bioRxiv · 10.1101/2021.06.05.447065
Repeated out-of-Africa expansions of Helicobacter pylori driven by replacement of deleterious mutations
Abstract
Helicobacter pylori lives in the human stomach and has a population structure which resembles that of its host. However, H. pylori from Europe and the Middle East trace a substantially higher fraction of ancestry from modern African populations than the humans that carry them. Here, we used a collection of Afro-Eurasian H. pylori genomes to show that this African ancestry is due to at least three distinct admixture events. H. pylori from East Asia, which have undergone little admixture, have accumulated many more non-synonymous mutations than African strains. European and Middle Eastern bacteria have elevated African ancestry at the sites of these mutations compared to either non-segregating or synonymous sites, implying selection to remove them. We used simulations to show that demographic bottlenecks can lead to long-term segregation of deleterious mutations, despite high rates of homologous recombination, but that population fitness can be restored by migration of small numbers of bacteria from non-bottlenecked populations, leading to mosaic patterns of ancestry like that seen for H. pylori. We conclude that H. pylori have been able to spread repeatedly from Africa by outcompeting strains that carried deleterious mutations accumulated during the original out-of-Africa bottleneck.
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Thorpe, H., Tourrette, E., Yahara, K., Vale, F., Liu, S., Oleastro, M., Alarcon, T., Perets, T., Latifi-Navid, S., Yamaoka, Y., Martinez-Gonzalez, B., Karayiannis, I., Karamitros, T., Sgouras, D., Elamin, W., Pascoe, B., Sheppard, S., Ronkainen, J., Aro, P., Engstrand, L., Agreus, L., Suerbaum, S., Thorell, K., Falush, D.. 2021-06-06. Repeated out-of-Africa expansions of Helicobacter pylori driven by replacement of deleterious mutations. https://doi.org/10.1101/2021.06.05.447065
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