Ecophysiological variation of transpiration of pine forests: synthesis of new and published results. Issue 1 (January 2017)
- Record Type:
- Journal Article
- Title:
- Ecophysiological variation of transpiration of pine forests: synthesis of new and published results. Issue 1 (January 2017)
- Main Title:
- Ecophysiological variation of transpiration of pine forests: synthesis of new and published results
- Authors:
- Tor‐ngern, Pantana
Oren, Ram
Oishi, Andrew C.
Uebelherr, Joshua M.
Palmroth, Sari
Tarvainen, Lasse
Ottosson‐Löfvenius, Mikaell
Linder, Sune
Domec, Jean‐Christophe
Näsholm, Torgny - Abstract:
- Abstract: Canopy transpiration ( E C ) is a large fraction of evapotranspiration, integrating physical and biological processes within the energy, water, and carbon cycles of forests. Quantifying E C is of both scientific and practical importance, providing information relevant to questions ranging from energy partitioning to ecosystem services, such as primary productivity and water yield. We estimated E C of four pine stands differing in age and growing on sandy soils. The stands consisted of two wide‐ranging conifer species: Pinus taeda and Pinus sylvestris, in temperate and boreal zones, respectively. Combining results from these and published studies on all soil types, we derived an approach to estimate daily E C of pine forests, representing a wide range of conditions from 35° S to 64° N latitude. During the growing season and under moist soils, maximum daily E C ( E Cm ) at day‐length normalized vapor pressure deficit of 1 kPa ( E Cm‐ref ) increased by 0.55 ± 0.02 (mean ± SE) mm/d for each unit increase of leaf area index ( L ) up to L = ~5, showing no sign of saturation within this range of quickly rising mutual shading. The initial rise of E Cm with atmospheric demand was linearly related to E Cm‐ref . Both relations were unaffected by soil type. Consistent with theoretical prediction, daily E C was sensitive to decreasing soil moisture at an earlier point of relative extractable water in loamy than sandy soils. Our finding facilitates the estimation of daily E CAbstract: Canopy transpiration ( E C ) is a large fraction of evapotranspiration, integrating physical and biological processes within the energy, water, and carbon cycles of forests. Quantifying E C is of both scientific and practical importance, providing information relevant to questions ranging from energy partitioning to ecosystem services, such as primary productivity and water yield. We estimated E C of four pine stands differing in age and growing on sandy soils. The stands consisted of two wide‐ranging conifer species: Pinus taeda and Pinus sylvestris, in temperate and boreal zones, respectively. Combining results from these and published studies on all soil types, we derived an approach to estimate daily E C of pine forests, representing a wide range of conditions from 35° S to 64° N latitude. During the growing season and under moist soils, maximum daily E C ( E Cm ) at day‐length normalized vapor pressure deficit of 1 kPa ( E Cm‐ref ) increased by 0.55 ± 0.02 (mean ± SE) mm/d for each unit increase of leaf area index ( L ) up to L = ~5, showing no sign of saturation within this range of quickly rising mutual shading. The initial rise of E Cm with atmospheric demand was linearly related to E Cm‐ref . Both relations were unaffected by soil type. Consistent with theoretical prediction, daily E C was sensitive to decreasing soil moisture at an earlier point of relative extractable water in loamy than sandy soils. Our finding facilitates the estimation of daily E C of wide‐ranging pine forests using remotely sensed L and meteorological data. We advocate an assembly of worldwide sap flux database for further evaluation of this approach. … (more)
- Is Part Of:
- Ecological applications. Volume 27:Issue 1(2017)
- Journal:
- Ecological applications
- Issue:
- Volume 27:Issue 1(2017)
- Issue Display:
- Volume 27, Issue 1 (2017)
- Year:
- 2017
- Volume:
- 27
- Issue:
- 1
- Issue Sort Value:
- 2017-0027-0001-0000
- Page Start:
- 118
- Page End:
- 133
- Publication Date:
- 2017-01
- Subjects:
- canopy transpiration -- leaf area index -- Pinus sylvestris -- Pinus taeda -- relative extractable water -- soil texture -- vapor pressure deficit
Ecology -- Periodicals
Environmental protection -- Periodicals
Biology, Economic -- Periodicals
577.05 - Journal URLs:
- http://onlinelibrary.wiley.com/ ↗
http://esajournals.onlinelibrary.wiley.com/hub/journal/10.1002/(ISSN)1939-5582/ ↗ - DOI:
- 10.1002/eap.1423 ↗
- Languages:
- English
- ISSNs:
- 1051-0761
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3648.855000
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British Library HMNTS - ELD Digital store - Ingest File:
- 1142.xml