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Beyond leaf habit: generalities in plant function across 97 tropical dry forest tree species

Citation

Vargas G, G and Brodribb, TJ and Dupuy, JM and Gonzalez-M, R and Hulshof, CM and Medvigy, D and Allerton, TAP and Pizano, C and Salgado-Negret, B and Schwartz, NB and Van Bloem, SJ and Waring, BG and Powers, JS, Beyond leaf habit: generalities in plant function across 97 tropical dry forest tree species, New Phytologist, 232, (1) pp. 148-161. ISSN 1469-8137 (2021) [Refereed Article]

Copyright Statement

Copyright 2021 the authors

DOI: doi:10.1111/nph.17584

Abstract

  • Leaf habit has been hypothesized to define a linkage between the slow-fast plant economic spectrum and the drought resistance-avoidance trade-off in tropical forests (‘slow-safe vs fast-risky’). However, variation in hydraulic traits as a function of leaf habit has rarely been explored for a large number of species.
  • We sampled leaf and branch functional traits of 97 tropical dry forest tree species from four sites to investigate whether patterns of trait variation varied consistently in relation to leaf habit along the ‘slow-safe vs fast-risky’ trade-off.
  • Leaf habit explained from 0% to 43.69% of individual trait variation. We found that evergreen and semi-deciduous species differed in their location along the multivariate trait ordination when compared to deciduous species. While deciduous species showed consistent trait values, evergreen species trait values varied as a function of the site. Last, trait values varied in relation to the proportion of deciduous species in the plant community.
  • We found that leaf habit describes the strategies that define drought avoidance and plant economics in tropical trees. However, leaf habit alone does not explain patterns of trait variation, which suggests quantifying site-specific or species-specific uncertainty in trait variation as the way forward.

Item Details

Item Type:Refereed Article
Keywords:drought tolerance, functional ecology, leaf habit, plant hydraulics, turgor loss point
Research Division:Biological Sciences
Research Group:Ecology
Research Field:Ecological physiology
Objective Division:Environmental Policy, Climate Change and Natural Hazards
Objective Group:Understanding climate change
Objective Field:Effects of climate change on Australia (excl. social impacts)
UTAS Author:Brodribb, TJ (Professor Tim Brodribb)
ID Code:146704
Year Published:2021
Funding Support:Australian Research Council (DP190101552)
Web of Science® Times Cited:7
Deposited By:Plant Science
Deposited On:2021-09-22
Last Modified:2021-11-02
Downloads:0

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