<p>A bushy network structure is observed indicating homologous recombination. # = DSTs presenting ambiguous sites (possible heterozygous) in at least one locus; DSTs gathered in clonal complex are represented by different colored circles depending on the species: yellow - <i>L. braziliensis</i>; black – <i>L. guyanensis</i>; light blue – <i>L. shawi</i>; blue – <i>L. lainsoni</i>; red – <i>L. naiffi</i>. Singletons are represented by DST number only.</p
Micropathogens (viruses, bacteria, fungi, parasitic protozoa) share a common trait, which is partial...
<p>A midpoint rooted Neighbour-joining (NJ) tree (radial version, rectangular version in <a href="ht...
The isolates characterized in this study are indicated in bold and compared to other isolates of Lei...
<p>The network was computed using SplitsTree software. EqualAngle was employed for splits transforma...
<p>Note the bushy network structure among <i>Bartonella</i> strains indicative of pervasive homologo...
<p>Alleles of the HSP70 gene were retrieved to construct the networks shown for each species as foll...
<p>Identical genotypes for the 14 microsatellite markers were grouped and are represented by “TYPEs”...
<p>Six clonal complexes were found: CC1: <i>L. lainsoni</i>; CC2 <i>L. naiffi</i>; CC3 <i>L. shawi</...
<p>I = LRV1 sequences from <i>L</i>. <i>guyanensis</i> groups A, B, C and E, and <i>L</i>. <i>shawi<...
<p>In the network each circle represents one haplotype, and theize of the circles is proportional to...
<p>The phylogenetic tree was constructed using number of differences and the NJ method. Only DSTs co...
<p>Neighbor-joining (NJ) tree displaying the relationships of 2 sequences (GU561643, GU561644) repre...
<p>SplitsTree v4 NeigborNet analysis of 77 <i>V. parahaemolyticus</i> isolates based on 7 concatenat...
Micropathogens (viruses, bacteria, fungi, parasitic protozoa) share a common trait, which is partial...
<p>The total alignment contains 1380 nucleotides. Bootstrap support of the ...
Micropathogens (viruses, bacteria, fungi, parasitic protozoa) share a common trait, which is partial...
<p>A midpoint rooted Neighbour-joining (NJ) tree (radial version, rectangular version in <a href="ht...
The isolates characterized in this study are indicated in bold and compared to other isolates of Lei...
<p>The network was computed using SplitsTree software. EqualAngle was employed for splits transforma...
<p>Note the bushy network structure among <i>Bartonella</i> strains indicative of pervasive homologo...
<p>Alleles of the HSP70 gene were retrieved to construct the networks shown for each species as foll...
<p>Identical genotypes for the 14 microsatellite markers were grouped and are represented by “TYPEs”...
<p>Six clonal complexes were found: CC1: <i>L. lainsoni</i>; CC2 <i>L. naiffi</i>; CC3 <i>L. shawi</...
<p>I = LRV1 sequences from <i>L</i>. <i>guyanensis</i> groups A, B, C and E, and <i>L</i>. <i>shawi<...
<p>In the network each circle represents one haplotype, and theize of the circles is proportional to...
<p>The phylogenetic tree was constructed using number of differences and the NJ method. Only DSTs co...
<p>Neighbor-joining (NJ) tree displaying the relationships of 2 sequences (GU561643, GU561644) repre...
<p>SplitsTree v4 NeigborNet analysis of 77 <i>V. parahaemolyticus</i> isolates based on 7 concatenat...
Micropathogens (viruses, bacteria, fungi, parasitic protozoa) share a common trait, which is partial...
<p>The total alignment contains 1380 nucleotides. Bootstrap support of the ...
Micropathogens (viruses, bacteria, fungi, parasitic protozoa) share a common trait, which is partial...
<p>A midpoint rooted Neighbour-joining (NJ) tree (radial version, rectangular version in <a href="ht...
The isolates characterized in this study are indicated in bold and compared to other isolates of Lei...