A) Maximum clade credibility tree of the polymerase region of arenaviruses. The tree was constructed from amino acid alignment using Bayesian MCMC method with LG model of substitution. Posterior probabilities are shown in each node. B) Maximum clade credibility tree of S segment of hartmaniviruses. The tree was constructed from Bayesian MCMC method with HKY model of substitution with gamma distributed rate variation among sites and proportion of invariable sites. Posterior probabilities are shown in each node.</p
<p>The phylogenetic tree was inferred by the Bayesian method in the GTR model, with gamma-distribute...
<p>Relationship was inferred by Bayesian analysis of the protein sequence alignment. A WAG model of ...
<p>Phylogenetic tree created by the Maximum-likelihood algorithm for the S1 gene of IBV Mass type vi...
(A) A closer look at the clade containing all DENV-1 sequenced from our study site (marked by star) ...
<p>The posterior probabilities are indicated by the size of the node, and TMRCA and 95% HPD of the b...
<p>The maximum clade credibility tree was constructed from partial VP1 coding region (consensus alig...
<p>The two lineages with probability support of 1 were colored green and red respectively. The proba...
<p>The orange and blue colored branches represent one lineage while pink colored branches represents...
<p>Each strain is highlighted with virus subtype, country of origin, strain name, year of isolation ...
Phylogenetic trees are used to study evolutionary relationships among biological entities. Since phy...
<p>The ML/MCC/Bayesian trees were based on the coding sequences of the S (A) and M (B) segments. Num...
<p>Bayesian posterior probabilities are given at nodes of importance. Isolates which have been impli...
<p>Different clusters and the Italian clades are indicated by different colours. The numbers on the ...
<p>(A) The MCC tree for subtype 1a strains. (B) The MCC tree for subtype 6a strains. (C) The MCC tre...
<p>The tree is midpoint-rooted and, for clarity, only posterior probability values <u>></u>80% are s...
<p>The phylogenetic tree was inferred by the Bayesian method in the GTR model, with gamma-distribute...
<p>Relationship was inferred by Bayesian analysis of the protein sequence alignment. A WAG model of ...
<p>Phylogenetic tree created by the Maximum-likelihood algorithm for the S1 gene of IBV Mass type vi...
(A) A closer look at the clade containing all DENV-1 sequenced from our study site (marked by star) ...
<p>The posterior probabilities are indicated by the size of the node, and TMRCA and 95% HPD of the b...
<p>The maximum clade credibility tree was constructed from partial VP1 coding region (consensus alig...
<p>The two lineages with probability support of 1 were colored green and red respectively. The proba...
<p>The orange and blue colored branches represent one lineage while pink colored branches represents...
<p>Each strain is highlighted with virus subtype, country of origin, strain name, year of isolation ...
Phylogenetic trees are used to study evolutionary relationships among biological entities. Since phy...
<p>The ML/MCC/Bayesian trees were based on the coding sequences of the S (A) and M (B) segments. Num...
<p>Bayesian posterior probabilities are given at nodes of importance. Isolates which have been impli...
<p>Different clusters and the Italian clades are indicated by different colours. The numbers on the ...
<p>(A) The MCC tree for subtype 1a strains. (B) The MCC tree for subtype 6a strains. (C) The MCC tre...
<p>The tree is midpoint-rooted and, for clarity, only posterior probability values <u>></u>80% are s...
<p>The phylogenetic tree was inferred by the Bayesian method in the GTR model, with gamma-distribute...
<p>Relationship was inferred by Bayesian analysis of the protein sequence alignment. A WAG model of ...
<p>Phylogenetic tree created by the Maximum-likelihood algorithm for the S1 gene of IBV Mass type vi...