Characterization of microbial assemblages via environmental DNA metabarcoding is increasingly being used in routine monitoring programs due to its sensitivity and cost-effectiveness. Several programs have recently been developed which infer functional profiles from 16S rRNA gene data using hidden-state prediction (HSP) algorithms. These might offer an economic and scalable alternative to shotgun metagenomics. To date, HSP-based methods have seen limited use for benthic marine surveys and their performance in these environments remains unevaluated. In this study, 16S rRNA metabarcoding was applied to sediment samples collected at 0 and ≥1,200 m from Norwegian salmon farms, and three metabolic inference approaches (Paprica, Picrust2 and Tax4F...
The ability to properly identify species present in a landscape is foundational to ecology and essen...
There is urgent need for effective and efficient monitoring of marine fish populations. Monitoring e...
Metabarcoding analyses of bacterial and eukaryotic communities have been proposed as efficient tools...
Characterization of microbial assemblages via environmental DNA metabarcoding is increasingly being ...
The measurement of species diversity represents a powerful tool for assessing the impacts of human a...
International audienceThe rapid growth of the salmon industry necessitates the development of fast a...
International audienceEnvironmental diversity surveys are crucial for the bioassessment of anthropog...
With an increasing demand for finfish from aquaculture, the importance of monitoring the impact of a...
The analysis of benthic bacterial community structure has emerged as a powerful alternative to tradi...
Robust assessments of taxonomic and functional diversity are essential components of research progra...
Environmental DNA (eDNA) metabarcoding is a relatively new monitoring tool featuring in an increasin...
Environmental DNA (eDNA) metabarcoding is a method to detect taxa from environmental samples. It is ...
Salmon aquaculture is one of the fastest growing food sectors in the world. Because aquaculture can ...
Traditionally, the biological quality of aquatic ecosystems is assessed using selected groups of org...
わずか1日の調査で魚種の8割を検出 : 海水からのDNA解析法で. 京都大学プレスリリース. 2017-01-13.Environmental DNA (eDNA) metabarcoding has...
The ability to properly identify species present in a landscape is foundational to ecology and essen...
There is urgent need for effective and efficient monitoring of marine fish populations. Monitoring e...
Metabarcoding analyses of bacterial and eukaryotic communities have been proposed as efficient tools...
Characterization of microbial assemblages via environmental DNA metabarcoding is increasingly being ...
The measurement of species diversity represents a powerful tool for assessing the impacts of human a...
International audienceThe rapid growth of the salmon industry necessitates the development of fast a...
International audienceEnvironmental diversity surveys are crucial for the bioassessment of anthropog...
With an increasing demand for finfish from aquaculture, the importance of monitoring the impact of a...
The analysis of benthic bacterial community structure has emerged as a powerful alternative to tradi...
Robust assessments of taxonomic and functional diversity are essential components of research progra...
Environmental DNA (eDNA) metabarcoding is a relatively new monitoring tool featuring in an increasin...
Environmental DNA (eDNA) metabarcoding is a method to detect taxa from environmental samples. It is ...
Salmon aquaculture is one of the fastest growing food sectors in the world. Because aquaculture can ...
Traditionally, the biological quality of aquatic ecosystems is assessed using selected groups of org...
わずか1日の調査で魚種の8割を検出 : 海水からのDNA解析法で. 京都大学プレスリリース. 2017-01-13.Environmental DNA (eDNA) metabarcoding has...
The ability to properly identify species present in a landscape is foundational to ecology and essen...
There is urgent need for effective and efficient monitoring of marine fish populations. Monitoring e...
Metabarcoding analyses of bacterial and eukaryotic communities have been proposed as efficient tools...