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5 results for “plant hydraulic traits”

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zenodo44/100

The role of the intraspecific variability of hydraulic traits for modelling the plant water use in different European forest ecosystems: scripts, model output, and parameter files

<p>This repository contains the model outputs and R scripts used to process the data to analyze the impact of the plant hydraulic parameterization of the manuscript: &quot;The role of the intraspecific variability of hydraulic traits for modelling the plant water use in different European forest ecosystems&quot;. The following is a detailed description of the content of this repository:</p> <p>model_output.zip: This compressed file contains the results of all the individual numerical experiments per experimental site as produced by the Comunity Land Model version 5. The files are stored in NETCDF format per year. The folder is arranged with subfolders containing the individual results from each experimental site as follows:</p> <ul> <li>rc: model output with the results of the resistant configuration of experiment 1 (RC)</li> <li>vc: model output with the results of the vulnerable&nbsp;configuration of experiment 1 (VC)</li> <li>k_dc:&nbsp;model output with the results of the default configuration used for experiments 1 and 2 (DC or DC<em>k</em><sub>max</sub>)</li> <li>k_rc:&nbsp;model output with the results of the low&nbsp;plant hydraulic conductance (L<em>k</em><sub>max</sub>) for experiment 2</li> <li>k_irc:&nbsp;model output with the results of the intermediate low plant hydraulic conductance (IL<em>k</em><sub>max</sub>) for experiment 2</li> <li>k_vc:&nbsp;model output with the results of the high&nbsp;plant hydraulic conductance (H<em>k</em><sub>max</sub>) for experiment 2</li> <li>k_ivc:&nbsp;model output with the results of the intermediate high&nbsp;plant hydraulic conductance (IH<em>k</em><sub>max</sub>) for experiment 2</li> <li>k_iirc:&nbsp;model output with the results of the additional intermediate low&nbsp;plant hydraulic conductance (IIL<em>k</em><sub>max</sub>) for experiment 2</li> <li>ko_dc:&nbsp;model output with the results of the best <em>k</em><sub>max</sub>&nbsp;and the default configuration of the PVC used in&nbsp;experiment 3</li> <li>ko_rc:&nbsp;model output with the results of the best <em>k</em><sub>max</sub>&nbsp;and the resistant configuration of the PVC used in&nbsp;experiment 3</li> <li>ko_vc:&nbsp;model output with the results of the best <em>k</em><sub>max</sub>&nbsp;and the vulnerable&nbsp;configuration of the PVC used in&nbsp;experiment 3</li> </ul> <p>The scripts were written for use in RStudio, and each contains a&nbsp;detailed description of the data requirements and outputs. Each script was developed to read directly the netcdf files of the model output and the csv files containing the transpiration estimates calculated from the SAPFLUXNET per experimental site (script 1).</p>

opencc-by-4.0Nov 2022View details →
dryad40/100

Effects of plant hydraulic traits on the flammability of live fine canopy fuels in 62 Australian plant species

<ol> <li><span>Plant species vary in how they regulate moisture and this has implications for their flammability during wildfires. We explored how fuel moisture is shaped by variation within six hydraulic traits: saturated moisture content, cell wall rigidity, cell solute potential, symplastic water fraction and tissue capacitance.</span></li> <li><span>Using pressure-volume curves, we measured these hydraulic traits distal shoots (<i>i.e.</i> twigs + leaves) in 62 plant species across four wooded communities in south-eastern Australia. For a subset of 30 of those species, we also measured hydraulic traits of twigs using moisture-release curves. Moisture content of fine fuels was then estimated for circumstances typical of fire weather. These projections were made assuming that under the hot, dry, windy conditions typical of large wildfires, leaves and fine twigs would function at internal water pressures close to wilting point (<i>i.e. </i>turgor loss point, TLP). The effect of different moisture contents at TLP on ignition time was then modelled using a fully mechanistic, finite element model of biomass ignition based on standard principles of physical chemistry.</span></li> <li><span>We also measured predawn water potential, an indication of plant access to soil water that is influenced by root architecture. These data were used to model how root traits influence fuel moisture and ignition time.</span></li> </ol>

opencc-zeroJan 2021View details →
dryad40/100

Effects of plant hydraulic traits on the flammability of live fine canopy fuels in 62 Australian plant species

Open the record for dataset details and reuse information.

publicJan 2021View details →
zenodo36/100

SurEau database : A database of hydraulic and stomatal traits for modelling drought resistance in plants

<p>This file contains a database of hydraulic and stomatal traits that accompanies the paper untitled &quot;Pant resistance to drought relies on timely stomatal closure&quot; publish in Ecology Letters. This database was used to built the Figure of this manuscript.</p> <p>&gt; The first page (&quot;Stem_VCurves&quot;) contains the parameter of vulnerability curve to embolism for 150 species. Family, genus and species names as well as original reference are provided.</p> <p>&gt; The second page (&quot;Pgs90&quot;) contains a first proxy for the water potential causing stomatal closure, it is the value of water potential causing 90% stomatal closure computed from gs versus water potential. Family, genus and species names as well as original reference are provided.</p> <p>&gt; The third page (Ptlp) contains a second proxy for the water potential causing stomatal closure, it is the turgor loss point computed from pressure volume curves. Family, genus and species names as well as original reference are provided.</p> <p>&gt; The fourth page (ALL) contains all the three previous pages together, allowing to reconstruct Figure 1.</p> <p>&gt; The fifth page (PitlpAdultSeedlings) contains values of turgor loss point for adults and seedilngs for 15 species.</p> <p>&gt; The sixth page (P50AdultSeedlings) contains values of embolism resistance for adults and seedilngs for 14 species.</p> <p>&gt; The seventh page (Emin) contains values of minimum (i.e. cuticular) conductance and minimum transpiration for 33 species as well as embolism resistance values for theese species.</p> <p>&nbsp;</p> <p>&nbsp;</p> <p>&nbsp;</p> <p>&nbsp;</p>

opencc-by-4.0Aug 2017View details →
dryad36/100

Data from: Plasticity in plant hydraulic traits: An evaluation of a common-taxa experiment across a climatic gradient in the Western U.S.

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publicOct 2025View details →

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