DNA metabarcoding is increasingly used for the assessment of aquatic communities, and numerous studies have investigated the consistency of this technique with traditional morpho-taxonomic approaches. These individual studies have used DNA metabarcoding to assess diversity and community structure of aquatic organisms both in marine and freshwater systems globally over the last decade. However, a systematic analysis of the comparability and effectiveness of DNA-based community assessment across all of these studies has hitherto been lacking. Here, we performed the first meta-analysis of available studies comparing traditional methods and DNA metabarcoding to measure and assess biological diversity of key aquatic groups, including plankton, m...
Metabarcoding of environmental DNA (eDNA) is a powerful tool for describing biodiversity, such as fi...
Understanding biodiversity in aquatic systems is critical to ecological research and conservation ef...
Characterisation of freshwater benthic biodiversity using DNA metabarcoding may allow more cost-effe...
DNA metabarcoding is increasingly used for the assessment of aquatic communities, and numerous studi...
Despite the increasing popularity of DNA metabarcoding in the assessment of aquatic ecosystems using...
The sampling of environmental DNA (eDNA) coupled with cost-efficient and ever-advancing sequencing t...
Assessments of fish communities tend to rely on capture-based methods that, due to sampling biases, ...
The ability to properly identify species present in a landscape is foundational to ecology and essen...
Species richness is a metric of biodiversity that represents the number of species present in a comm...
Organisms continuously release DNA into their environments via shed cells, excreta, gametes and deca...
The bioassessment of aquatic ecosystems is currently based on various biotic indices that use the oc...
Environmental DNA (eDNA) metabarcoding has been increasingly applied to biodiversity surveys in stre...
Traditionally, the biological quality of aquatic ecosystems is assessed using selected groups of org...
DNA-based aquatic biomonitoring methods show promise to provide rapid, standardized, and efficient b...
The Supplementary Material for this article can be found online at: https://www.frontiersin.org/arti...
Metabarcoding of environmental DNA (eDNA) is a powerful tool for describing biodiversity, such as fi...
Understanding biodiversity in aquatic systems is critical to ecological research and conservation ef...
Characterisation of freshwater benthic biodiversity using DNA metabarcoding may allow more cost-effe...
DNA metabarcoding is increasingly used for the assessment of aquatic communities, and numerous studi...
Despite the increasing popularity of DNA metabarcoding in the assessment of aquatic ecosystems using...
The sampling of environmental DNA (eDNA) coupled with cost-efficient and ever-advancing sequencing t...
Assessments of fish communities tend to rely on capture-based methods that, due to sampling biases, ...
The ability to properly identify species present in a landscape is foundational to ecology and essen...
Species richness is a metric of biodiversity that represents the number of species present in a comm...
Organisms continuously release DNA into their environments via shed cells, excreta, gametes and deca...
The bioassessment of aquatic ecosystems is currently based on various biotic indices that use the oc...
Environmental DNA (eDNA) metabarcoding has been increasingly applied to biodiversity surveys in stre...
Traditionally, the biological quality of aquatic ecosystems is assessed using selected groups of org...
DNA-based aquatic biomonitoring methods show promise to provide rapid, standardized, and efficient b...
The Supplementary Material for this article can be found online at: https://www.frontiersin.org/arti...
Metabarcoding of environmental DNA (eDNA) is a powerful tool for describing biodiversity, such as fi...
Understanding biodiversity in aquatic systems is critical to ecological research and conservation ef...
Characterisation of freshwater benthic biodiversity using DNA metabarcoding may allow more cost-effe...