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Review

Potential Interactions between Climate Change and Land Use for Forest Issues in the Eastern United States

by
Brice B. Hanberry
1,*,
Marc D. Abrams
2 and
Gregory J. Nowacki
3
1
USDA Forest Service, Rocky Mountain Research Station, Rapid City, SD 57702, USA
2
Department of Ecosystem Science and Management, The Pennsylvania State University, 307 Forest Resources Bldg., University Park, PA 16802, USA
3
USDA Forest Service, Eastern Regional Office, Milwaukee, WI 53202, USA
*
Author to whom correspondence should be addressed.
Land 2024, 13(3), 398; https://doi.org/10.3390/land13030398
Submission received: 17 February 2024 / Revised: 11 March 2024 / Accepted: 18 March 2024 / Published: 21 March 2024

Highlights

  • We examined climate change and land use and disturbance changes in the eastern U.S.
  • Climate has not warmed but precipitation has increased.
  • Climate and land use have interacted to reduce wildfire frequency and increase tree growth.
  • Human activities facilitated the expansion of native tree species distribution, non-native species invasion, and damaging native species outbreaks.
  • Recent climate change and land use have not influenced deer herbivory levels.
  • A warmer and drier climate may reverse interactions with land use, varying by species.
  • Management can correct non-climate stressors and support ecosystems against climate change.

Abstract

Applying an interaction framework, we examined whether climate change and combined land use and disturbance changes were synergistic, antagonistic, or neutral for forest issues of wildfires, tree growth, tree species distributions, species invasions and outbreaks, and deer herbivory, focused on the eastern United States generally since the 1800s and the development of instrumental records (1895). Climate largely has not warmed during 1981–2020 compared to 1895–1980, but precipitation has increased. Increased precipitation and land use (encompassing fire exclusion and forestation, with coarse fuel accumulation due to increased tree densities) have interacted synergistically to dampen wildfire frequency in the humid eastern U.S. For overall tree growth, increased precipitation, carbon fertilization, and land use (i.e., young, fast-growing dense stands) likely have been positive, generating a synergistic interaction. Human activities created conditions for expanding native tree species distributions, non-native species invasions, and damaging native species outbreaks. No strong evidence appears to exist for recent climate change or land use influences on deer populations and associated herbivory levels. In the future, a warmer and effectively drier climate may reverse synergistic and neutral interactions with land use, although effects of climate interactions with land use will vary by species. Management can help correct non-climate stressors due to land use and support resilient structures and species against climate change.
Keywords: deer; fire; growth; distribution; herbivory; production; non-native; outbreak; trees deer; fire; growth; distribution; herbivory; production; non-native; outbreak; trees
Graphical Abstract

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MDPI and ACS Style

Hanberry, B.B.; Abrams, M.D.; Nowacki, G.J. Potential Interactions between Climate Change and Land Use for Forest Issues in the Eastern United States. Land 2024, 13, 398. https://doi.org/10.3390/land13030398

AMA Style

Hanberry BB, Abrams MD, Nowacki GJ. Potential Interactions between Climate Change and Land Use for Forest Issues in the Eastern United States. Land. 2024; 13(3):398. https://doi.org/10.3390/land13030398

Chicago/Turabian Style

Hanberry, Brice B., Marc D. Abrams, and Gregory J. Nowacki. 2024. "Potential Interactions between Climate Change and Land Use for Forest Issues in the Eastern United States" Land 13, no. 3: 398. https://doi.org/10.3390/land13030398

APA Style

Hanberry, B. B., Abrams, M. D., & Nowacki, G. J. (2024). Potential Interactions between Climate Change and Land Use for Forest Issues in the Eastern United States. Land, 13(3), 398. https://doi.org/10.3390/land13030398

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