Post-drought conditions and hydraulic dysfunction determine tree resilience and mortality across Mediterranean Aleppo pine (Pinus halepensis) populations after an extreme drought event

Author:

Morcillo L1,Muñoz-Rengifo J C2345,Torres-Ruiz J M6,Delzon S7,Moutahir H1,Vilagrosa A123ORCID

Affiliation:

1. Mediterranean Center for Environmental Studies (CEAM Foundation), Joint Research Unit University of Alicante-CEAM, University of Alicante , Alicante 03690, Spain

2. Department of Ecology , , Alicante 03690, Spain

3. University of Alicante , , Alicante 03690, Spain

4. Department of Earth Science , , Pastaza 160150, Ecuador

5. Universidad Estatal Amazónica , , Pastaza 160150, Ecuador

6. Université Clermont-Auvergne, INRAE, PIAF , Clermont-Ferrand 63000, France

7. Université Bordeaux, INRAE, BIOGECO , Pessac 33615, France

Abstract

Abstract Drought-related tree mortality is a global phenomenon that currently affects a wide range of forests. Key functional variables on plant hydraulics, carbon economy, growth and allocation have been identified and play a role in tree drought responses. However, tree mortality thresholds based on such variables are difficult to identify, especially under field conditions. We studied several Aleppo pine populations differently affected by an extreme drought event in 2014, with mortality rates ranging from no mortality to 90% in the most severely affected population. We hypothesized that mortality is linked with high levels of xylem embolism, i.e., hydraulic dysfunction, which would also lead to lower tree resistance to drought in subsequent years. Despite not finding any differences among populations in the vulnerability curves to xylem embolism, there were large differences in the hydraulic safety margin (HSM) and the hydraulic dysfunction level. High mortality rates were associated with a negative HSM when xylem embolism reached values over 60%. We also found forest weakening and post-drought mortality related to a low hydraulic water transport capacity, reduced plant growth, low carbohydrate contents and high pest infestation rates. Our results highlight the importance of drought severity and the hydraulic dysfunction level on pine mortality, as well as post-drought conditions during recovery processes.

Funder

SURVIVE-2

INERTIA

IMAGINA

Spanish MICINN

Generalitat Valenciana and the European Social Fund

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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