Återgå till huvudnavigering Återgå till sök Gå direkt till huvudinnehållet

ENSO effects on the transpiration of eastern Amazon trees

  • Mauro Brum
  • , Jose Gutierrez Lopez
  • , Heidi Asbjornsen
  • , Julian Licata
  • , Thomas Pypker
  • , Gilson Sanchez
  • , Rafael S. Oiveira

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

Tree transpiration is important in the recycling of precipitation in the Amazon and might be negatively affected by El Nino-Southern Oscillation (ENSO)-induced droughts. To investigate the relative importance of soil moisture deficits versus increasing atmospheric demand (VPD) and determine if these drivers exert different controls over tree transpiration during the wet season versus the dry season (DS), we conducted sap flow measurements in a primary lowland tropical forest in eastern Amazon during the most extreme ENSO-induced drought (2015/2016) recorded in the Amazon. We also assessed whether trees occupying different canopy strata contribute equally to the overall stand transpiration (Tstand). Canopy trees were the primary source of Tstand. However, subcanopy trees are still important as they transpired an amount similar to other biomes around the globe. Tree water use was higher during the DS, indicating that during extreme drought trees did not reduce transpiration in response to low soil moisture. Photosynthetically active radiation and VPD exerted an overriding effect on water use patterns relative to soil moisture during extreme drought, indicating that light and atmospheric constraints play a critical role in controlling ecosystem fluxes of water. Our study highlights the importance of canopy and subcanopy trees to the regional water balance and highlights the resilience to droughts that these trees show during an extreme ENSO event.This article is part of a discussion meeting issue 'The impact of the 2015/2016 El Nino on the terrestrial tropical carbon cycle: patterns, mechanisms and implications'.
OriginalspråkEngelska
Artikelnummer20180085
Antal sidor12
TidskriftPhilosophical Transactions B: Biological Sciences
Volym373
Nummer1760
DOI
StatusPublicerad - 2018
Externt publiceradJa

FN:s SDG:er

Detta resultat bidrar till följande hållbara utvecklingsmål:

  1. SDG 7 – Hållbar energi för alla
    SDG 7 – Hållbar energi för alla
  2. SDG 13 – Bekämpa klimatförändringarna
    SDG 13 – Bekämpa klimatförändringarna

Nyckelord

  • drought
  • hysteresis
  • sap flow
  • vapour pressure deficit
  • El Nino

Citera det här