<p>Graphs show accumulation of infectious DCV in flies with (grey bar) or without (white bar) <i>w</i>Au (<b>A</b>), <i>w</i>Ri (<b>B</b>), <i>w</i>Ha (<b>C</b>), and <i>w</i>No (<b>D</b>). Bars represent means from two replicates with SEM shown, and * indicates a significant difference between the means of day 2 samples (p<0.05, unpaired t test).</p
<p>Mean normalised DCV:<i>CycK</i> expression ratios (median ± interquartile range) for <i>w</i>MelP...
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
<p>Dots indicate mean value of the traits for each <i>Wolbachia</i> strain. Error bars are standard ...
<p>(<b>A</b>) Graph shows survival of flies infected with DCV (black line) or mock infected (grey li...
<p>Graphs show survival of flies infected by <i>w</i>Au (<b>A</b>), <i>w</i>Ri (<b>B</b>), <i>w</i>H...
<p>(A–B) Relative viral titer in (A) DCV- and (B) FHV-infected flies. Relative titers are normalised...
<p>For each fly line the graph shows the relative abundance of <i>Wolbachia</i> to host genomic DNA ...
Columns indicate the selection treatment, the Wolbachia infection status, the tetracycline treatment...
<p>(A) The phylogeny is based on the sequence of the MLST genes <i>16S rRNA</i>, <i>aspC</i>, <i>atp...
Drosophila C virus (DCV) is a natural pathogen of Drosophila and a useful model for studying antivir...
<p>Flies were either infected with (A) DCV, (B) FHV or (C) mock-infected with Ringer's solution.</p
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
<p>Bacterial loads in flies from both control populations (grey bars) and populations evolving in pr...
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
Drosophila C virus (DCV) is a natural pathogen of Drosophila and a useful model for studying antivir...
<p>Mean normalised DCV:<i>CycK</i> expression ratios (median ± interquartile range) for <i>w</i>MelP...
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
<p>Dots indicate mean value of the traits for each <i>Wolbachia</i> strain. Error bars are standard ...
<p>(<b>A</b>) Graph shows survival of flies infected with DCV (black line) or mock infected (grey li...
<p>Graphs show survival of flies infected by <i>w</i>Au (<b>A</b>), <i>w</i>Ri (<b>B</b>), <i>w</i>H...
<p>(A–B) Relative viral titer in (A) DCV- and (B) FHV-infected flies. Relative titers are normalised...
<p>For each fly line the graph shows the relative abundance of <i>Wolbachia</i> to host genomic DNA ...
Columns indicate the selection treatment, the Wolbachia infection status, the tetracycline treatment...
<p>(A) The phylogeny is based on the sequence of the MLST genes <i>16S rRNA</i>, <i>aspC</i>, <i>atp...
Drosophila C virus (DCV) is a natural pathogen of Drosophila and a useful model for studying antivir...
<p>Flies were either infected with (A) DCV, (B) FHV or (C) mock-infected with Ringer's solution.</p
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
<p>Bacterial loads in flies from both control populations (grey bars) and populations evolving in pr...
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
Drosophila C virus (DCV) is a natural pathogen of Drosophila and a useful model for studying antivir...
<p>Mean normalised DCV:<i>CycK</i> expression ratios (median ± interquartile range) for <i>w</i>MelP...
The bacterial symbiont Wolbachia can protect insects against viral pathogens, and the varying levels...
<p>Dots indicate mean value of the traits for each <i>Wolbachia</i> strain. Error bars are standard ...