4.7 Article

Estimated losses of plant biodiversity in the United States from historical N deposition (1985-2010)

Journal

ECOLOGY
Volume 94, Issue 7, Pages 1441-1448

Publisher

ECOLOGICAL SOC AMER
DOI: 10.1890/12-2016.1

Keywords

biodiversity; critical loads; ecoregion; herbaceous; nitrogen deposition

Categories

Funding

  1. Direct For Biological Sciences [1019522] Funding Source: National Science Foundation
  2. Division Of Environmental Biology [1019522] Funding Source: National Science Foundation

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Although nitrogen (N) deposition is a significant threat to herbaceous plant biodiversity worldwide, it is not a new stressor for many developed regions. Only recently has it become possible to estimate historical impacts nationally for the United States. We used 26 years (1985-2010) of deposition data, with ecosystem-specific functional responses from local field experiments and a national critical loads (CL) database, to generate scenario-based estimates of herbaceous species loss. Here we show that, in scenarios using the low end of the CL range, N deposition exceeded critical loads over 0.38, 6.5, 13.1, 88.6, and 222.1 million ha for the Mediterranean California, North American Desert, Northwestern Forested Mountains, Great Plains, and Eastern Forest ecoregions, respectively, with corresponding species losses ranging from <1% to 30%. When we ran scenarios assuming ecosystems were less sensitive (using a common CL of 10 kgha(-1)yr(-1), and the high end of the CL range) minimal losses were estimated. The large range in projected impacts among scenarios implies uncertainty as to whether current critical loads provide protection to terrestrial plant biodiversity nationally and urge greater research in refining critical loads for U.S. ecosystems.

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