The circles represent haplotypes, with areas proportional to their frequencies; the numbers of haplotypes in each node are given in the figure mutation positions are shown; and the colors indicate the population of origin. Coyaima-a* represents the data reported by Jota et al. [30]. Coyaima-b* represents the data reported by to Franco-Candela and Barreto [28]. The median vectors (absent or extinct haplotypes) are shown in white.</p
<p>The network was constructed using a median joining with MP (maximum parsimony) algorithm as imple...
<p>A Median Joining network was constructed using the same 13 Y-STR loci as <a href="http://www.plos...
<p>A = <i>B. lucorum</i>; B = <i>B. terrestris</i>; C = <i>B. vestalis</i>. The sizes of the circles...
In the figure, the circles represent haplotypes, with areas proportional to their frequencies, and t...
<p>Populations represented in each node of the network are shown in different colors.</p
<p>Different population groups are defined by distinct colors, where Aymara and Quechua communities ...
The circles represent haplotypes, with areas proportional to their frequencies, while the colors ind...
<p>Circles are haplotypes. Sizes of these circles are proportional to haplotype frequency and branch...
Haplotype frequency is represented by the size of nodes and missing haplotypes are shown as red circ...
<p>The circle size corresponds to the frequency of each haplotype. Intermediary haplotypes (missing ...
<p><i>cox1</i> haplotypes found in the study were included in the network analysis. Haplotype freque...
<p>Haplotypes are depicted by circles, the width being proportional to their frequencies. Color code...
Haplotype frequency is represented by sample size. Haplotype frequency is represented by the size of...
<p>The size of the circles on the network is proportional to haplotype frequency. Small red circles ...
<p>The network is based on the analysis of sequence data of the first haplotype block of 8634 bp len...
<p>The network was constructed using a median joining with MP (maximum parsimony) algorithm as imple...
<p>A Median Joining network was constructed using the same 13 Y-STR loci as <a href="http://www.plos...
<p>A = <i>B. lucorum</i>; B = <i>B. terrestris</i>; C = <i>B. vestalis</i>. The sizes of the circles...
In the figure, the circles represent haplotypes, with areas proportional to their frequencies, and t...
<p>Populations represented in each node of the network are shown in different colors.</p
<p>Different population groups are defined by distinct colors, where Aymara and Quechua communities ...
The circles represent haplotypes, with areas proportional to their frequencies, while the colors ind...
<p>Circles are haplotypes. Sizes of these circles are proportional to haplotype frequency and branch...
Haplotype frequency is represented by the size of nodes and missing haplotypes are shown as red circ...
<p>The circle size corresponds to the frequency of each haplotype. Intermediary haplotypes (missing ...
<p><i>cox1</i> haplotypes found in the study were included in the network analysis. Haplotype freque...
<p>Haplotypes are depicted by circles, the width being proportional to their frequencies. Color code...
Haplotype frequency is represented by sample size. Haplotype frequency is represented by the size of...
<p>The size of the circles on the network is proportional to haplotype frequency. Small red circles ...
<p>The network is based on the analysis of sequence data of the first haplotype block of 8634 bp len...
<p>The network was constructed using a median joining with MP (maximum parsimony) algorithm as imple...
<p>A Median Joining network was constructed using the same 13 Y-STR loci as <a href="http://www.plos...
<p>A = <i>B. lucorum</i>; B = <i>B. terrestris</i>; C = <i>B. vestalis</i>. The sizes of the circles...