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December 14, 2023

New insights into climate response of coniferous forest ecosystems

Graphical abstract. Credit: Science of The Total Environment (2023). DOI: 10.1016/j.scitotenv.2023.168275
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Graphical abstract. Credit: Science of The Total Environment (2023). DOI: 10.1016/j.scitotenv.2023.168275

New research has made significant strides in understanding how coniferous forest ecosystems may respond to climatic changes. The study investigates the relationship between tree-ring indices (TRI) and the Normalized Difference Vegetation Index (NDVI) in the context of climate, topography, and soil conditions.

The study, titled "Shifting climatic responses of tree rings and NDVI along environmental gradients," examines the coherence of climatic responses of tree rings and NDVI, a crucial aspect in understanding the dynamics of forest ecosystems.

"Our research delves into how and foliage vitality respond differently to across a range of environmental conditions," explains the corresponding author of the study, Dr. Jiří MaÅ¡ek from the Department of Âé¶¹ÒùÔºical Geography and Geoecology, Faculty of Science, Charles University. This decoupling of TRI and NDVI responses is particularly evident across various environmental gradients.

Key findings from the study include:

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The study involved analyzing the growth of Picea abies at 138 sites across Czechia. By employing tree-ring chronologies and Landsat imagery-derived NDVI time series, the team correlated these factors with summer temperature and standardized precipitation evapotranspiration index (SPEI). The research highlighted how climatic responses varied with aridity index, soil category, stand age, and topographical factors.

"Our findings are crucial in understanding how forest ecosystems might react to ongoing climate change. It's clear that canopy vigor and stem growth may exhibit different trends under changing ," states Dr. Mašek.

The research underscores the importance of variations in the growth of aboveground biomass compartments, like tree stems and foliage, in influencing the carbon cycle of forest ecosystems. The unique insights gained from this research are expected to contribute to the field of forest ecology and .

The study is in the journal Science of The Total Environment.

More information: Jiří Mašek et al, Shifting climatic responses of tree rings and NDVI along environmental gradients, Science of The Total Environment (2023).

Journal information: Science of the Total Environment

Provided by Charles University

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