4.6 Article

Leaf surface water, not plant water stress, drives diurnal variation in tropical forest canopy water content

期刊

NEW PHYTOLOGIST
卷 231, 期 1, 页码 122-136

出版社

WILEY
DOI: 10.1111/nph.17254

关键词

canopy water content (CWC); ecosystem modeling; ED2; leaf surface water; vegetation optical depth (VOD); X‐ band

资金

  1. NASA Earth Sciences grant [16-CARBON16-0130]
  2. NASA Postdoctoral Program
  3. NASA

向作者/读者索取更多资源

The study found that leaf surface water (LWs) has a significant impact on the diurnal variation of canopy water content (CWC), despite LWs accounting for a small percentage of CWC. Ignoring LWs weakens the relationship between CWC and VOD. The contribution of LWs to CWC variation decreases over longer time scales.
Variation in canopy water content (CWC) that can be detected from microwave remote sensing of vegetation optical depth (VOD) has been proposed as an important measure of vegetation water stress. However, the contribution of leaf surface water (LWs), arising from dew formation and rainfall interception, to CWC is largely unknown, particularly in tropical forests and other high-humidity ecosystems. We compared VOD data from the Advanced Microwave Scanning Radiometer for the Earth Observing System (AMSR-E) and CWC predicted by a plant hydrodynamics model at four tropical sites in Brazil spanning a rainfall gradient. We assessed how LWs influenced the relationship between VOD and CWC. The analysis indicates that while CWC is strongly correlated with VOD (R-2 = 0.62 across all sites), LWs accounts for 61-76% of the diurnal variation in CWC despite being < 10% of CWC. Ignoring LWs weakens the near-linear relationship between CWC and VOD and reduces the consistency in diurnal variation. The contribution of LWs to CWC variation, however, decreases at longer, seasonal to inter-annual, time scales. Our results demonstrate that diurnal patterns of dew formation and rainfall interception can be an important driver of diurnal variation in CWC and VOD over tropical ecosystems and therefore should be accounted for when inferring plant diurnal water stress from VOD measurements.

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