Adams, H.D., Zeppel, M.J.B., Anderegg, W.R.L. et al. (59 more authors) (2017) A multi-species synthesis of physiological mechanisms in drought-induced tree mortality. Nature Ecology and Evolution, 1 (9). pp. 1285-1291. ISSN 2397-334X
Abstract
Widespread tree mortality associated with drought 92 has been observed on all forested continents, and global change is expected to exacerbate vegetation vulnerability. Forest mortality has implications for future biosphere-atmosphere interactions of carbon, water, and energy balance, and is poorly represented in dynamic vegetation models. Reducing uncertainty requires improved mortality projections founded on robust physiological processes. However, the proposed mechanisms of drought-induced mortality, including hydraulic failure and carbon starvation, are unresolved. A growing number of empirical studies have investigated these mechanisms, but data have not been consistently analyzed across species and biomes using a standardized physiological framework. Here we show that xylem hydraulic failure was ubiquitous across multiple tree taxa at drought induced mortality. All species assessed had 60% or higher loss of xylem hydraulic conductivity, consistent with proposed theoretical and modelled survival thresholds. We found diverse responses in non-structural carbohydrate reserves at mortality, indicating that evidence supporting carbon starvation was not universal. Reduced non-structural carbohydrates were more common for gymnosperms than angiosperms, associated with xylem hydraulic vulnerability, and may have a role in reducing hydraulic function. Our finding that hydraulic failure at drought-induced mortality was persistent across species indicates that substantial improvement in vegetation modelling can be achieved using thresholds in hydraulic function.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | © 2017 Nature Publishing Group. This is an author produced version of a paper subsequently published in Nature Ecology and Evolution. Uploaded in accordance with the publisher's self-archiving policy. |
Keywords: | Climate-change ecology; Plant ecology |
Dates: |
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Institution: | The University of Sheffield |
Academic Units: | The University of Sheffield > Faculty of Science (Sheffield) > School of Biosciences (Sheffield) > Department of Animal and Plant Sciences (Sheffield) |
Funding Information: | Funder Grant number EUROPEAN RESEARCH COUNCIL CDREG - 322998 NATURAL ENVIRONMENT RESEARCH COUNCIL NE/E015190/1 |
Depositing User: | Symplectic Sheffield |
Date Deposited: | 23 Jun 2017 12:02 |
Last Modified: | 27 Oct 2023 11:48 |
Status: | Published |
Publisher: | Nature Publishing Group |
Refereed: | Yes |
Identification Number: | 10.1038/s41559-017-0248-x |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:118137 |