Scaling Erica arborea transpiration from trees up to the stand using auxiliary micrometeorological information in a wax myrtle-tree heath cloud forest (La Gomera, Canary Islands)

Tree Physiol. 2013 Sep;33(9):973-85. doi: 10.1093/treephys/tpt071. Epub 2013 Sep 26.

Abstract

We investigate evapotranspiration, sap flow and top soil water content variations in a wax myrtle-tree heath ('fayal-brezal' in Spanish) cloud forest in the Garajonay National Park (La Gomera, Canary Islands) over a 1-year period. We provide transpiration estimates for one of the representative species, the shrubby needle-like Erica arborea L., present in this relict subtropical forest. An ad hoc tree up to the stand scaling method that combines the sap flow and auxiliary reference evapotranspiration data is illustrated, showing to be useful when sap flow in a limited number of trees has been monitored. Individual daily-based scaling curves of the Gompertz type were necessary to explain the observed sap flow variability in E. arborea during the 1-year period investigated (r(2) ≥ 0.953 with mode of r(2) = 0.9999). The mean daily sap flow of an E. arborea individual amounted to 8.37 ± 5.65 kg day(-1) tree(-1), with a maximum of 20.48 kg day(-1) tree(-1), yielding an annual total of 3052.89 kg tree(-1). A comparison of the computed daily transpiration with the continuous micrometeorological time series monitored in the studied plot suggested that solar radiation was the main driving force of transpiration in E. arborea (cross correlation index = 0.94). Fog may also affect tree transpiration via its reduction of radiation and temperature, such that during foggy periods the mean daily water loss estimate of E. arborea was 5.35 ± 4.30 kg day(-1) tree(-1), which sharply contrasted with the 2.4-fold average transpiration values obtained for fog-free days, i.e., 12.81 ± 4.33 kg day(-1) tree(-1). The annual water balance rendered a 288 mm year(-1) water input to the forest and evidenced the need for accurately quantifying the contribution of fog water dripping from the canopy.

Keywords: allometric relationship; horizontal precipitation; inverse optimization; laurisilva; non-linear scaling method; reference Penman–Monteith evapotranspiration; representativeness.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Circadian Rhythm / physiology
  • Ericaceae / physiology*
  • Meteorological Concepts*
  • Myrtus / physiology*
  • Plant Exudates / physiology
  • Plant Transpiration / physiology*
  • Soil / chemistry
  • Spain
  • Trees / physiology*
  • Water
  • Waxes / chemistry*

Substances

  • Plant Exudates
  • Soil
  • Waxes
  • Water