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1.
Emerg Infect Dis ; 26(9): 2205-2209, 2020 09.
Artículo en Inglés | MEDLINE | ID: mdl-32818404

RESUMEN

After the 2017 Ebola virus (EBOV) outbreak in Likati, a district in northern Democratic Republic of the Congo, we sampled small mammals from the location where the primary case-patient presumably acquired the infection. None tested positive for EBOV RNA or antibodies against EBOV, highlighting the ongoing challenge in detecting animal reservoirs for EBOV.


Asunto(s)
Ebolavirus , Fiebre Hemorrágica Ebola , Animales , Animales Salvajes , República Democrática del Congo/epidemiología , Brotes de Enfermedades , Ebolavirus/genética , Fiebre Hemorrágica Ebola/epidemiología , Humanos
2.
BMC Evol Biol ; 14: 256, 2014 Dec 14.
Artículo en Inglés | MEDLINE | ID: mdl-25496476

RESUMEN

BACKGROUND: Rodents of the genus Mus represent one of the most valuable biological models for biomedical and evolutionary research. Out of the four currently recognized subgenera, Nannomys (African pygmy mice, including the smallest rodents in the world) comprises the only original African lineage. Species of this subgenus became important models for the study of sex determination in mammals and they are also hosts of potentially dangerous pathogens. Nannomys ancestors colonized Africa from Asia at the end of Miocene and Eastern Africa should be considered as the place of their first radiation. In sharp contrast with this fact and despite the biological importance of Nannomys, the specimens from Eastern Africa were obviously under-represented in previous studies and the phylogenetic and distributional patterns were thus incomplete. RESULTS: We performed comprehensive genetic analysis of 657 individuals of Nannomys collected at approximately 300 localities across the whole sub-Saharan Africa. Phylogenetic reconstructions based on mitochondrial (CYTB) and nuclear (IRBP) genes identified five species groups and three monotypic ancestral lineages. We provide evidence for important cryptic diversity and we defined and mapped the distribution of 27 molecular operational taxonomic units (MOTUs) that may correspond to presumable species. Biogeographical reconstructions based on data spanning all of Africa modified the previous evolutionary scenarios. First divergences occurred in Eastern African mountains soon after the colonization of the continent and the remnants of these old divergences still occur there, represented by long basal branches of M. (previously Muriculus) imberbis and two undescribed species from Ethiopia and Malawi. The radiation in drier lowland habitats associated with the decrease of body size is much younger, occurred mainly in a single lineage (called the minutoides group, and especially within the species M. minutoides), and was probably linked to aridification and climatic fluctuations in middle Pliocene/Pleistocene. CONCLUSIONS: We discovered very high cryptic diversity in African pygmy mice making the genus Mus one of the richest genera of African mammals. Our taxon sampling allowed reliable phylogenetic and biogeographic reconstructions that (together with detailed distributional data of individual MOTUs) provide a solid basis for further evolutionary, ecological and epidemiological studies of this important group of rodents.


Asunto(s)
Ratones/clasificación , Ratones/genética , Filogenia , África del Sur del Sahara , Animales , Evolución Biológica , Filogeografía
3.
Am J Trop Med Hyg ; 90(3): 463-8, 2014 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-24445202

RESUMEN

The prevalence and identity of Rickettsia and Bartonella in urban rat and flea populations were evaluated in Kisangani, Democratic Republic of the Congo (DRC) by molecular tools. An overall prevalence of 17% Bartonella species and 13% Rickettsia typhi, the agent of murine typhus, was found in the cosmopolitan rat species, Rattus rattus and Rattus norvegicus that were infested by a majority of Xenopsylla cheopis fleas. Bartonella queenslandensis, Bartonella elizabethae, and three Bartonella genotypes were identified by sequencing in rat specimens, mostly in R. rattus. Rickettsia typhi was detected in 72% of X. cheopis pools, the main vector and reservoir of this zoonotic pathogen. Co-infections were observed in rodents, suggesting a common mammalian host shared by R. typhi and Bartonella spp. Thus, both infections are endemic in DRC and the medical staffs need to be aware knowing the high prevalence of impoverished populations or immunocompromised inhabitants in this area.


Asunto(s)
Bartonella/genética , Insectos Vectores/microbiología , Ratas/microbiología , Rickettsia typhi/genética , Siphonaptera/microbiología , Animales , Infecciones por Bartonella/epidemiología , Infecciones por Bartonella/microbiología , ADN Bacteriano/análisis , República Democrática del Congo/epidemiología , Vectores de Enfermedades , Infestaciones por Pulgas/microbiología , Humanos , Reacción en Cadena de la Polimerasa , Prevalencia , Infecciones por Rickettsia/epidemiología , Infecciones por Rickettsia/microbiología , Tifus Endémico Transmitido por Pulgas/epidemiología , Tifus Endémico Transmitido por Pulgas/microbiología , Población Urbana
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