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Co-radiation of Leptospira and Tenrecidae (Afrotheria) on Madagascar

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Leptospirosis is a bacterial zoonosis caused by pathogenic Leptospira that are maintained in the kidney lumen of infected animals acting as reservoirs and contaminating the environment via infected urine. The investigation of leptospirosis through a One Health framework has been stimulated by notable genetic diversity of pathogenic Leptospira together with a high infection prevalence in certain animal reservoirs. Studies of Madagascar’s native mammal fauna have revealed a diversity of Leptospira with high levels of host-specificity. Native rodents, tenrecids, and bats shelter several distinct lineages and species of Leptospira, some of which have also been detected in acute human cases. Specifically, Leptospira mayottensis, first discovered in humans on Mayotte, an island neighboring Madagascar, was subsequently identified in a few species of Malagasy tenrecids, an endemic family of small mammals. Distinct L. mayottensis lineages were identified in shrew tenrecs ( Microgale cowani and Nesogale dobsoni) on Madagascar, and later in spiny tenrecs ( Tenrec ecaudatus) on Mayotte. These findings suggest that L. mayottensis (i) has co-radiated with tenrecids on Madagascar, and (ii) has recently emerged in human populations on Mayotte following the introduction of T. ecaudatus from Madagascar. Hitherto, L. mayottensis has not been detected in spiny tenrecs on Madagascar. In the present study, we broaden the investigation of Malagasy tenrecids and describe the presence of L. mayottensis in Malagasy T. ecaudatus and M. thomasi. These results confirm the hypothesis that L. mayottensis was introduced to Mayotte, presumably via T. ecaudatus, and provide additional data on the co-radiation of Leptospira and Tenrecidae.
Title: Co-radiation of Leptospira and Tenrecidae (Afrotheria) on Madagascar
Description:
Leptospirosis is a bacterial zoonosis caused by pathogenic Leptospira that are maintained in the kidney lumen of infected animals acting as reservoirs and contaminating the environment via infected urine.
The investigation of leptospirosis through a One Health framework has been stimulated by notable genetic diversity of pathogenic Leptospira together with a high infection prevalence in certain animal reservoirs.
Studies of Madagascar’s native mammal fauna have revealed a diversity of Leptospira with high levels of host-specificity.
Native rodents, tenrecids, and bats shelter several distinct lineages and species of Leptospira, some of which have also been detected in acute human cases.
Specifically, Leptospira mayottensis, first discovered in humans on Mayotte, an island neighboring Madagascar, was subsequently identified in a few species of Malagasy tenrecids, an endemic family of small mammals.
Distinct L.
mayottensis lineages were identified in shrew tenrecs ( Microgale cowani and Nesogale dobsoni) on Madagascar, and later in spiny tenrecs ( Tenrec ecaudatus) on Mayotte.
These findings suggest that L.
mayottensis (i) has co-radiated with tenrecids on Madagascar, and (ii) has recently emerged in human populations on Mayotte following the introduction of T.
ecaudatus from Madagascar.
Hitherto, L.
mayottensis has not been detected in spiny tenrecs on Madagascar.
In the present study, we broaden the investigation of Malagasy tenrecids and describe the presence of L.
mayottensis in Malagasy T.
ecaudatus and M.
thomasi.
These results confirm the hypothesis that L.
mayottensis was introduced to Mayotte, presumably via T.
ecaudatus, and provide additional data on the co-radiation of Leptospira and Tenrecidae.

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