Tree growth, wood anatomy and carbon and oxygen isotopes responses to drought in Mediterranean riparian forests

[Display omitted] •Mediterranean riparian forests are negatively impacted by drought.•Growth responses to climate and drought of four tree species were investigated.•Growth was reduced by drought and low spring-summer river flow.•Populus nigra and Fraxinus angustifolia were the most responsive speci...

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Published inForest ecology and management Vol. 529; p. 120710
Main Authors Camarero, J. Julio, Colangelo, Michele, Rodríguez-González, Patricia M.
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.02.2023
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Online AccessGet full text
ISSN0378-1127
1872-7042
DOI10.1016/j.foreco.2022.120710

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Abstract [Display omitted] •Mediterranean riparian forests are negatively impacted by drought.•Growth responses to climate and drought of four tree species were investigated.•Growth was reduced by drought and low spring-summer river flow.•Populus nigra and Fraxinus angustifolia were the most responsive species to drought.•Ash earlywood anatomy, and wood C and O isotopes also responded to drought. Mediterranean riparian forests have been altered by past use and are also negatively impacted by climate and hydrological droughts. However, we lack data on their historical changes in extent combined with multi-proxy, long-term assessments of tree growth and leaf gas exchange responses to climate, drought severity and river flow. These evaluations must also consider their current stand structure and the amount of lying deadwood which are proxies of river dynamics and forest maturity. To fill these research gaps, we studied four riparian tree species (Populus alba, Populus nigra, Fraxinus angustifolia and Ulmus minor) inhabiting a Mediterranean riparian forest located in north-eastern Spain. We quantified and analyzed: stand structure; lying deadwood; radial growth; relationships between growth, climate variables, the SPEI drought index and river flow; stable C (δ13C) and O (δ18O) isotopes in wood of P. alba, P. nigra and F. angustifolia; and earlywood anatomy in F. angustifolia. Mature sites were dominated by P. nigra and F. angustifolia and showed the highest amount of decayed lying deadwood. Radial growth was reduced by drought and low spring-summer river flow. We found the highest growth responses to 3- (P. nigra, r = 0.62; P. alba, r = 0.46) or 12-month SPEI (F. angustifolia, r = 0.54; U. minor, r = 0.53). The coordinated decrease in δ18O and intrinsic water-use efficiency (WUE) in P. alba and P. nigra could involve an increase in stomatal conductance rate. P. alba and P. nigra were more enriched in δ18O than F. angustifolia, suggesting the former used more enriched shallow groundwater in dry periods. The F. angustifolia WUE and P. nigra δ18O series were positively and negatively correlated with the SPEI, respectively. The F. angustifolia hydraulic diameter decreased in response to drought, whereas its vessel density and WUE were positively associated. Overall, P. nigra and F. angustifolia were the species most responsive to drought.
AbstractList [Display omitted] •Mediterranean riparian forests are negatively impacted by drought.•Growth responses to climate and drought of four tree species were investigated.•Growth was reduced by drought and low spring-summer river flow.•Populus nigra and Fraxinus angustifolia were the most responsive species to drought.•Ash earlywood anatomy, and wood C and O isotopes also responded to drought. Mediterranean riparian forests have been altered by past use and are also negatively impacted by climate and hydrological droughts. However, we lack data on their historical changes in extent combined with multi-proxy, long-term assessments of tree growth and leaf gas exchange responses to climate, drought severity and river flow. These evaluations must also consider their current stand structure and the amount of lying deadwood which are proxies of river dynamics and forest maturity. To fill these research gaps, we studied four riparian tree species (Populus alba, Populus nigra, Fraxinus angustifolia and Ulmus minor) inhabiting a Mediterranean riparian forest located in north-eastern Spain. We quantified and analyzed: stand structure; lying deadwood; radial growth; relationships between growth, climate variables, the SPEI drought index and river flow; stable C (δ13C) and O (δ18O) isotopes in wood of P. alba, P. nigra and F. angustifolia; and earlywood anatomy in F. angustifolia. Mature sites were dominated by P. nigra and F. angustifolia and showed the