Background: Microorganisms are not only indispensable to ecosystem functioning, they are also keystones for emerging technologies. In the last 15 years, the number of studies on environmental microbial communities has increased exponentially due to advances in sequencing technologies, but the large amount of data generated remains difficult to analyze and interpret. Recently, metabarcoding analysis has shifted from clustering reads using Operational Taxonomical Units (OTUs) to Amplicon Sequence Variants (ASVs). Differences between these methods can seriously affect the biological interpretation of metabarcoding data, especially in ecosystems with high microbial diversity, as the methods are benchmarked based on low diversity datasets. Resu...
Background: Soil ecosystems harbor the most complex prokaryotic and eukaryotic microbial communities...
An increasing number of studies use next generation sequencing (NGS) to analyze complex communities,...
The development of high-throughput sequencing technologies has revolutionised the field of microbial...
Motivation: Metagenomic and metabarcoding analyses of microbial populations present in agricultural ...
Microorganisms numerically dominate terrestrial biodiversity, and play important biochemical and geo...
The emergence of high-throughput DNA sequencing methods provides unprecedented opportunities to furt...
To thoroughly investigate the bacterial community diversity present in a single composite sample fro...
Microbial metabarcoding is the standard approach to assess communities' diversity. However reports a...
Long amplicon metabarcoding has opened the door for phylogenetic analysis of the largely unknown com...
Soil-borne microbes are major ecological players in terrestrial environments since they cycle organi...
Understanding microbial ecology through amplifying short read regions, typically 16S rRNA for prokar...
The large efforts to document and map aboveground biodiversity have helped to elucidate ecological a...
Background The interplay between hosts and their associated microbiome is now recognized as a fundam...
AbstractSoils encompass a huge diversity of organisms which mostly remains to be characterized due t...
Metabarcoding approaches are exponentially increasing our understanding of soil biodiversity, with a...
Background: Soil ecosystems harbor the most complex prokaryotic and eukaryotic microbial communities...
An increasing number of studies use next generation sequencing (NGS) to analyze complex communities,...
The development of high-throughput sequencing technologies has revolutionised the field of microbial...
Motivation: Metagenomic and metabarcoding analyses of microbial populations present in agricultural ...
Microorganisms numerically dominate terrestrial biodiversity, and play important biochemical and geo...
The emergence of high-throughput DNA sequencing methods provides unprecedented opportunities to furt...
To thoroughly investigate the bacterial community diversity present in a single composite sample fro...
Microbial metabarcoding is the standard approach to assess communities' diversity. However reports a...
Long amplicon metabarcoding has opened the door for phylogenetic analysis of the largely unknown com...
Soil-borne microbes are major ecological players in terrestrial environments since they cycle organi...
Understanding microbial ecology through amplifying short read regions, typically 16S rRNA for prokar...
The large efforts to document and map aboveground biodiversity have helped to elucidate ecological a...
Background The interplay between hosts and their associated microbiome is now recognized as a fundam...
AbstractSoils encompass a huge diversity of organisms which mostly remains to be characterized due t...
Metabarcoding approaches are exponentially increasing our understanding of soil biodiversity, with a...
Background: Soil ecosystems harbor the most complex prokaryotic and eukaryotic microbial communities...
An increasing number of studies use next generation sequencing (NGS) to analyze complex communities,...
The development of high-throughput sequencing technologies has revolutionised the field of microbial...