Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece

In the era of global climate fluctuations, understanding the intricate relationship between trees and climatic factors is crucial for assessing ecosystem resilience and adapting to environmental changes. This study explores the radial growth of Greek fir (Abies cephalonica) in response to climatic f...

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Main Authors: Koulelis Panagiotis P., Solomou Alexandra, Fassouli Vassilia, Petrakis Panos V., Spanos Ioannis
Format: Article
Language:English
Published: Sciendo 2025-07-01
Series:Folia Oecologica
Subjects:
Online Access:https://doi.org/10.2478/foecol-2025-0012
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author Koulelis Panagiotis P.
Solomou Alexandra
Fassouli Vassilia
Petrakis Panos V.
Spanos Ioannis
author_facet Koulelis Panagiotis P.
Solomou Alexandra
Fassouli Vassilia
Petrakis Panos V.
Spanos Ioannis
author_sort Koulelis Panagiotis P.
collection DOAJ
description In the era of global climate fluctuations, understanding the intricate relationship between trees and climatic factors is crucial for assessing ecosystem resilience and adapting to environmental changes. This study explores the radial growth of Greek fir (Abies cephalonica) in response to climatic factors in Kirphis mountain, Central Greece. The plants diversity of the area makes Kirphi one of the most crucial reserves for endemic flora, necessitating focused conservation efforts for its preservation. Using detailed tree ring analysis, gridded climate data, and data from nearby meteorological stations, we investigated how climatic variables influence fir growth dynamics. Despite the moderate climate signal observed, οur findings highlight the sensitivity of fir growth to climatic variability, with significant correlations identified between tree-ring width and drought indices. Drought conditions, measured by SPI-12 and PDSI-12, significantly affect fir ring growth. The strongest correlation was observed with SPI-12, indicating that long-term precipitation patterns play a key role. A lower correlation with evapotranspiration suggests adaptation to droughts, while the positive link with annual precipitation shows water availability is important but not the only factor. Ultimately, this research may provide valuable insights into the adaptive strategies of Greek fir forests in response to climatic fluctuations, potentially informing conservation and management practices in Mediterranean mountain ecosystems.
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institution Kabale University
issn 1338-7014
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publishDate 2025-07-01
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series Folia Oecologica
spelling doaj-art-2fac82d0fcae4ef5b9d54bdd66594b8c2025-08-20T03:34:29ZengSciendoFolia Oecologica1338-70142025-07-0152211312310.2478/foecol-2025-0012Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central GreeceKoulelis Panagiotis P.0Solomou Alexandra1Fassouli Vassilia2Petrakis Panos V.3Spanos Ioannis41Forest Research Institute - ELGO DIMITRA, Vasilika, 57006, Thessaloniki, Greece2Institute of Mediterranean Forest Ecosystems - ELGO DIMITRA, Ilisia, 11543, Athens, Greece3Ministry of Rural Development and Food, 6 Kapnokoptiriou str, 10433Athens, Greece2Institute of Mediterranean Forest Ecosystems - ELGO DIMITRA, Ilisia, 11543, Athens, Greece1Forest Research Institute - ELGO DIMITRA, Vasilika, 57006, Thessaloniki, GreeceIn the era of global climate fluctuations, understanding the intricate relationship between trees and climatic factors is crucial for assessing ecosystem resilience and adapting to environmental changes. This study explores the radial growth of Greek fir (Abies cephalonica) in response to climatic factors in Kirphis mountain, Central Greece. The plants diversity of the area makes Kirphi one of the most crucial reserves for endemic flora, necessitating focused conservation efforts for its preservation. Using detailed tree ring analysis, gridded climate data, and data from nearby meteorological stations, we investigated how climatic variables influence fir growth dynamics. Despite the moderate climate signal observed, οur findings highlight the sensitivity of fir growth to climatic variability, with significant correlations identified between tree-ring width and drought indices. Drought conditions, measured by SPI-12 and PDSI-12, significantly affect fir ring growth. The strongest correlation was observed with SPI-12, indicating that long-term precipitation patterns play a key role. A lower correlation with evapotranspiration suggests adaptation to droughts, while the positive link with annual precipitation shows water availability is important but not the only factor. Ultimately, this research may provide valuable insights into the adaptive strategies of Greek fir forests in response to climatic fluctuations, potentially informing conservation and management practices in Mediterranean mountain ecosystems.https://doi.org/10.2478/foecol-2025-0012central greececlimatedroughtfir declinegreek firradial growth
spellingShingle Koulelis Panagiotis P.
Solomou Alexandra
Fassouli Vassilia
Petrakis Panos V.
Spanos Ioannis
Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
Folia Oecologica
central greece
climate
drought
fir decline
greek fir
radial growth
title Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
title_full Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
title_fullStr Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
title_full_unstemmed Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
title_short Radial growth and climatic influences on Greek fir: Tree ring analysis from Kirphi mountain, Central Greece
title_sort radial growth and climatic influences on greek fir tree ring analysis from kirphi mountain central greece
topic central greece
climate
drought
fir decline
greek fir
radial growth
url https://doi.org/10.2478/foecol-2025-0012
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