Tree mortality is a key factor influencing forest functions and dynamics, but our understand-ing of the mechanisms leading to mortality and the associated changes in tree growth rates are still limited. We compiled a new pan-continental tree-ring width database from sites where both dead and living trees were sampled (2,970 dead and 4,224 living trees from 190 sites, including 36 species), and compared early and recent growth rates between trees that died and those that survived a given mortality event.We observed a decrease in radial growth before death in ca. 84% of the mortality events. The extent and duration of these reductions were highly variable (1-100 years in 96% of events) due to the complex interactions among study species and the source(s) of mortality. Strong and long-lasting declines were found for gymnosperms, shade- and drought-tolerant species, and trees that died from competition. Angiosperms and trees that died due to biotic attacks (especially bark-beetles) typically showed relatively small and short-term growth reductions. Our analysis did not highlight any universal trade-off between early growth and tree longev-ity within a species, although this result may also reflect high variability in sampling design among sites

A synthesis of radial growth patterns preceding tree mortality / Cailleret, M.; Jansen, S.; Robert, E. M. R.; De Soto, L.; Aakala, T.; Antos, J. A.; Beikircher, B.; Bigler, C.; Bugmann, H.; Caccianiga, M.; Cada, V.; Camarero, J. J.; Cherubini, P.; Cochard, H.; Coyea, M. R.; Cufar, C.; Das, A. J.; Davi, H.; Delzon, S.; Dorman, M.; Gea-Izquierdo, G.; Gillner, S.; Haavik, L. J.; Hartmann, H.; Heres, A. M.; Hultine, K. R.; Janda, P.; Kane, J. M.; Kharuk, V. I.; Kitzberger, T.; Klein, T.; Kramer, K.; Lens, F.; Levanic, T.; Linares Calderon, J. C.; Lloret, F.; Lobodo-Vale, R.; Lombardi, Fabio; Lopez Rodriguez, R.; Makinen, H.; Mayr, S.; Meszaros, I.; Metsaranta, J. M.; Minunno, F.; Oberhuber, W.; Papadopoulos, A.; Peltoniemi, M.; Petritan, A. M.; Rohner, B.; Sanguesa-Barreda, G.; Sarris, D.; Smith, J. M.; Stan, Ab.; Stercf, F.; Stojanovic, D. B.; Suarez, M. L.; Svoboda, M.; Tognetti, R.; Torres-Ruiz, J. M.; Trotsiuk, V.; Villalba, R.; Vodde, F.; Westwood, A. R.; Wyckoff, P. H.; Zafirov, N.; Martinez-Vilalta, J.. - In: GLOBAL CHANGE BIOLOGY. - ISSN 1354-1013. - 23:4(2017), pp. 1675-1690. [10.1111/gcb.13535]

A synthesis of radial growth patterns preceding tree mortality

LOMBARDI, Fabio;
2017-01-01

Abstract

Tree mortality is a key factor influencing forest functions and dynamics, but our understand-ing of the mechanisms leading to mortality and the associated changes in tree growth rates are still limited. We compiled a new pan-continental tree-ring width database from sites where both dead and living trees were sampled (2,970 dead and 4,224 living trees from 190 sites, including 36 species), and compared early and recent growth rates between trees that died and those that survived a given mortality event.We observed a decrease in radial growth before death in ca. 84% of the mortality events. The extent and duration of these reductions were highly variable (1-100 years in 96% of events) due to the complex interactions among study species and the source(s) of mortality. Strong and long-lasting declines were found for gymnosperms, shade- and drought-tolerant species, and trees that died from competition. Angiosperms and trees that died due to biotic attacks (especially bark-beetles) typically showed relatively small and short-term growth reductions. Our analysis did not highlight any universal trade-off between early growth and tree longev-ity within a species, although this result may also reflect high variability in sampling design among sites
2017
Tree mortality; growth; ring-width; drought; pathogens; angiosperms; gymnosperms; death
File in questo prodotto:
File Dimensione Formato  
Cailleret 2017_Glob. Change Biol._A synthesis_editor.pdf

non disponibili

Descrizione: Versione Editoriale
Tipologia: Versione Editoriale (PDF)
Licenza: Tutti i diritti riservati (All rights reserved)
Dimensione 822.91 kB
Formato Adobe PDF
822.91 kB Adobe PDF   Visualizza/Apri   Richiedi una copia
Cailleret_2017_Glob. Change Biol._A synthesis_Post(1).pdf

Open Access dal 01/01/2019

Tipologia: Documento in Post-print
Licenza: Tutti i diritti riservati (All rights reserved)
Dimensione 607.47 kB
Formato Adobe PDF
607.47 kB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/860
Citazioni
  • ???jsp.display-item.citation.pmc??? 53
  • Scopus 398
  • ???jsp.display-item.citation.isi??? 381
social impact