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Soil acidification controls invasive plant species in the restoration of degraded Cerrado grasslands

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posted on 2025-08-02, 12:56 authored by D Lira‐Martins, RO Xavier, GG Mazzochini, LS Verona, T Andreuccetti, ÉS Martins, FV de Barros, MN Furtado, B Stein, A Abrahão, A Sampaio, I Schmidt, L Rowland, RS Oliveira
The Cerrado, South America's largest savanna, has acidic, nutrient‐poor soils and its native plants thrive under these conditions. However, abandoned pastures historically undergo changes in chemical properties due to interventions like liming and fertilizer use. This favors invasive African grasses and hinders native plants, impacting restoration efforts. In a Cerrado grassland undergoing restoration study, we tested whether soil acidification could restore native soil conditions and control invasives using 56 plots across 14 blocks. We hypothesized that decreased soil pH and nutrient availability would reduce invasive biomass and enhance diversity. We show that acidification reduced invasive biomass by 71%, with acidification negatively affecting invasives while sparing natives. Maintaining nutrient‐poor soil conditions can help to control invasive grasses in restoration projects, as fertilizer application can favor invasive species establishment. Soil acidification effectiveness depends on local nutrient levels. Areas with high soil cation content may require larger amendment quantities. Restoration strategies in nutrient‐poor ecosystems should aim recovering historical soil conditions to control invasives growth and support slow‐growing native plants.

Funding

2019/07773-1

2019/18145-1

2019/18176-4

2019/23208-2

FAPESP

NE/N014022/1

NE/S000011/1

Natural Environment Research Council (NERC)

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Rights

© 2024 The author(s). For the purpose of open access, the author has applied a Creative Commons Attribution (CC BY) licence to any Author Accepted Manuscript version arising from this submission.

Submission date

2023-11-22

Notes

This is the final version. Available from Wiley via the DOI in this record.

Journal

Restoration Ecology

Publisher

Wiley / Society for Ecological Restoration

Version

  • Accepted Manuscript

Language

en

FCD date

2024-10-28T13:46:44Z

FOA date

2025-02-21T14:41:35Z

Citation

Vol. 33 (1), article e14294

Department

  • Geography

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