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Mbala-Kingebeni, P.

Publications and source records attributed to Mbala-Kingebeni, P..

2 recordsLinked to original sources

Evidence of latency reshapes our understanding of Ebola virus reservoir dynamics

The reservoir of Ebola virus (EBOV) has remained a mystery since the first recorded zoonotic epidemic in 1976. While recent outbreaks have revealed much about the epidemiological dynamics that sustain human-to-human transmission, the mechanisms by which the virus persists between epidemics are unknown. Observations of extreme EBOV evolutionary rate heterogeneity in humans suggest latency is an important, yet untested, factor in persistence between epidemics. We here explicitly model latency with a novel phylogenetic approach to characterise the natural history of EBOV and, by extension, its reservoir. We find evidence that EBOV undergoes extended periods (i.e., possibly decades) of quiescence in the reservoir. Accounting for these dynamics significantly changes our understanding of EBOVs evolutionary past and its geographic spread through Central Africa.

evolutionary biology↗

Human outbreak detection and best practice MPXV analysis and interpretation with squirrel

High numbers of reported mpox cases and recent identification of multiple sustained human outbreaks of MPXV have highlighted the need for robust, best-practice genomic surveillance tools. In light of the SARS-CoV-2 pandemic, many labs across the globe developed the capacity to do virus genome sequencing, however MPXV presents additional analytical challenges due to its large genome size, tracts of low-complexity or repeat regions, genetically distinct clades, and the need to perform bespoke APOBEC3-mutation reconstruction. We present squirrel (Some Quick Reconstruction to Resolve Evolutionary Links), an open source bioinformatic tool that can perform clade-aware alignment, mutation quality assessment, phylogenetic inference and automated APOBEC3-mutation classification on branches of the phylogeny. Squirrel can be run on the command line or launched through the EPI2ME GUI through the squirrel-nf workflow, enabling robust analysis without need for the command line. With the interactive output report produced and publication-ready APOBEC3-reconstruction visualisation, squirrel enables researchers to distinguish between zoonotic and sustained human outbreaks and help accurately inform public health responses.

evolutionary biology↗