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Volume 29, Number 12—December 2023
Research Letter

Detection of African Swine Fever Virus from Wild Boar, Singapore, 2023

Eileen Y. KohComments to Author , Adrian K.S. Tan, Darren Yeo, Clara Lau, Li Ying Tan, Oi Wing Ng, Jasmine Ong, Stacy Chong, Steffie Toh, Jing Chen, Wai Kwan Wong, Brian Z.Y. Tan, Christine He-Lee, Zhan Pei Heng, Ian Liang, Charlene Judith Fernandez, Siow Foong Chang, and Kenneth B.H. Er
Author affiliation: National Parks Board, Singapore

Main Article

Figure

Phylogenetic analysis of African swine fever virus detected in a wild boar, Singapore, 2023. A) Analysis of p72 genotype. Roman numerals to the right indicate the respective genotypes; 10 of 24 known genotypes are shown. B) Analysis of CD2v serogroups constructed by using the maximum-likelihood method and Tamura-Nei model with 1,000 bootstrap values in MEGA X software (https://www.megasoftware.net). Only bootstrap values >70% are shown. Black squares indicate sample from this study (Singapore/NParks/A-MAM-2023-02-00021; GenBank accession number OR135685). GenBank accession numbers are provided for all reference sequences. Scale bars indicate nucleotide substitutions per site.

Figure. Phylogenetic analysis of African swine fever virus detected in a wild boar, Singapore, 2023. A) Analysis of p72 genotype. Roman numerals to the right indicate the respective genotypes; 10 of 24 known genotypes are shown. B) Analysis of CD2v serogroups constructed by using the maximum-likelihood method and Tamura-Nei model with 1,000 bootstrap values in MEGA X software (https://www.megasoftware.net). Only bootstrap values >70% are shown. Black squares indicate sample from this study (Singapore/NParks/A-MAM-2023-02-00021; GenBank accession number OR135685). GenBank accession numbers are provided for all reference sequences. Scale bars indicate nucleotide substitutions per site.

Main Article

Page created: September 12, 2023
Page updated: November 18, 2023
Page reviewed: November 18, 2023
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