The development of high throughput sequencing techniques has allowed for greater investigations into environmental microbial communities in this thesis. Using the Illumina Solexa sequencing technology we investigated prokaryote communities in replicate soil samples from four soil types: both the organic and mineral layers of two UK forest sites, an oak stand and a Corsican pine stand. Prokaryote diversity was assessed using the 16S SSU rRNA encoding genes from DNA and rRNA (reverse transcribed to cDNA) extracted simultaneously from the same sample. From a total of > 4.5 million sequence reads, only 0.6 % of the reads overlapped between RNA and DNA samples. Marked differences were seen between the distribution of Phyla from RNA and DNA. The ...
Recent advances in molecular ecology have dramatically improved our knowledge of soil microbial dive...
A recent large-scale assessment of bacterial communities across a range of UK soil types showed that...
Protists are among the most diverse and abundant eukaryotes in soil. However, gaps between described...
The development of high throughput sequencing techniques has allowed for greater investigations into...
High-throughput sequencing (HTS) of soil environmental DNA (eDNA) allows assessing the full diversit...
Soil is one of the most important reservoirs of microbiological diversity on our planet and, above ...
Soil microbial metabolic potential and ecosystem function have received little attention owing to di...
Soil biogeochemistry domination by Bacteria has driven towards intensive studying of their diversity...
Recent studies have highlighted the surprising richness of soil bacterial communities; however, bact...
In order to overcome technical hurdles hindering progress in soil microbial ecology, this project i...
Soil microbial metabolic potential and ecosystem function have received little attention owing to di...
Metabarcoding approaches are exponentially increasing our understanding of soil biodiversity, with a...
In forest ecosystems, substantial part of carbon enters soil in the form of plant litter. The decomp...
Recent advances in molecular ecology have dramatically improved our knowledge of soil microbial dive...
A recent large-scale assessment of bacterial communities across a range of UK soil types showed that...
Protists are among the most diverse and abundant eukaryotes in soil. However, gaps between described...
The development of high throughput sequencing techniques has allowed for greater investigations into...
High-throughput sequencing (HTS) of soil environmental DNA (eDNA) allows assessing the full diversit...
Soil is one of the most important reservoirs of microbiological diversity on our planet and, above ...
Soil microbial metabolic potential and ecosystem function have received little attention owing to di...
Soil biogeochemistry domination by Bacteria has driven towards intensive studying of their diversity...
Recent studies have highlighted the surprising richness of soil bacterial communities; however, bact...
In order to overcome technical hurdles hindering progress in soil microbial ecology, this project i...
Soil microbial metabolic potential and ecosystem function have received little attention owing to di...
Metabarcoding approaches are exponentially increasing our understanding of soil biodiversity, with a...
In forest ecosystems, substantial part of carbon enters soil in the form of plant litter. The decomp...
Recent advances in molecular ecology have dramatically improved our knowledge of soil microbial dive...
A recent large-scale assessment of bacterial communities across a range of UK soil types showed that...
Protists are among the most diverse and abundant eukaryotes in soil. However, gaps between described...