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Volume 20, Number 10—October 2014
Dispatch

Human Granulocytic Anaplasmosis, South Korea, 2013

Kye-Hyung Kim1, Jongyoun Yi1, Won Sup Oh, Nak-Hyun Kim, Su Jin Choi, Pyoeng Gyun Choe, Nam-Joong Kim, Jong-Koo Lee, and Ghazi KayaliComments to Author 
Author affiliations: Seoul National University College of Medicine, Seoul, South Korea (K.-H. Kim, N.-H. Kim, S.J. Choi, P.G. Choe, N.-J. Kim, J.-K. Lee, M.-D. Oh); Pusan National University School of Medicine, Busan, South Korea (J. Yi); Kangwon National University School of Medicine, Chuncheon, South Korea (W.S. Oh)

Main Article

Figure 1

Phylogenetic trees for partial 16S rRNA gene sequences of an Anaplasma phagocytophilum isolate obtained from a patient with human granulocytic anaplasmosis in South Korea (black dots) and those of the A. phagocytophilum strains reported from A) South Korea and B) other countries. Trees were constructed by using the neighbor-joining method. Locations (country/province or city), hosts, and GenBank accession numbers are indicated. Branch lengths of trees show evolutionary distances. Scale bars indi

Figure 1. Phylogenetic trees for partial 16S rRNA gene sequences of an Anaplasma phagocytophilum isolate obtained from a patient with human granulocytic anaplasmosis in South Korea (black dots) and those of the A. phagocytophilum strains reported from A) South Korea and B) other countries. Trees were constructed by using the neighbor-joining method. Locations (country/province or city), hosts, and GenBank accession numbers are indicated. Branch lengths of trees show evolutionary distances. Scale bars indicate 1.0% sequence distance. KWD, Korean water deer.

Main Article

1These authors contributed equally to this article.

Page created: September 22, 2014
Page updated: September 22, 2014
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