Composition and carbon dynamics of forests in northeastern North America in a future, warmer worldThis article is one of a selection of papers from NE Forests 2100: A Synthesis of Climate Change Impacts on Forests of the Northeastern US and Eastern Canada.

Author:

Mohan Jacqueline E.1234,Cox Roger M.1234,Iverson Louis R.1234

Affiliation:

1. The Ecosystems Center, Marine Biological Laboratory, Woods Hole, MA 02543, USA.

2. University of Georgia, Odum School of Ecology, Athens, GA 30602, USA.

3. Natural Resources Canada, Canadian Forest Service - Atlantic Forestry Centre, P.O. Box 4000, Fredericton, NB E3B 5P7, Canada.

4. USDA Forest Service, Northern Research Station, Delaware, OH 43066, USA.

Abstract

Increasing temperatures, precipitation extremes, and other anthropogenic influences (pollutant deposition, increasing carbon dioxide) will influence future forest composition and productivity in the northeastern United States and eastern Canada. This synthesis of empirical and modeling studies includes tree DNA evidence suggesting tree migrations since the last glaciation were much slower, at least under postglacial conditions, than is needed to keep up with current and future climate warming. Exceedances of US and Canadian ozone air quality standards are apparent and offset CO2-induced gains in biomass and predispose trees to other stresses. The deposition of nitrogen and sulfate in the northeastern United States changes forest nutrient availability and retention, reduces reproductive success and frost hardiness, causes physical damage to leaf surfaces, and alters performance of forest pests and diseases. These interacting stresses may increase future tree declines and ecosystem disturbances during transition to a warmer climate. Recent modeling work predicts warmer climates will increase suitable habitat (not necessarily actual distribution) for most tree species in the northeastern United States. Species whose habitat is declining in the northeastern United States currently occur in Canadian forests and may expand northward with warming. Paleoecological studies suggest local factors may interact with, even overwhelm, climatic effects, causing lags and thresholds leading to sudden large shifts in vegetation.

Publisher

Canadian Science Publishing

Subject

Ecology,Forestry,Global and Planetary Change

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5. Auclair, A.N.D. 1987. The distribution of forest declines in eastern Canada.InForest decline and reproduction: regional and global consequences.Edited byL. Kairiukstis, S. Nilsson, and A. Straszak. International Institute for Applied Systems Analysis, Luxenburg, Austria. pp. 307–320.

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