Communications Earth & Environment (Oct 2023)

Climate change and cropland management compromise soil integrity and multifunctionality

  • Marie Sünnemann,
  • Remy Beugnon,
  • Claudia Breitkreuz,
  • François Buscot,
  • Simone Cesarz,
  • Arwyn Jones,
  • Anika Lehmann,
  • Alfred Lochner,
  • Alberto Orgiazzi,
  • Thomas Reitz,
  • Matthias C. Rillig,
  • Martin Schädler,
  • Linnea C. Smith,
  • Anja Zeuner,
  • Carlos A. Guerra,
  • Nico Eisenhauer

DOI
https://doi.org/10.1038/s43247-023-01047-2
Journal volume & issue
Vol. 4, no. 1
pp. 1 – 9

Abstract

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Abstract Soils provide essential ecosystem functions that are threatened by climate change and intensified land use. We explore how climate and land use impact multiple soil function simultaneously, employing two datasets: (1) observational – 456 samples from the European Land Use/Land Cover Area Frame Survey; and (2) experimental – 80 samples from Germany’s Global Change Experimental Facility. We aim to investigate whether manipulative field experiment results align with observable climate, land use, and soil multifunctionality trends across Europe, measuring seven ecosystem functions to calculate soil multifunctionality. The observational data showed Europe-wide declines in soil multifunctionality under rising temperatures and dry conditions, worsened by cropland management. Our experimental data confirmed these relationships, suggesting that changes in climate will reduce soil multifunctionality across croplands and grasslands. Land use changes from grasslands to croplands threaten the integrity of soil systems, and enhancing soil multifunctionality in arable systems is key to maintain multifunctionality in a changing climate.