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Volume 30, Number 2—February 2024
Research

Evolution and Spread of Highly Pathogenic Avian Influenza A(H5N1) Clade 2.3.4.4b Virus in Wild Birds, South Korea, 2022–2023

Ye-Ram Seo1, Andrew Y. Cho1, Young-Jae Si1, Song-I Lee, Dong-Ju Kim, Hyesung Jeong, Jung-Hoon Kwon, Chang-Seon Song, and Dong-Hun LeeComments to Author 
Author affiliations: Konkuk University, Seoul, South Korea (Y.-R. Seo, A.Y. Cho, C.-S. Song, D.-H. Lee); National Institute of Wildlife Disease Control and Prevention, Gwangju, South Korea (Y.-J. Si, S.-I Lee, D.-J. Kim, Hyesung Jeong); Kyungpook National University College of Veterinary Medicine, Daegu, South Korea (J.-H. Kwon)

Main Article

Figure 5

Inferred transmission networks of highly pathogenic avian influenza A(H5N1) viruses from wild birds, South Korea, October 2022–March 2023. Arrows show the well-supported transitions in discrete trait phylogeography. Line colors indicate the overall Bayes factor test support for epidemiologic linkage. White arrows indicate statistical support with Bayes factor > 100 (very strong support), gray arrows indicate support with 10 < Bayes factor < 100 (strong support), and cyan arrows indicate support with 3 < Bayes factor < 10. Numbers next to arrows indicate transition rates.

Figure 5. Inferred transmission networks of highly pathogenic avian influenza A(H5N1) viruses from wild birds, South Korea, October 2022–March 2023. Arrows show the well-supported transitions in discrete trait phylogeography. Line colors indicate the overall Bayes factor test support for epidemiologic linkage. White arrows indicate statistical support with Bayes factor > 100 (very strong support), gray arrows indicate support with 10 < Bayes factor < 100 (strong support), and cyan arrows indicate support with 3 < Bayes factor < 10. Numbers next to arrows indicate transition rates.

Main Article

1These first authors contributed equally to this article.

Page created: December 19, 2023
Page updated: January 24, 2024
Page reviewed: January 24, 2024
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