<p>Analyses are based on nucleotide sequences of five housekeeping genes, excluding sites with alignment gaps and/or missing data. L, sequence fragment length in base pairs; N<sub>i</sub>, Number of examined strains; P<sub>nsi</sub>, Pairwise nucleotide sequence identity (%); N<sub>a</sub>, number of alleles; P<sub>s</sub>, number of polymorphic sites; A<sub>d</sub>, allelic diversity; π, nucleotide diversity; D, average number of nucleotide differences between sequences.</p><p>Genetic estimates for 85 <i>Coxiella</i>-like strains and for 15 <i>Coxiella burnetii</i> reference strains.</p
<p><b><i>S</i></b>: number of polymorphic sites. <b><i>π</i></b>: nucleotide diversity. <b><i>k</i><...
<p>The frequency of base pair differences (relative genetic distance), averaged over partial sequenc...
<p>Scatter plot of change in coverage of each base pair position of RNA sequences from sample UCD6 t...
<p>55 <i>Coxiella burnetii</i> strains used in this study and SNPs within their respective 16S rRNA ...
The Coxiella burnetii strain NL3262 was isolated during the Q fever outbreak in the Netherlands in 2...
Coxiella burnetii is a human pathogen that causes the serious zoonotic disease Q fever. It is ubiqui...
<p>Percent identities between sequences of <i>Coxiella burnetii</i> 16S rRNA gene fragment are shown...
<p>(A) shows the ratios of singletons to doubletons observed in the X-QTL data and for different cla...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
The case rate of Q fever in Europe has increased dramatically in recent years, mainly because of an ...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
<div><p>The case rate of Q fever in Europe has increased dramatically in recent years, mainly becaus...
<p>Conc: concatenated sequences of seven loci.</p><p>S<sub>A</sub> = Subgroup A, S<sub>B</sub> = Sub...
Comparative genomic hybridizations (CGH) using microarrays are performed with bacteria in order to d...
<p><b><i>S</i></b>: number of polymorphic sites. <b><i>π</i></b>: nucleotide diversity. <b><i>k</i><...
<p>The frequency of base pair differences (relative genetic distance), averaged over partial sequenc...
<p>Scatter plot of change in coverage of each base pair position of RNA sequences from sample UCD6 t...
<p>55 <i>Coxiella burnetii</i> strains used in this study and SNPs within their respective 16S rRNA ...
The Coxiella burnetii strain NL3262 was isolated during the Q fever outbreak in the Netherlands in 2...
Coxiella burnetii is a human pathogen that causes the serious zoonotic disease Q fever. It is ubiqui...
<p>Percent identities between sequences of <i>Coxiella burnetii</i> 16S rRNA gene fragment are shown...
<p>(A) shows the ratios of singletons to doubletons observed in the X-QTL data and for different cla...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
The case rate of Q fever in Europe has increased dramatically in recent years, mainly because of an ...
Coxiella burnetii has the potential to cause serious disease and is highly prevalent in the environm...
<div><p>The case rate of Q fever in Europe has increased dramatically in recent years, mainly becaus...
<p>Conc: concatenated sequences of seven loci.</p><p>S<sub>A</sub> = Subgroup A, S<sub>B</sub> = Sub...
Comparative genomic hybridizations (CGH) using microarrays are performed with bacteria in order to d...
<p><b><i>S</i></b>: number of polymorphic sites. <b><i>π</i></b>: nucleotide diversity. <b><i>k</i><...
<p>The frequency of base pair differences (relative genetic distance), averaged over partial sequenc...
<p>Scatter plot of change in coverage of each base pair position of RNA sequences from sample UCD6 t...