined these processes in 5,278 adult and infant fecal metagenomes, longitudinally sampled in individuals and families. Our analyses revealed that a subset of gut species is extremely persistent in individuals, families, and geographic regions, represented often by locally successful strains of the phylum Bacteroidota. These “tenacious” bacteria show high levels of genetic adaptation to the human host but a high probability of loss upon antibiotic interventions. By contrast, heredipersistent bacteria, notably Firmicutes, often rely on dispersal strategies with weak phylogeographic patterns but strong family transmissions, likely related to sporulation. These analyses describe how different dispersal strategies can lead to the long-term persistence of human gut microbes with implications for gut flora modulations.
AB - Human gut bacterial strains can co-exist with their hosts for decades, but little is known about how these microbes persist and disperse, and evolve thereby. Here, we examined these processes in 5,278 adult and infant fecal metagenomes, longitudinally sampled in individuals and families. Our analyses revealed that a subset of gut species is extremely persistent in individuals, families, and geographic regions, represented often by locally successful strains of the phylum Bacteroidota. These “tenacious” bacteria show high levels of genetic adaptation to the human host but a high probability of loss upon antibiotic interventions. By contrast, heredipersistent bacteria, notably Firmicutes, often rely on dispersal strategies with weak phylogeographic patterns but strong family transmissions, likely related to sporulation. These analyses describe how different dispersal strategies can lead to the long-term persistence of human gut microbes with implications for gut flora modulations.
KW - antibiotics
KW - bacterial dispersal
KW - gut microbiome
KW - metagenomics
KW - population genetics
KW - strain resolution
UR - https://www.scopus.com/pages/publications/85110295159
U2 - 10.1016/j.chom.2021.05.008
DO - 10.1016/j.chom.2021.05.008
M3 - Article
C2 - 34111423
AN - SCOPUS:85110295159
SN - 1931-3128
VL - 29
SP - 1167
EP - 1176
JO - Cell Host and Microbe
JF - Cell Host and Microbe
IS - 7
M1 - e9
ER -