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Volume 30, Number 12—December 2024
Dispatch

Lobomycosis in Amazon Region, Bolivia, 2022

Maria I. Méndez, Rony Colanzi, Jose A. Suárez, Homero Penagos, Carolina Hernandez, Ruth Garcia-Redondo, Juan D. Ramirez, and Alberto Paniz-MondolfiComments to Author 
Author affiliation: Centro Nacional de Enfermedades Tropicales, Santa Cruz, Bolivia (M.I. Méndez); Laboratorio Catedral, Santa Cruz (R. Colanzi); Universidad Internacional Sek Quito, Quito, Ecuador (J.A. Suárez); Universidad Autónoma de Chiriquí, Chiriquí, Panama (H. Penagos); Icahn School of Medicine at Mount Sinai, New York, New York, USA (C. Hernandez, R. Garcia-Redondo, J.D. Ramirez, A. Paniz-Mondolfi)

Main Article

Figure 2

Phylogenetic analysis of genes from different Paracoccidioides spp. in study of lobomycosis in Amazon Region, Bolivia, 2022. Phylogenetic trees were inferred by using the maximum-likelihood method for ADP-rf (A), GP43 (B), and ITS1/ITS2 (C) genes. Sequences obtained from GenBank were compared with sequences from the patient sample (sequences deposited in European Nucleotide Archive [https://www.ebi.ac.uk/ena] under Bioproject no. PRJEB77911). Scale bars indicate nucleotide substitutions per site.

Figure 2. Phylogenetic analysis of genes from different Paracoccidioides spp. in study of lobomycosis in Amazon Region, Bolivia, 2022. Phylogenetic trees were inferred by using the maximum-likelihood method for ADP-rf (A), GP43 (B), and ITS1/ITS2 (C) genes. Sequences obtained from GenBank were compared with sequences from the patient sample (sequences deposited in European Nucleotide Archive [https://www.ebi.ac.uk/ena] under Bioproject no. PRJEB77911). Scale bars indicate nucleotide substitutions per site.

Main Article

Page created: October 15, 2024
Page updated: November 26, 2024
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