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Specific gravity of slash, longleaf, and loblolly pine growth rings formed in mature trees during periods of drought

Formally Refereed
Download (PDF 3.17 MB): https://research.fs.usda.gov/download/treesearch/64154.pdf

Abstract

Studies linking wood properties of the southern pines to climate parameters and/or irrigation treatments have generally used seedlings or mid-rotation age trees, the latter comprised primarily of juvenile wood. To investigate possible drought-induced effects on mature wood physical properties, densitometry data from 50-year-old slash (Pinus elliottiiEngelm.), longleaf (Pinus palustrisMill.), and loblolly (taeda L.) pine trees were matched with annual soil moisture values. Each of two growth ring groupings per increment core had a two-year period of ample moisture followed by a two-year period of drought; these were centered at ages of 20 and 38 years. For slash pine, the latewood width was 30% lower (p= 0.011) for the drought period at age 20. Seemingly similar results were obtained for longleaf pine, but the probability (p= 0.051) just exceeded the threshold for significance (α= 0.05). No differences were observed for either earlywood or total ring widths. Ring specific gravity (SG) values that were 11% lower for slash pine and 7% lower for longleaf pine can be attributed to drought-related reductions in latewood formation. Unlike other studies with younger trees, both percent latewood and ring SG values for mature loblolly pine were unaffected by drought.

Citation

Eberhardt, Thomas L.; Samuelson, Lisa J. 2022. Specific gravity of slash, longleaf, and loblolly pine growth rings formed in mature trees during periods of drought. Holzforschung. 76(4): 321-329. https://doi.org/10.1515/hf-2021-0140.
Citations