Abstract
Treponema pallidum
subsp.
pertenue
(
TPE
) is the causative agent of yaws. The disease was subject to global eradication efforts in the mid 20
th
century but reemerged in West Africa, Southern Asia, and the Pacific region. Despite its importance for eradication, detailed data on possible nonhuman disease reservoirs are missing. A number of African nonhuman primates (NHPs) have been reported to show skin ulcerations suggestive of treponemal infection in humans. Furthermore antibodies against
Treponema pallidum
(
TP
) have been repeatedly detected in wild NHP populations. While genetic studies confirmed that NHPs are infected with
TP
strains, subspecies identification was only possible once for a strain isolated in 1966, pinpointing the involvement of
TPE
. We therefore collected a number of recently isolated simian
TP
strains and determined eight whole genome sequences using hybridization capture or long-range PCR combined with next-generation sequencing. These new genomes were compared with those of known human
TP
isolates. Our results show that naturally occurring simian
TP
strains circulating in three African NHP species all cluster with human
TPE
strains and show the same genomic structure as human
TPE
strains. These data indicate that humans are not the exclusive host for the yaws bacterium and that a One Health approach is required to achieve sustainable eradication of human yaws.