Abstract in Undetermined Although ancient DNA from sediments (sedaDNA) has been used to investigate past ecosystems, the approach has never been directly compared with the traditional methods of pollen and macrofossil analysis. We conducted a comparative survey of 18 ancient permafrost samples spanning the Late Pleistocene (4612.5 thousand years ago), from the Taymyr Peninsula in northern Siberia. The results show that pollen, macrofossils and sedaDNA are complementary rather than overlapping and, in combination, reveal more detailed information on plant palaeocommunities than can be achieved by each individual approach. SedaDNA and macrofossils share greater overlap in plant identifications than with pollen, suggesting that sedaDNA is loca...
Plant macrofossils from the Mamontovy Khayata permafrost sequence on the Bykovsky Peninsula reflect ...
With the ongoing Arctic warming, permafrost thaw accelerated during the last decade as much as it i...
During the last glacial–interglacial cycle, Arctic biotas experienced substantial climatic changes, ...
Although ancient DNA from sediments (sedaDNA) has been used to investigate past ecosystems, the appr...
Although ancient DNA from sediments (sedaDNA) has been used to investigate past ecosystems, the appr...
Paleoenvironmental reconstructions help us to track vegetation responses to climatic changes, and ca...
A 24,000-year record of plant community dynamics, based on pollen and ancient DNA from the sediments...
Organic matter deposited in ancient, ice-rich permafrost sediments is vulnerable to climate change a...
Ice-rich permafrost deposits store large quantities of plant organic matter and are highly sensitive...
Although sedimentary ancient DNA (sedaDNA) has been increasingly used to study paleoecological dynam...
Organic matter deposited in ancient, ice-rich permafrost sediments is vulnerable to climate change a...
Relationships between climate, species composition, and species richness are of particular importanc...
Copyright © 2003 American Association for the Advancement of ScienceGenetic analyses of permafrost a...
Abstract in UndeterminedThe sedimentary ancient DNA (sedaDNA) technique offers a potentially invalua...
© 2018 Elsevier Ltd Based on fossil organism remains including plant macrofossils, charcoal, pollen,...
Plant macrofossils from the Mamontovy Khayata permafrost sequence on the Bykovsky Peninsula reflect ...
With the ongoing Arctic warming, permafrost thaw accelerated during the last decade as much as it i...
During the last glacial–interglacial cycle, Arctic biotas experienced substantial climatic changes, ...
Although ancient DNA from sediments (sedaDNA) has been used to investigate past ecosystems, the appr...
Although ancient DNA from sediments (sedaDNA) has been used to investigate past ecosystems, the appr...
Paleoenvironmental reconstructions help us to track vegetation responses to climatic changes, and ca...
A 24,000-year record of plant community dynamics, based on pollen and ancient DNA from the sediments...
Organic matter deposited in ancient, ice-rich permafrost sediments is vulnerable to climate change a...
Ice-rich permafrost deposits store large quantities of plant organic matter and are highly sensitive...
Although sedimentary ancient DNA (sedaDNA) has been increasingly used to study paleoecological dynam...
Organic matter deposited in ancient, ice-rich permafrost sediments is vulnerable to climate change a...
Relationships between climate, species composition, and species richness are of particular importanc...
Copyright © 2003 American Association for the Advancement of ScienceGenetic analyses of permafrost a...
Abstract in UndeterminedThe sedimentary ancient DNA (sedaDNA) technique offers a potentially invalua...
© 2018 Elsevier Ltd Based on fossil organism remains including plant macrofossils, charcoal, pollen,...
Plant macrofossils from the Mamontovy Khayata permafrost sequence on the Bykovsky Peninsula reflect ...
With the ongoing Arctic warming, permafrost thaw accelerated during the last decade as much as it i...
During the last glacial–interglacial cycle, Arctic biotas experienced substantial climatic changes, ...