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Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America.

Journal articles  - Journal Article
Burke, KD; Williams, JW; Brewer, S; Finsinger, W; Giesecke, T; Lorenz, DJ; Ordonez, A
Published in: Philos Trans R Soc Lond B Biol Sci
December 23, 2019

Understanding the mechanisms of climate that produce novel ecosystems is of joint interest to conservation biologists and palaeoecologists. Here, we define and differentiate transient from accumulated novelty and evaluate four climatic mechanisms proposed to cause species to reshuffle into novel assemblages: high climatic novelty, high spatial rates of change (displacement), high variance among displacement rates for individual climate variables, and divergence among displacement vector bearings. We use climate simulations to quantify climate novelty, displacement and divergence across Europe and eastern North America from the last glacial maximum to the present, and fossil pollen records to quantify vegetation novelty. Transient climate novelty is consistently the strongest predictor of transient vegetation novelty, while displacement rates (mean and variance) are equally important in Europe. However, transient vegetation novelty is lower in Europe and its relationship to climatic predictors is the opposite of expectation. For both continents, accumulated novelty is greater than transient novelty, and climate novelty is the strongest predictor of accumulated ecological novelty. These results suggest that controls on novel ecosystems vary with timescale and among continents, and that the twenty-first century emergence of novelty will be driven by both rapid rates of climate change and the emergence of novel climate states. This article is part of a discussion meeting issue 'The past is a foreign country: how much can the fossil record actually inform conservation?'

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Published In

Philos Trans R Soc Lond B Biol Sci

DOI

EISSN

1471-2970

Publication Date

December 23, 2019

Volume

374

Issue

1788

Start / End Page

20190218

Location

England

Related Subject Headings

  • Pollen
  • Plant Dispersal
  • North America
  • Fossils
  • Evolutionary Biology
  • Europe
  • Climate Change
  • Climate
  • Biodiversity
  • 32 Biomedical and clinical sciences
 

Citation

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Burke, K. D., Williams, J. W., Brewer, S., Finsinger, W., Giesecke, T., Lorenz, D. J., & Ordonez, A. (2019). Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America. Philos Trans R Soc Lond B Biol Sci, 374(1788), 20190218. https://doi.org/10.1098/rstb.2019.0218
Burke, Kevin D., John W. Williams, Simon Brewer, Walter Finsinger, Thomas Giesecke, David J. Lorenz, and Alejandro Ordonez. “Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America.Philos Trans R Soc Lond B Biol Sci 374, no. 1788 (December 23, 2019): 20190218. https://doi.org/10.1098/rstb.2019.0218.
Burke KD, Williams JW, Brewer S, Finsinger W, Giesecke T, Lorenz DJ, et al. Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America. Philos Trans R Soc Lond B Biol Sci. 2019 Dec 23;374(1788):20190218.
Burke, Kevin D., et al. “Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America.Philos Trans R Soc Lond B Biol Sci, vol. 374, no. 1788, Dec. 2019, p. 20190218. Pubmed, doi:10.1098/rstb.2019.0218.
Burke KD, Williams JW, Brewer S, Finsinger W, Giesecke T, Lorenz DJ, Ordonez A. Differing climatic mechanisms control transient and accumulated vegetation novelty in Europe and eastern North America. Philos Trans R Soc Lond B Biol Sci. 2019 Dec 23;374(1788):20190218.
Journal cover image

Published In

Philos Trans R Soc Lond B Biol Sci

DOI

EISSN

1471-2970

Publication Date

December 23, 2019

Volume

374

Issue

1788

Start / End Page

20190218

Location

England

Related Subject Headings

  • Pollen
  • Plant Dispersal
  • North America
  • Fossils
  • Evolutionary Biology
  • Europe
  • Climate Change
  • Climate
  • Biodiversity
  • 32 Biomedical and clinical sciences