highest amount of decayed lying deadwood. Radial growth was reduced by drought and low spring-summer river flow. We found the highest growth responses to 3- (P. nigra, r = 0.62; P. alba, r = 0.46) or 12-month SPEI (F. angustifolia, r = 0.54; U. minor, r = 0.53). The coordinated decrease in δ18O and intrinsic water-use efficiency (WUE) in P. alba and P. nigra could involve an increase in stomatal conductance rate. P. alba and P. nigra were more enriched in δ18O than F. angustifolia, suggesting the former used more enriched shallow groundwater in dry periods. The F. angustifolia WUE and P. nigra δ18O series were positively and negatively correlated with the SPEI, respectively. The F. angustifolia hydraulic diameter decreased in response to drought, whereas its vessel density and WUE were positively associated. Overall, P. nigra and F. angustifolia were the species most responsive to drought.
Mediterranean riparian forests have been altered by past use and are also negatively impacted by climate and hydrological droughts. However, we lack data on their historical changes in extent combined with multi-proxy, long-term assessments of tree growth and leaf gas exchange responses to climate, drought severity and river flow. These evaluations must also consider their current stand structure and the amount of lying deadwood which are proxies of river dynamics and forest maturity. To fill these research gaps, we studied four riparian tree species (Populus alba, Populus nigra, Fraxinus angustifolia and Ulmus minor) inhabiting a Mediterranean riparian forest located in north-eastern Spain. We quantified and analyzed: stand structure; lying deadwood; radial growth; relationships between growth, climate variables, the SPEI drought index and river flow; stable C (δ¹³C) and O (δ¹⁸O) isotopes in wood of P. alba, P. nigra and F. angustifolia; and earlywood anatomy in F. angustifolia. Mature sites were dominated by P. nigra and F. angustifolia and showed the highest amount of decayed lying deadwood. Radial growth was reduced by drought and low spring-summer river flow. We found the highest growth responses to 3- (P. nigra, r = 0.62; P. alba, r = 0.46) or 12-month SPEI (F. angustifolia, r = 0.54; U. minor, r = 0.53). The coordinated decrease in δ¹⁸O and intrinsic water-use efficiency (WUE) in P. alba and P. nigra could involve an increase in stomatal conductance rate. P. alba and P. nigra were more enriched in δ¹⁸O than F. angustifolia, suggesting the former used more enriched shallow groundwater in dry periods. The F. angustifolia WUE and P. nigra δ¹⁸O series were positively and negatively correlated with the SPEI, respectively. The F. angustifolia hydraulic diameter decreased in response to drought, whereas its vessel density and WUE were positively associated. Overall, P. nigra and F. angustifolia were the species most responsive to drought.
ArticleNumber 120710
Author Rodríguez-González, Patricia M.
Camarero, J. Julio
Colangelo, Michele
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  givenname: Michele
  surname: Colangelo
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  givenname: Patricia M.
  surname: Rodríguez-González
  fullname: Rodríguez-González, Patricia M.
  email: patri@isa.ulisboa.pt
  organization: Forest Research Centre, School of Agriculture, University of Lisbon, Lisbon 1349-017, Portugal
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Keywords Fraxinus angustifolia
Intrinsic water-use efficiency
Soil moisture
Populus nigra
Ulmus minor
Ebro river
Populus alba
Language English
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SSID ssj0005548
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Snippet [Display omitted] •Mediterranean riparian forests are negatively impacted by drought.•Growth responses to climate and drought of four tree species were...
Mediterranean riparian forests have been altered by past use and are also negatively impacted by climate and hydrological droughts. However, we lack data on...
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StartPage 120710
SubjectTerms administrative management
carbon
climate
dead wood
drought
earlywood
Ebro river
Fraxinus angustifolia
gas exchange
groundwater
Intrinsic water-use efficiency
leaves
oxygen
Populus alba
Populus nigra
riparian forests
river flow
rivers
Soil moisture
Spain
species
stand structure
stomatal conductance
tree growth
trees
Ulmus minor
water use efficiency
wood
Title Tree growth, wood anatomy and carbon and oxygen isotopes responses to drought in Mediterranean riparian forests
URI https://dx.doi.org/10.1016/j.foreco.2022.120710
https://www.proquest.com/docview/2834207448
Volume 529
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