Selected article for: "evolutionary relationship and Maximum likelihood"

Author: Folarin, Onikepe A.; Ehichioya, Deborah; Schaffner, Stephen F.; Winnicki, Sarah M.; Wohl, Shirlee; Eromon, Philomena; West, Kendra L.; Gladden-Young, Adrianne; Oyejide, Nicholas E.; Matranga, Christian B.; Deme, Awa Bineta; James, Ayorinde; Tomkins-Tinch, Christopher; Onyewurunwa, Kenneth; Ladner, Jason T.; Palacios, Gustavo; Nosamiefan, Iguosadolo; Andersen, Kristian G.; Omilabu, Sunday; Park, Daniel J.; Yozwiak, Nathan L.; Nasidi, Abdusallam; Garry, Robert F.; Tomori, Oyewale; Sabeti, Pardis C.; Happi, Christian T.
Title: Ebola Virus Epidemiology and Evolution in Nigeria
  • Document date: 2016_10_15
  • ID: 2g9ggwog_36
    Snippet: To better understand the evolutionary relationship between the EVD outbreak in Nigeria and the West African outbreak as a whole, we created a maximum likelihood tree (Figure 1) . The tree confirms that the EVD outbreak in Nigeria was due to a single introduction from Liberia, as suggested by contact tracing. More specifically, the EBOV genomes from Nigeria are descendants of the LB5 clade in Liberia [18] . No EBOV sequences yet sampled outside Ni.....
    Document: To better understand the evolutionary relationship between the EVD outbreak in Nigeria and the West African outbreak as a whole, we created a maximum likelihood tree (Figure 1) . The tree confirms that the EVD outbreak in Nigeria was due to a single introduction from Liberia, as suggested by contact tracing. More specifically, the EBOV genomes from Nigeria are descendants of the LB5 clade in Liberia [18] . No EBOV sequences yet sampled outside Nigeria descend from the Nigerian EBOV isolates [2, [19] [20] [21] [22] [23] , indicating containment of EVD cases in Nigeria within the larger outbreak, as also suggested by contact tracing.

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