Deep-sea ecosystems present difficulties in surveying and continuous monitoring of the biodiversity of deep-sea ecosystems because of the logistical constraints, high cost, and limited opportunities for sampling. Environmental DNA (eDNA) metabarcoding analysis provides a useful method for estimating the biodiversity in aquatic ecosystems but has rarely been applied to the study of deep-sea fish communities. In this study, we utilized pumped deep-sea water for the continuous monitoring of deep-sea fish communities by eDNA metabarcoding. In order to develop an optimum method for continuous monitoring of deep-sea fish biodiversity by eDNA metabarcoding, we determined the appropriate amount of pumped deep-sea water to be filtered and the practi...
Environmental DNA (eDNA) metabarcoding is a relatively new methodology for the detection of organism...
Environmental DNA (eDNA) is the collective term for DNA molecules that are released from living or d...
Environmental (e)DNA methods (quantitative PCR and metabarcoding) are non-invasive, rapid and cost-e...
Deep-sea ecosystems present difficulties in surveying and continuous monitoring of the biodiversity ...
Deep-sea ecosystems present difficulties in surveying and continuous monitoring of the biodiversity ...
The deep sea (> 200 m) not only represents the largest habitat on earth, but also has the highest fa...
Environmental DNA (eDNA) is becoming a potentially valuable survey technique to monitor marine organ...
The analysis of environmental DNA (eDNA) using metabarcoding has increased in use as a method for tr...
Environmental DNA (eDNA) analysis is a revolutionary method to monitor marine biodiversity from anim...
Environmental DNA (eDNA) metabarcoding is a method to detect taxa from environmental samples. It is ...
Environmental DNA (eDNA) analysis has seen rapid development in the last decade, as a novel biodiver...
Mesopelagic fishes are an important component of the world’s oceans in terms of their abundance, bio...
Environmental DNA (eDNA) metabarcoding has emerged as a potentially powerful tool to assess aquatic ...
Fisheries management involves a broad and complex set of tasks that are necessary to prevent overfis...
Information on species composition and biomass/abundance of exploited species in coastal fisheries ...
Environmental DNA (eDNA) metabarcoding is a relatively new methodology for the detection of organism...
Environmental DNA (eDNA) is the collective term for DNA molecules that are released from living or d...
Environmental (e)DNA methods (quantitative PCR and metabarcoding) are non-invasive, rapid and cost-e...
Deep-sea ecosystems present difficulties in surveying and continuous monitoring of the biodiversity ...
Deep-sea ecosystems present difficulties in surveying and continuous monitoring of the biodiversity ...
The deep sea (> 200 m) not only represents the largest habitat on earth, but also has the highest fa...
Environmental DNA (eDNA) is becoming a potentially valuable survey technique to monitor marine organ...
The analysis of environmental DNA (eDNA) using metabarcoding has increased in use as a method for tr...
Environmental DNA (eDNA) analysis is a revolutionary method to monitor marine biodiversity from anim...
Environmental DNA (eDNA) metabarcoding is a method to detect taxa from environmental samples. It is ...
Environmental DNA (eDNA) analysis has seen rapid development in the last decade, as a novel biodiver...
Mesopelagic fishes are an important component of the world’s oceans in terms of their abundance, bio...
Environmental DNA (eDNA) metabarcoding has emerged as a potentially powerful tool to assess aquatic ...
Fisheries management involves a broad and complex set of tasks that are necessary to prevent overfis...
Information on species composition and biomass/abundance of exploited species in coastal fisheries ...
Environmental DNA (eDNA) metabarcoding is a relatively new methodology for the detection of organism...
Environmental DNA (eDNA) is the collective term for DNA molecules that are released from living or d...
Environmental (e)DNA methods (quantitative PCR and metabarcoding) are non-invasive, rapid and cost-e...