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. 2014 Oct;204(1):105-115.
doi: 10.1111/nph.12912. Epub 2014 Jul 2.

A new look at water transport regulation in plants

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Free article

A new look at water transport regulation in plants

Jordi Martínez-Vilalta et al. New Phytol. 2014 Oct.
Free article

Abstract

Plant function requires effective mechanisms to regulate water transport at a variety of scales. Here, we develop a new theoretical framework describing plant responses to drying soil, based on the relationship between midday and predawn leaf water potentials. The intercept of the relationship (Λ) characterizes the maximum transpiration rate per unit of hydraulic transport capacity, whereas the slope (σ) measures the relative sensitivity of the transpiration rate and plant hydraulic conductance to declining water availability. This framework was applied to a newly compiled global database of leaf water potentials to estimate the values of Λ and σ for 102 plant species. Our results show that our characterization of drought responses is largely consistent within species, and that the parameters Λ and σ show meaningful associations with climate across species. Parameter σ was ≤1 in most species, indicating a tight coordination between the gas and liquid phases of water transport, in which canopy transpiration tended to decline faster than hydraulic conductance during drought, thus reducing the pressure drop through the plant. The quantitative framework presented here offers a new way of characterizing water transport regulation in plants that can be used to assess their vulnerability to drought under current and future climatic conditions.

Keywords: drought stress; isohydric/anisohydric behaviour; leaf water potential; plant hydraulics; stomatal responses; water availability; water transport; xylem embolism.

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References

    1. Allen CD, Macalady AK, Chenchouni H, Bachelet D, McDowell N, Vennetier M, Kitzberger T, Rigling A, Breshears DD, Hogg EH et al. 2010. A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests. Forest Ecology and Management 259: 660-684.
    1. Arango-Velez A, Zwiazek JJ, Thomas BR, Tyree MT. 2011. Stomatal factors and vulnerability of stem xylem to cavitation in poplars. Physiologia Plantarum 143: 154-165.
    1. Bartlett M, Scoffoni C, Sack L. 2012. The determinants of leaf turgor loss point and prediction of drought tolerance of species and biomes: a global meta-analysis. Ecology Letters 15: 393-405.
    1. Bayer RJ, Starr JR. 1998. Tribal phylogeny of the Asteraceae based on two non-coding chloroplast sequences, the trnL intron and trnL/trnF intergenic spacer. Annals of the Missouri Botanical Garden 85: 242.
    1. Bellarosa R, Simeone MC, Papini A, Schirone B. 2005. Utility of ITS sequence data for phylogenetic reconstruction of Italian Quercus spp. Molecular Phylogenetics and Evolution 34: 355-370.

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