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Ancient environmental DNA reveals shifts in dominant mutualisms during the late Quaternary
by
Davison, John
, Edwards, Mary E.
, Coissac, Eric
, Moora, Mari
, Taberlet, Pierre
, Willerslev, Eske
, Zobel, Martin
, Brochmann, Christian
in
49/22
/ 49/23
/ 631/158/852
/ 704/106/413
/ 704/158/2165
/ 704/158/670
/ 704/158/853
/ Altitude
/ Arbuscular mycorrhizas
/ Biological Evolution
/ Carbon Cycle - physiology
/ Carbon Dioxide - chemistry
/ Carbon Dioxide - metabolism
/ Climate
/ Climate change
/ Decoupling
/ Deoxyribonucleic acid
/ DNA
/ DNA, Ancient - analysis
/ Ecosystem
/ Ectomycorrhizas
/ Environment
/ Environmental conditions
/ Environmental DNA
/ Flowers & plants
/ Heterotrophic organisms
/ History, Ancient
/ Holocene
/ Humanities and Social Sciences
/ multidisciplinary
/ Museums
/ Mycorrhizae - classification
/ Mycorrhizae - genetics
/ Nitrogen
/ Nitrogen - chemistry
/ Nitrogen - metabolism
/ Nitrogen Fixation - physiology
/ Plant communities
/ Plant reproduction
/ Plants - classification
/ Plants - genetics
/ Pollination - physiology
/ Quaternary
/ Radiometric Dating
/ Representations
/ Science
/ Science (multidisciplinary)
/ Symbiosis
/ Taiga & tundra
/ Taxonomy
/ Variation
/ Vegetation
2018
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Ancient environmental DNA reveals shifts in dominant mutualisms during the late Quaternary
by
Davison, John
, Edwards, Mary E.
, Coissac, Eric
, Moora, Mari
, Taberlet, Pierre
, Willerslev, Eske
, Zobel, Martin
, Brochmann, Christian
in
49/22
/ 49/23
/ 631/158/852
/ 704/106/413
/ 704/158/2165
/ 704/158/670
/ 704/158/853
/ Altitude
/ Arbuscular mycorrhizas
/ Biological Evolution
/ Carbon Cycle - physiology
/ Carbon Dioxide - chemistry
/ Carbon Dioxide - metabolism
/ Climate
/ Climate change
/ Decoupling
/ Deoxyribonucleic acid
/ DNA
/ DNA, Ancient - analysis
/ Ecosystem
/ Ectomycorrhizas
/ Environment
/ Environmental conditions
/ Environmental DNA
/ Flowers & plants
/ Heterotrophic organisms
/ History, Ancient
/ Holocene
/ Humanities and Social Sciences
/ multidisciplinary
/ Museums
/ Mycorrhizae - classification
/ Mycorrhizae - genetics
/ Nitrogen
/ Nitrogen - chemistry
/ Nitrogen - metabolism
/ Nitrogen Fixation - physiology
/ Plant communities
/ Plant reproduction
/ Plants - classification
/ Plants - genetics
/ Pollination - physiology
/ Quaternary
/ Radiometric Dating
/ Representations
/ Science
/ Science (multidisciplinary)
/ Symbiosis
/ Taiga & tundra
/ Taxonomy
/ Variation
/ Vegetation
2018
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Ancient environmental DNA reveals shifts in dominant mutualisms during the late Quaternary
by
Davison, John
, Edwards, Mary E.
, Coissac, Eric
, Moora, Mari
, Taberlet, Pierre
, Willerslev, Eske
, Zobel, Martin
, Brochmann, Christian
in
49/22
/ 49/23
/ 631/158/852
/ 704/106/413
/ 704/158/2165
/ 704/158/670
/ 704/158/853
/ Altitude
/ Arbuscular mycorrhizas
/ Biological Evolution
/ Carbon Cycle - physiology
/ Carbon Dioxide - chemistry
/ Carbon Dioxide - metabolism
/ Climate
/ Climate change
/ Decoupling
/ Deoxyribonucleic acid
/ DNA
/ DNA, Ancient - analysis
/ Ecosystem
/ Ectomycorrhizas
/ Environment
/ Environmental conditions
/ Environmental DNA
/ Flowers & plants
/ Heterotrophic organisms
/ History, Ancient
/ Holocene
/ Humanities and Social Sciences
/ multidisciplinary
/ Museums
/ Mycorrhizae - classification
/ Mycorrhizae - genetics
/ Nitrogen
/ Nitrogen - chemistry
/ Nitrogen - metabolism
/ Nitrogen Fixation - physiology
/ Plant communities
/ Plant reproduction
/ Plants - classification
/ Plants - genetics
/ Pollination - physiology
/ Quaternary
/ Radiometric Dating
/ Representations
/ Science
/ Science (multidisciplinary)
/ Symbiosis
/ Taiga & tundra
/ Taxonomy
/ Variation
/ Vegetation
2018
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Ancient environmental DNA reveals shifts in dominant mutualisms during the late Quaternary
Journal Article
Ancient environmental DNA reveals shifts in dominant mutualisms during the late Quaternary
2018
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Overview
DNA-based snapshots of ancient vegetation have shown that the composition of high-latitude plant communities changed considerably during the late Quaternary. However, parallel changes in biotic interactions remain largely uninvestigated. Here we show how mutualisms involving plants and heterotrophic organisms varied during the last 50,000 years. During 50–25 ka BP, a cool period featuring stadial-interstadial fluctuations, arbuscular mycorrhizal and non-N-fixing plants predominated. During 25-15 ka BP, a cold, dry interval, the representation of ectomycorrhizal, non-mycorrhizal and facultatively mycorrhizal plants increased, while that of N-fixing plants decreased further. From 15 ka BP, which marks the transition to and establishment of the Holocene interglaciation, representation of arbuscular mycorrhizal plants decreased further, while that of ectomycorrhizal, non-mycorrhizal, N-fixing and wind-pollinated plants increased. These changes in the mutualist trait structure of vegetation may reflect responses to historical environmental conditions that are without current analogue, or biogeographic processes, such as spatial decoupling of mutualist partners.
Recently, an eDNA metabarcoding data set was used to describe northern high-latitude vegetation during the past 50,000 years. Here, Zobel et al. use the data set to examine how the abundance of key plant mutualistic traits changed during this period and discuss possible environmental drivers.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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