Related Experiment Video
Updated: Feb 24, 2026

Methods of Soil Resampling to Monitor Changes in the Chemical Concentrations of Forest Soils
Published on: November 25, 2016
Centennial-scale reductions in nitrogen availability in temperate forests of the United States
K K McLauchlan1, L M Gerhart2,3, J J Battles4
1Department of Geography, Kansas State University, Manhattan, Kansas, 66506, USA. mclauch@ksu.edu.
Abstract:
Forests cover 30% of the terrestrial Earth surface and are a major component of the global carbon (C) cycle. Humans have doubled the amount of global reactive nitrogen (N), increasing deposition of N onto forests worldwide. However, other global changes-especially climate change and elevated atmospheric carbon dioxide concentrations-are increasing demand for N, the element limiting primary productivity in temperate forests, which could be reducing N availability. To determine the long-term, integrated effects of global changes on forest N cycling, we measured stable N isotopes in wood, a proxy for N supply relative to demand, on large spatial and temporal scales across the continental U.S.A. Here, we show that forest N availability has generally declined across much of the U.S. since at least 1850 C.E. with cool, wet forests demonstrating the greatest declines. Across sites, recent trajectories of N availability were independent of recent atmospheric N deposition rates, implying a minor role for modern N deposition on the trajectory of N status of North American forests. Our results demonstrate that current trends of global changes are likely to be consistent with forest oligotrophication into the foreseeable future, further constraining forest C fixation and potentially storage.
Related Concept Videos
Threats to Biodiversity
The Nitrogen Cycle
Trophic Efficiency
Global Climate Change
Habitat Fragmentation
Adaptations that Reduce Water Loss

