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Publication Additional Information Download
Publication Type
Journal Article
Authorship
Bodo, A.V., Arain, M.A.
Title
Effects of variable retention harvesting on canopy transpiration in a red pine plantation forest
Year
2022
Publication Outlet
Ecological Processes, 11:28
DOI
https://doi.org/10.1186/s13717-022-00366-0
Citation
Bodo, A.V., Arain, M.A. (2022) Effects of variable retention harvesting on canopy transpiration in a red pine plantation forest. Ecological Processes, 11:28. https://doi.org/10.1186/s13717-022-00366-0
Abstract
Background Variable Retention Harvesting (VRH) is a forest management practice applied to enhance forest growth, improve biodiversity, preserve ecosystem function and provide economic revenue from harvested timber. There are many different forms and compositions in which VRH is applied in forest ecosystems. In this study, the impacts of four different VRH treatments on transpiration were evaluated in an 83-year-old red pine (Pinus Pinus resinosa) plantation forest in the Great Lakes region in Canada. These VRH treatments included 55% aggregated crown retention (55A), 55% dispersed crown retention (55D), 33% aggregated crown retention (33A), 33% dispersed crown retention (33D) and unharvested control (CN) plot. These VRH treatments were implemented in 1-ha plots in the winter of 2014, while sap flow measurements were conducted from 2018 to 2020. Results Study results showed that tree-level transpiration was highest among trees in the 55D treatment, followed by 33D, 55A, 33A and CN plots. We found that photosynthetically active radiation (PAR) and vapor pressure deficit (VPD) were major controls or drivers of transpiration in all VRH treatments. Our study suggests that dispersed or distributed retention of 55% basal area (55D) is the ideal forest management technique to enhance transpiration and forest growth. Conclusions This study will help researchers, forest managers and decision-makers to improve their understanding of water cycling in forest ecosystem and adopt the best forest management regimes to enhance forest growth, health and resiliency to climate change.
Program Affiliations
GWF: Global Water Futures
Project Affiliations
GWF-SFWF: Southern Forests Water Futures
Publication Stage
Published
Download Links
https://doi.org/10.1186/s13717-022-00366-0
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