Počet záznamů: 1  

Uncovering the critical soil moisture thresholds of plant water stress for European ecosystems

  1. 1.
    SYSNO ASEP0554375
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevUncovering the critical soil moisture thresholds of plant water stress for European ecosystems
    Tvůrce(i) Fu, Z. (FR)
    Ciais, P. (FR)
    Makowski, D. (FR)
    Bastos, A. (FR)
    Stoy, Paul C. (FR)
    Ibrom, A. (DK)
    Knohl, A. (DE)
    Migliavacca, M. (DE)
    Cuntz, M. (FR)
    Šigut, Ladislav (UEK-B) RID, ORCID, SAI
    Peichl, M. (SE)
    Loustau, D. (FR)
    El-Madany, T. S. (DE)
    Buchmann, N. (CH)
    Gharun, M. (CH)
    Janssens, I. (BE)
    Markwitz, C. (DE)
    Gruenwald, T. (DE)
    Rebmann, C. (DE)
    Molder, M. (SE)
    Varlagin, A. (RU)
    Mammarella, I. (FI)
    Kolari, P. (FI)
    Bernhofer, C. (DE)
    Heliasz, M. (SE)
    Vincke, C. (BE)
    Pitacco, A. (IT)
    Cremonese, E. (IT)
    Foltýnová, Lenka (UEK-B) ORCID, SAI, RID
    Wigneron, J. (FR)
    Celkový počet autorů30
    Zdroj.dok.Global Change Biology. - : Wiley - ISSN 1354-1013
    Roč. 28, č. 6 (2022), s. 2111-2123
    Poč.str.12 s.
    Jazyk dok.eng - angličtina
    Země vyd.GB - Velká Británie
    Klíč. slovasurface-energy-balance ; land ; carbon ; regression ; exchange ; droughts ; fluxes ; critical soil moisture threshold ; drought ; Europe ; evaporative fraction ; gross primary production ; surface energy partitioning ; vapor pressure deficit
    Vědní obor RIVDG - Vědy o atmosféře, meteorologie
    Obor OECDMeteorology and atmospheric sciences
    Způsob publikováníOmezený přístup
    Institucionální podporaUEK-B - RVO:86652079
    UT WOS000735992200001
    EID SCOPUS85122157145
    DOI10.1111/gcb.16050
    AnotaceUnderstanding the critical soil moisture (SM) threshold (theta(crit)) of plant water stress and land surface energy partitioning is a basis to evaluate drought impacts and improve models for predicting future ecosystem condition and climate. Quantifying the theta(crit) across biomes and climates is challenging because observations of surface energy fluxes and SM remain sparse. Here, we used the latest database of eddy covariance measurements to estimate theta(crit) across Europe by evaluating evaporative fraction (EF)-SM relationships and investigating the covariance between vapor pressure deficit (VPD) and gross primary production (GPP) during SM dry-down periods. We found that the theta(crit) and soil matric potential threshold in Europe are 16.5% and0.7 MPa, respectively. Surface energy partitioning characteristics varied among different vegetation types, EF in savannas had the highest sensitivities to SM in water-limited stage, and the lowest in forests. The sign of the covariance between daily VPD and GPP consistently changed from positive to negative during dry-down across all sites when EF shifted from relatively high to low values. This sign of the covariance changed after longer period of SM decline in forests than in grasslands and savannas. Estimated theta(crit) from the VPD-GPP covariance method match well with the EF-SM method, showing this covariance method can be used to detect the theta(crit). We further found that soil texture dominates the spatial variability of theta(crit) while shortwave radiation and VPD are the major drivers in determining the spatial pattern of EF sensitivities. Our results highlight for the first time that the sign change of the covariance between daily VPD and GPP can be used as an indicator of how ecosystems transition from energy to SM limitation. We also characterized the corresponding theta(crit) and its drivers across diverse ecosystems in Europe, an essential variable to improve the representation of water stress in land surface models.
    PracovištěÚstav výzkumu globální změny
    KontaktNikola Šviková, svikova.n@czechglobe.cz, Tel.: 511 192 268
    Rok sběru2023
    Elektronická adresahttps://onlinelibrary.wiley.com/doi/epdf/10.1111/gcb.16050
Počet záznamů: 1  

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