Copyright © 2003 American Association for the Advancement of ScienceGenetic analyses of permafrost and temperate sediments reveal that plant and animal DNA may be preserved for considerable time periods, even in the absence of obvious macrofossils. In Siberia, five permafrost cores ranging from 400-10 thousand years (kyr) contained at least 19 different plant taxa, including the oldest authenticated ancient DNA sequences known, and megafaunal sequences including mammoth, bison, and horse. The genetic data record a number of dramatic changes in the taxonomic diversity and composition of Beringian vegetation and fauna. Temperate cave sediments in New Zealand also yielded DNA sequences of extinct biota, including two species of ratite moa, and...
DNA sequencing of ancient permafrost samples can be used to reconstruct past plant, animal and bacte...
Ancient DNA recovered from Pleistocene sediments represents a rich resource for the study of past ho...
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...
Abstract in Undetermined Although ancient DNA from sediments (sedaDNA) has been used to investigate ...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Item does not contain fulltextThe study of faecal samples to reconstruct the diets and habitats of e...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Sedimentary ancient DNA is becoming more widely used in paleoeocology, as methods for sampling of se...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Paleoenvironmental reconstructions help us to track vegetation responses to climatic changes, and ca...
DNA sequencing of ancient permafrost samples can be used to reconstruct past plant, animal and bacte...
Ancient DNA recovered from Pleistocene sediments represents a rich resource for the study of past ho...
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...
Abstract in Undetermined Although ancient DNA from sediments (sedaDNA) has been used to investigate ...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Item does not contain fulltextThe study of faecal samples to reconstruct the diets and habitats of e...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Sedimentary ancient DNA is becoming more widely used in paleoeocology, as methods for sampling of se...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
The study of faecal samples to reconstruct the diets and habitats of extinct megafauna has tradition...
Paleoenvironmental reconstructions help us to track vegetation responses to climatic changes, and ca...
DNA sequencing of ancient permafrost samples can be used to reconstruct past plant, animal and bacte...
Ancient DNA recovered from Pleistocene sediments represents a rich resource for the study of past ho...
During the last glacial–interglacial cycle, Arctic biotas experienced substantial climatic changes, ...