Summary • The internal transcribed spacer (ITS) of the nuclear ribosomal DNA region is a widely used species marker for plants and fungi. Recent metagenomic studies using next-generation sequencing, however, generate only partial ITS sequences. Here we compare the performance of partial and full-length ITS sequences with several classification methods. • We compiled a full-length ITS data set and created short fragments to simulate the read lengths commonly recovered from current next-generation sequencing platforms. We compared recovery, erroneous recovery, and coverage for the following methods: best BLAST hit classification, MEGAN classification, and automated phylogenetic assignment using the Statistical Assignment Program (SAP). • We f...
Most current approach to metagenomic classification employ short next generation sequencing (NGS) re...
The internal transcribed spacer 2 (ITS2) has been used as a phylogenetic marker for more than two de...
The advent of new high-throughput DNA-sequencing technologies promises to redefine the way in which ...
Metagenomics is providing an unprecedented access to the environmental microbial diversity. The ampl...
The nuclear ribosomal DNA internal transcribed spacer (ITS) has been widely used to assess the funga...
The nuclear ribosomal Internal Transcribed Spacer ITS region is widely used as a DNA metabarcoding m...
1. The internal transcribed spacer (ITS) is used often in DNA metabarcoding of fungi. One disadvanta...
The nuclear ribosomal DNA internal transcribed spacer (ITS) has been widely used to assess the funga...
Metagenomics is providing an unprecedented access to the environmental microbial diversity. The ampl...
A DNA barcode is a short piece of DNA sequence used for species determination and discovery. The int...
The nuclear ribosomal internal transcribed spacer (ITS) region is the primary choice for molecular i...
<p>Background<br> The internal transcribed spacer 2 (ITS2) is a well-established marker for DNA barc...
Molecular-based taxonomy, specifically DNA barcoding, has streamlined organism identification. For l...
Nuclear large subunit ribosomal DNA is widely used in fungal phylogenetics and to an increasing exte...
Nuclear large subunit ribosomal DNA is widely used in fungal phylogenetics and to an increasing exte...
Most current approach to metagenomic classification employ short next generation sequencing (NGS) re...
The internal transcribed spacer 2 (ITS2) has been used as a phylogenetic marker for more than two de...
The advent of new high-throughput DNA-sequencing technologies promises to redefine the way in which ...
Metagenomics is providing an unprecedented access to the environmental microbial diversity. The ampl...
The nuclear ribosomal DNA internal transcribed spacer (ITS) has been widely used to assess the funga...
The nuclear ribosomal Internal Transcribed Spacer ITS region is widely used as a DNA metabarcoding m...
1. The internal transcribed spacer (ITS) is used often in DNA metabarcoding of fungi. One disadvanta...
The nuclear ribosomal DNA internal transcribed spacer (ITS) has been widely used to assess the funga...
Metagenomics is providing an unprecedented access to the environmental microbial diversity. The ampl...
A DNA barcode is a short piece of DNA sequence used for species determination and discovery. The int...
The nuclear ribosomal internal transcribed spacer (ITS) region is the primary choice for molecular i...
<p>Background<br> The internal transcribed spacer 2 (ITS2) is a well-established marker for DNA barc...
Molecular-based taxonomy, specifically DNA barcoding, has streamlined organism identification. For l...
Nuclear large subunit ribosomal DNA is widely used in fungal phylogenetics and to an increasing exte...
Nuclear large subunit ribosomal DNA is widely used in fungal phylogenetics and to an increasing exte...
Most current approach to metagenomic classification employ short next generation sequencing (NGS) re...
The internal transcribed spacer 2 (ITS2) has been used as a phylogenetic marker for more than two de...
The advent of new high-throughput DNA-sequencing technologies promises to redefine the way in which ...