Multiproxy Approach to Reconstruct the Fire History of <i>Araucaria araucana</i> Forests in the Nahuelbuta Coastal Range, Chile

MUNOZ-NAVARRO, ARIEL ANDRES; GONZALEZ-CANGAS, MAURO ESTEBAN; Schneider-Valenzuela, Isadora; Klock-Barría, Karin; Madariaga-Burgos, Marcelo; Rodríguez, Carmen Gloria; ABARZUA-VASQUEZ, ANA MARIA; Solari, María Eugenia; Martel-Cea, Alejandra; Velásquez, Bárbara; Paredes, Beatriz; GUERRERO-CASTRO, FABIAN RODRIGO; Montiel, Mauricio; Tapia-Marzán, Valeria; Riquelme, Tomás; et. al.

Abstract

Multiproxy reconstructions of fire regimes in forest ecosystems can provide a clearer understanding of past fire activity and circumvent some limitations of single proxy reconstructions. While inferring fire history from scars in trees is the most precise method to reconstruct temporal fire patterns, this method is limited in Araucaria araucana forests by rot after fire injuries, successive fires that destroy the evidence and the prohibition of sample extraction from living Araucaria trees. In this context, dendrochemical studies in Araucaria trees and charcoal analysis from sediment cores can complement and extend the time perspective of the fire history in the relictual Araucaria-Nothofagus forests of the coastal range. We used dendrochemical, fire scar and charcoal records from the Nahuelbuta Coastal Range (37.8 & DEG; S; 73 & DEG; W) spanning the last 1000 years to reconstruct the fire history. The results indicate that periods with higher fire activity occurred between 1400 and 1650 AD. Long-term changes in the fire regime are related to increased climate variability over the last 1000 years, and especially with the arrival of settlers to the area after 1860 CE. The most severe fire events in the Nothofagus and Araucaria forests occurred when suitable fire-prone conditions were superimposed with high human densities.

Más información

Título según WOS: ID WOS:001015301600001 Not found in local WOS DB
Título según SCOPUS: ID SCOPUS_ID:85164137821 Not found in local SCOPUS DB
Título de la Revista: FORESTS
Volumen: 14
Editorial: MDPI
Fecha de publicación: 2023
DOI:

10.3390/F14061082

Notas: ISI, SCOPUS