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Volume 29, Number 2—February 2023
Dispatch

Molecular Detection of Candidatus Orientia chuto in Wildlife, Saudi Arabia

Hadil A. Alkathiry, Samia Q. Alghamdi, Holly E.J. Morgan, Madeleine E. Noll, Jing J. Khoo, Abdulaziz N. Alagaili, and Benjamin L. MakepeaceComments to Author 
Author affiliations: Al Imam Mohammad Ibn Saudi Islamic University, Riyadh, Saudi Arabia (H.A. Alkathiry); University of Liverpool, Liverpool, England, UK (H.A. Alkathiry, H.E.J. Morgan, M.E. Noll, J.J. Khoo, B.L. Makepeace); Al-Bahah University, Al-Bahah, Saudi Arabia (S.Q. Alghamdi); King Saud University, Riyadh (A.N. Alagaili)

Main Article

Figure 2

Bayesian inference phylogenetic tree of Orientia htrA gene sequences detected in wildlife, Saudi Arabia. Tree represents 698 nt positions of hrtA. Asterisks (*) indicate samples from this study; identification numbers are listed in Table 2. Only sequences confirmed by 2 independent PCR amplifications of the same tissue are included. Numbers at nodes represent Bayesian posterior probabilities (%). Accession numbers are given for reference sequences from GenBank. Ki, kidney; Li, liver.

Figure 2. Bayesian inference phylogenetic tree of Orientia htrA gene sequences detected in wildlife, Saudi Arabia. Tree represents 698 nt positions of hrtA. Asterisks (*) indicate samples from this study; identification numbers are listed in Table 2. Only sequences confirmed by 2 independent PCR amplifications of the same tissue are included. Numbers at nodes represent Bayesian posterior probabilities (%). Accession numbers are given for reference sequences from GenBank. Ki, kidney; Li, liver.

Main Article

Page created: December 20, 2022
Page updated: January 21, 2023
Page reviewed: January 21, 2023
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