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The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants.

Publication ,  Journal Article
Willis, CG; Baskin, CC; Baskin, JM; Auld, JR; Venable, DL; Cavender-Bares, J; Donohue, K; Rubio de Casas, R; NESCent Germination Working Group,
Published in: The New phytologist
July 2014

Seed dormancy, by controlling the timing of germination, can strongly affect plant survival. The kind of seed dormancy, therefore, can influence both population and species-level processes such as colonization, adaptation, speciation, and extinction. We used a dataset comprising over 14,000 taxa in 318 families across the seed plants to test hypotheses on the evolution of different kinds of seed dormancy and their association with lineage diversification. We found morphophysiological dormancy to be the most likely ancestral state of seed plants, suggesting that physiologically regulated dormancy in response to environmental cues was present at the origin of seed plants. Additionally, we found that physiological dormancy (PD), once disassociated from morphological dormancy, acted as an 'evolutionary hub' from which other dormancy classes evolved, and that it was associated with higher rates of lineage diversification via higher speciation rates. The environmental sensitivity provided by dormancy in general, and by PD in particular, appears to be a key trait in the diversification of seed plants.

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Published In

The New phytologist

DOI

EISSN

1469-8137

ISSN

1469-8137

Publication Date

July 2014

Volume

203

Issue

1

Start / End Page

300 / 309

Related Subject Headings

  • Seeds
  • Plants
  • Plant Dormancy
  • Plant Biology & Botany
  • Phylogeny
  • Environment
  • Biological Evolution
  • 4102 Ecological applications
  • 4101 Climate change impacts and adaptation
  • 3108 Plant biology
 

Citation

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MLA
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Willis, C. G., Baskin, C. C., Baskin, J. M., Auld, J. R., Venable, D. L., Cavender-Bares, J., … NESCent Germination Working Group, . (2014). The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants. The New Phytologist, 203(1), 300–309. https://doi.org/10.1111/nph.12782
Willis, Charles G., Carol C. Baskin, Jerry M. Baskin, Josh R. Auld, D Lawrence Venable, Jeannine Cavender-Bares, Kathleen Donohue, Rafael Rubio de Casas, and Rafael NESCent Germination Working Group. “The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants.The New Phytologist 203, no. 1 (July 2014): 300–309. https://doi.org/10.1111/nph.12782.
Willis CG, Baskin CC, Baskin JM, Auld JR, Venable DL, Cavender-Bares J, et al. The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants. The New phytologist. 2014 Jul;203(1):300–9.
Willis, Charles G., et al. “The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants.The New Phytologist, vol. 203, no. 1, July 2014, pp. 300–09. Epmc, doi:10.1111/nph.12782.
Willis CG, Baskin CC, Baskin JM, Auld JR, Venable DL, Cavender-Bares J, Donohue K, Rubio de Casas R, NESCent Germination Working Group. The evolution of seed dormancy: environmental cues, evolutionary hubs, and diversification of the seed plants. The New phytologist. 2014 Jul;203(1):300–309.
Journal cover image

Published In

The New phytologist

DOI

EISSN

1469-8137

ISSN

1469-8137

Publication Date

July 2014

Volume

203

Issue

1

Start / End Page

300 / 309

Related Subject Headings

  • Seeds
  • Plants
  • Plant Dormancy
  • Plant Biology & Botany
  • Phylogeny
  • Environment
  • Biological Evolution
  • 4102 Ecological applications
  • 4101 Climate change impacts and adaptation
  • 3108 Plant biology