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Treesearch

The Impact of Disturbance on Tree Size Distributions in the United States

Formally Refereed
Download (PDF 1.05 MB): https://research.fs.usda.gov/download/treesearch/69544.pdf

Abstract

Aim: Tree size distributions are an emergent feature of forest dynamics across space and time. Theory suggests that undisturbed forests exhibit a size-abundance distribution captured by a power-law relationship with a near-2 slope. We aimed to quantify how disturbances systematically and predictably cause deviations from this expected pattern.

Location: Contiguous United States.

Time Period: 2001–2023.

Major Taxa Studied: Diverse tree communities.

Methods: We analysed size-abundance distributions in over 160,000 FIA plots for both disturbed and undisturbed forests, examining changes in slope associated with disturbances, stand age, and maximum tree height. We used a Structural Equation Model (SEM) to evaluate whether disturbance effects on size-abundance slopes were indirectly mediated by changes in stand age or maximum height.

Results: We found that the predominant disturbances across the dataset (e.g., ground fires, animal damage) result in predictable flattening of size-abundance slopes, reflecting the selective removal of smaller trees. In contrast, many disturbances (e.g., wind, disease) did not shift the slopes predictably, indicating that they did not selectively impact any specific size class. Maximum tree height and stand age were also reliable predictors of size-abundance distributions, but a structural equation model demonstrated that the impact of disturbance on size-abundance slopes was not mediated through its indirect effects on stand age or maximum tree height, suggesting a direct pathway of influence.

Main Conclusions: Disturbances result in predictable changes to forest size-abundance slopes. As climate change and increased disturbance frequencies produce younger and shorter forests, future size-abundance slopes are expected to be steeper than those in undisturbed forests. Our findings suggest a temporary flattening in the size-abundance relationship immediately after the predominant disturbances across the dataset (ground fires, animal damage). These findings underscore the importance of understanding disturbance impacts on forest size structure to improve predictions of forests across broad spatial and temporal scales.

Citation

​Eichenwald, Adam J.; Grady, John M.; Knott, Jonathan A.; Read, Quentin D.; Rodriguez, J. Marcos; Record, Sydne. 2025. The Impact of Disturbance on Tree Size Distributions in the United States. Global Ecology and Biogeography. 34: e70102. 12 p. https://doi.org/10.1111/geb.70102.
Citations