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April 23, 2026Geophysical Research Letters3 citationsOpen Access

Dominant Role of Soil Moisture Regulating Vegetation Water Content During Flash Drought Evolution

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AGAmitesh GuptaLKL. KarthikeyanAMAshok Mishra

Key Points

  • This research investigates how soil moisture and vapor pressure deficit affect vegetation water content during flash drought events.
  • Analyzed the influence of rootzone soil moisture and vapor pressure deficit on vegetation optical depth using satellite data.
  • Examined ecosystem responses across different landscapes such as grasslands, croplands, and forests.
  • Soil moisture was found to be more critical than vapor pressure deficit throughout the drought phases.
  • Vegetation optical depth sensitivity varied, decreasing in natural ecosystems while increasing in croplands during drought evolution.
  • Grasslands and shrublands showed the greatest decline in vegetation optical depth, indicating their vulnerability.

Abstract

Abstract Increasing flash drought exposure raises global concerns regarding terrestrial ecosystem responses. We investigate the effect of concurrent and past rootzone soil moisture (SM) and vapor pressure deficit (VPD) on vegetation optical depth (VOD), a satellite‐based proxy of vegetation‐water content, during flash drought evolution. Analysis reveals greater importance of SM than VPD across drought phases, driving global ecosystem responses. We observe contrasting VOD sensitivity to simultaneous SM and VPD fluctuations, which decrease (increase) in natural ecosystems (croplands) as drought evolves. VOD declines most over grasslands‐shrublands, while its recovery is relatively slow (fast) over croplands (forests). Concurrent SM has the strongest influence over grasslands‐shrublands in dry anisohydric regions, while antecedent SM plays the weakest role in humid, isohydric forests. Thus, divergent responses across ecosystems, shaped by varying water‐use strategies and adaptability to background aridity, and their phase‐wise variations underscore the necessity of region‐specific studies focusing on plant‐functional‐traits for flash drought mitigation strategies.

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Cite This Study

Gupta et al. (2026) studied this question.

synapsesocial.com/papers/69e9b91385696592c86ec01ahttps://doi.org/10.1029/2025gl119366
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