Native leguminous trees as natural solutions for herbicide‐polluted soils: evidence from Inga edulis

Abstract Introduction The extensive use of 2,4‐dichlorophenoxyacetic acid (2,4‐D) in tropical agricultural and pasture systems has heightened concerns regarding soil contamination, nontarget plant injury, and risks to adjacent natural ecosystems. Identifying native species capable of both tolerating and mitigating herbicide residues is therefore essential for developing effective phytoremediation strategies. Objectives The objective of this study was to evaluate (i) the tolerance of Inga edulis , a fast‐growing nitrogen‐fixing tree, to environmentally relevant concentrations of 2,4‐D and (ii) its capacity to reduce residual herbicide toxicity in the soil. Methods Two complementary greenhouse experiments were conducted. In the tolerance assay, I. edulis seedlings were cultivated for 90 days in a dystrophic Red‐Yellow Latosol amended with four levels of 2,4‐D residues (0, 0, 5, 1, and 2 mL L −1 ). Growth parameters—including height, stem diameter, canopy area, leaf production, and biomass—were quantified, along with visual intoxication scores. In the subsequent bioassay, the sensitive species Bidens pilosa was grown in soils previously cultivated with or without I. edulis to assess residual toxicity. Results Inga edulis exhibited mild foliar symptoms but no reductions in growth or biomass across residue levels, indicating strong tolerance. Soils previously cultivated with I. edulis consistently reduced intoxication and enhanced biomass of B. pilosa , demonstrating attenuation of 2,4‐D phytotoxicity. Conclusion These results show that I. edulis can simultaneously withstand and mitigate 2,4‐D contamination.

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Publication Details

Journal
Restoration Ecology
Published
2026-09-17
DOI
https://doi.org/10.1111/rec.70546
Primary Topic
Pesticide and Herbicide Environmental Studies
Type
article
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article

Native leguminous trees as natural solutions for herbicide‐polluted soils: evidence from Inga edulis

Israel Marinho Pereira, William Macedo Delarmelina, Fillipe Vieira de Araújo, José Barbosa dos Santos et al.
Restoration Ecology
Pesticide and Herbicide Environmental Studies
article

Native leguminous trees as natural solutions for herbicide‐polluted soils: evidence from Inga edulis

Israel Marinho Pereira, William Macedo Delarmelina, Fillipe Vieira de Araújo, José Barbosa dos Santos, Gabriela Madureira Barroso, Anna Isabel Guido Costa, Vanda Aparecida de Amorim
article en

Abstract

Abstract Introduction The extensive use of 2,4‐dichlorophenoxyacetic acid (2,4‐D) in tropical agricultural and pasture systems has heightened concerns regarding soil contamination, nontarget plant injury, and risks to adjacent natural ecosystems. Identifying native species capable of both tolerating and mitigating herbicide residues is therefore essential for developing effective phytoremediation strategies. Objectives The objective of this study was to evaluate (i) the tolerance of Inga edulis , a fast‐growing nitrogen‐fixing tree, to environmentally relevant concentrations of 2,4‐D and (ii) its capacity to reduce residual herbicide toxicity in the soil. Methods Two complementary greenhouse experiments were conducted. In the tolerance assay, I. edulis seedlings were cultivated for 90 days in a dystrophic Red‐Yellow Latosol amended with four levels of 2,4‐D residues (0, 0, 5, 1, and 2 mL L −1 ). Growth parameters—including height, stem diameter, canopy area, leaf production, and biomass—were quantified, along with visual intoxication scores. In the subsequent bioassay, the sensitive species Bidens pilosa was grown in soils previously cultivated with or without I. edulis to assess residual toxicity. Results Inga edulis exhibited mild foliar symptoms but no reductions in growth or biomass across residue levels, indicating strong tolerance. Soils previously cultivated with I. edulis consistently reduced intoxication and enhanced biomass of B. pilosa , demonstrating attenuation of 2,4‐D phytotoxicity. Conclusion These results show that I. edulis can simultaneously withstand and mitigate 2,4‐D contamination.

Restoration Ecology
Universidade Federal dos Vales do Jequitinhonha e Mucuri (BR), Instituto Federal do Espírito Santo (BR), Instituto Capixaba de Pesquisa, Assistência Técnica e Extensão Rural (BR), Universidade Federal do Espírito Santo (BR)
Life in Land
Openalex Percentile: Top 22%
Pesticide and Herbicide Environmental Studies
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