Abstract Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystems, however, studies have been severely limited by the very low amounts of DNA preserved in the subseafloor, and the lack of bioinformatic tools to authenticate sedaDNA in metagenomic data. We applied a hybridisation capture ‘baits’ technique to target marine eukaryote sedaDNA (specifically, phyto- and zooplankton, ‘Planktonbaits1’; and harmful algal bloom taxa, ‘HABbaits1’), which resulted in up to 4- and 9-fold increases, respectively, in the relative abundance of eukaryotes compared to shotgun sequencing. We further used the bioinformatic tool ‘HOPS’ to authenticate the sedaDNA component, establishing a new proxy to assess sedaDNA authentic...
<div><p>Marine phytoplankton are highly diverse with different species possessing different cell cov...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
In search of new proxies to improve tsunami deposit identification, ancient DNA (aDNA) has recently ...
Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystems, howeve...
Sedimentary ancient DNA (sedaDNA) offers a novel approach to investigating past marine ecosystems—fr...
Studies incorporating sedimentary ancient DNA (sedaDNA) analyses to investigate paleo-environments h...
Studies incorporating sedimentary ancient DNA (sedaDNA) analyses to investigate paleo-environments h...
Marine sedimentary ancient DNA (sedaDNA) provides a powerful means to reconstruct marine palaeo‐comm...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
The majority of planktonic species, including those that are informative in the reconstructions of p...
International audienceStudies based on the coupling of a paleolimnological approach and molecular to...
<div><p>Marine phytoplankton are highly diverse with different species possessing different cell cov...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
In search of new proxies to improve tsunami deposit identification, ancient DNA (aDNA) has recently ...
Marine sedimentary ancient DNA (sedaDNA) is increasingly used to study past ocean ecosystems, howeve...
Sedimentary ancient DNA (sedaDNA) offers a novel approach to investigating past marine ecosystems—fr...
Studies incorporating sedimentary ancient DNA (sedaDNA) analyses to investigate paleo-environments h...
Studies incorporating sedimentary ancient DNA (sedaDNA) analyses to investigate paleo-environments h...
Marine sedimentary ancient DNA (sedaDNA) provides a powerful means to reconstruct marine palaeo‐comm...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
The majority of planktonic species, including those that are informative in the reconstructions of p...
International audienceStudies based on the coupling of a paleolimnological approach and molecular to...
<div><p>Marine phytoplankton are highly diverse with different species possessing different cell cov...
The study of ancient DNA (aDNA) from sediments (sedaDNA) offers great potential for paleoclimate int...
In search of new proxies to improve tsunami deposit identification, ancient DNA (aDNA) has recently ...