<p><strong>Figure 5.</strong> Diversity of prokaryotic phyla in the samples selected for pyrosequencing, expressed as a proportion of the total sequences. Eubacterial phyla accounting for less than 0.5% of the sequences were pooled into 'others'.</p> <p><strong>Abstract</strong></p> <p>The aggregation of surface debris particles on melting glaciers into larger units (cryoconite) provides microenvironments for various microorganisms and metabolic processes. Here we investigate the microbial community on the surface of Aldegondabreen, a valley glacier in Svalbard which is supplied with carbon and nutrients from different sources across its surface, including colonies of seabirds. We used a combination of geochemical analysis (of surface debri...
The microbial communities and photosynthetic capacity of cryoconite holes on the Midre Lovénbreen Gl...
The diversity of highly active bacterial communities in cryoconite holes on three Arctic glaciers in...
Cryoconite holes are foci of unusually high microbial diversity and activity on glacier surfaces wor...
<p><b>Table 5.</b> Sequencing depth and diversity and dominance indices for the sele...
<p><strong>Figure 6.</strong> Phylogenetic analysis of the nitrososphaeraceae sequences identified i...
<p><strong>Figure 2.</strong> Histogram of aggregate diameters at transect A, site A2.</p> <p><stron...
<p><b>Table 1.</b> Primer sets used for qPCR of 16S rRNA and <em>amoA</em> genes ...
<p><b>Table 4.</b> Abundances of the 16S rRNA gene and bacterial and archaeal <em>am...
<p><strong>Figure 4.</strong> RDA triplot showing the effects of environmental variables (dashed arr...
<p><strong>Figure 1.</strong> (A) Aldegondabreen in Grønfjorden, the study site in Svalbard. (B) Loc...
<p><b>Table 3.</b> Nutrient concentrations in cryoconite sediment, supraglacial melt...
<p><strong>Figure 3.</strong> RDA biplot visualizing the effects of physical environmental variables...
Algae are important primary colonizers of snow and glacial ice, but hitherto little is known about t...
<p><strong>Figure 3.</strong> Class level assignment of contigs (<em>e</em> ≤ 1 <b>×</b> 10<sup>−5</...
<p><strong>Figure 1.</strong> (A) Study location with cryoconite holes numbered. (B) Rotmoosferner's...
The microbial communities and photosynthetic capacity of cryoconite holes on the Midre Lovénbreen Gl...
The diversity of highly active bacterial communities in cryoconite holes on three Arctic glaciers in...
Cryoconite holes are foci of unusually high microbial diversity and activity on glacier surfaces wor...
<p><b>Table 5.</b> Sequencing depth and diversity and dominance indices for the sele...
<p><strong>Figure 6.</strong> Phylogenetic analysis of the nitrososphaeraceae sequences identified i...
<p><strong>Figure 2.</strong> Histogram of aggregate diameters at transect A, site A2.</p> <p><stron...
<p><b>Table 1.</b> Primer sets used for qPCR of 16S rRNA and <em>amoA</em> genes ...
<p><b>Table 4.</b> Abundances of the 16S rRNA gene and bacterial and archaeal <em>am...
<p><strong>Figure 4.</strong> RDA triplot showing the effects of environmental variables (dashed arr...
<p><strong>Figure 1.</strong> (A) Aldegondabreen in Grønfjorden, the study site in Svalbard. (B) Loc...
<p><b>Table 3.</b> Nutrient concentrations in cryoconite sediment, supraglacial melt...
<p><strong>Figure 3.</strong> RDA biplot visualizing the effects of physical environmental variables...
Algae are important primary colonizers of snow and glacial ice, but hitherto little is known about t...
<p><strong>Figure 3.</strong> Class level assignment of contigs (<em>e</em> ≤ 1 <b>×</b> 10<sup>−5</...
<p><strong>Figure 1.</strong> (A) Study location with cryoconite holes numbered. (B) Rotmoosferner's...
The microbial communities and photosynthetic capacity of cryoconite holes on the Midre Lovénbreen Gl...
The diversity of highly active bacterial communities in cryoconite holes on three Arctic glaciers in...
Cryoconite holes are foci of unusually high microbial diversity and activity on glacier surfaces wor...