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Sedimentary ancient DNA shows terrestrial plant richness continuously increased over the Holocene in northern Fennoscandia

Permanent lenke
https://hdl.handle.net/10037/22759
DOI
https://doi.org/10.1126/sciadv.abf9557
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article.pdf (3.281Mb)
Publisert versjon (PDF)
Dato
2021-07-30
Type
Journal article
Tidsskriftartikkel
Peer reviewed

Forfatter
Rijal, Dilli Prasad; Heintzman, Peter D.; Lammers, Youri; Yoccoz, Nigel; Lorberau, Kelsey; Pitelkova, Iva; Goslar, Tomasz; Murguzur, Francisco Javier Ancin; Salonen, J. Sakari; Helmens, Karin F.; Bakke, Jostein; Edwards, Mary E.; Alm, Torbjørn; Bråthen, Kari Anne; Brown, Antony; Alsos, Inger Greve
Sammendrag
The effects of climate change on species richness are debated but can be informed by the past. Here, we generated a sedimentary ancient DNA dataset covering 10 lakes and applied novel methods for data harmonization. We assessed the impact of Holocene climate changes and nutrients on terrestrial plant richness in northern Fennoscandia. We find that richness increased steeply during the rapidly warming Early Holocene. In contrast to findings from most pollen studies, we show that richness continued to increase thereafter, although the climate was stable, with richness and the regional species pool only stabilizing during the past three millennia. Furthermore, overall increases in richness were greater in catchments with higher soil nutrient availability. We suggest that richness will increase with ongoing warming, especially at localities with high nutrient availability and assuming that human activity remains low in the region, although lags of millennia may be expected.
Forlag
American Association for the Advancement of Science
Sitering
Rijal DP, Heintzman PD, Lammers Y, Yoccoz NG, Lorberau K, Pitelkova IH, Goslar T, Murguzur F, Salonen JS, Helmens KF, Bakke JB, Edwards ME, Alm T, Bråthen KA, Brown A, Alsos IGA. Sedimentary ancient DNA shows terrestrial plant richness continuously increased over the Holocene in northern Fennoscandia. Science Advances. 2021;7(31)
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Copyright 2021 The Author(s)

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