Evaluation of Leguminous Plants as Phytoremediator Species in Soil with Pesticide and Vinasse Interactions

Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world’s largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation...

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Veröffentlicht in:Plants (Basel) Jg. 14; H. 20; S. 3137
Hauptverfasser: Aragão, Munick Beato, Ribeiro, Emanuella Roberto, Frias, Yanca Araujo, Cruz, Victor Hugo, Valério, Thalia Silva, Batista, Alexandre Ribeiro, Ferreira, Paulo Henrique Frata, Simionatto, Henzo Henrique, Lopes, Paulo Renato Matos
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Sprache:Englisch
Veröffentlicht: Switzerland MDPI AG 11.10.2025
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ISSN:2223-7747, 2223-7747
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Abstract Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world’s largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation, are needed to mitigate negative impacts on soil quality. This study assessed the phytoremediation potential of Canavalia ensiformis and Mucuna pruriens in soils contaminated with tebuthiuron, thiamethoxam, and vinasse under greenhouse conditions. Experiments used a completely randomized design (five replicates, 4 × 2 factorial). Plant development impacts on the sentinel species Crotalaria juncea, and ecotoxicity via Lactuca sativa bioassays were evaluated. Tebuthiuron strongly inhibited C. ensiformis, while thiamethoxam showed mild stimulatory effects. M. pruriens maintained better growth in the presence of contaminants. Bioassays revealed greater residual toxicity in tebuthiuron treatments. Overall, M. pruriens demonstrated superior biomass production and capacity to lessen soil toxicity, underscoring its potential as a sustainable tool for phytoremediation of pesticide-impacted soils.
AbstractList Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world’s largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation, are needed to mitigate negative impacts on soil quality. This study assessed the phytoremediation potential of Canavalia ensiformis and Mucuna pruriens in soils contaminated with tebuthiuron, thiamethoxam, and vinasse under greenhouse conditions. Experiments used a completely randomized design (five replicates, 4 × 2 factorial). Plant development impacts on the sentinel species Crotalaria juncea, and ecotoxicity via Lactuca sativa bioassays were evaluated. Tebuthiuron strongly inhibited C. ensiformis, while thiamethoxam showed mild stimulatory effects. M. pruriens maintained better growth in the presence of contaminants. Bioassays revealed greater residual toxicity in tebuthiuron treatments. Overall, M. pruriens demonstrated superior biomass production and capacity to lessen soil toxicity, underscoring its potential as a sustainable tool for phytoremediation of pesticide-impacted soils.
Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world's largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation, are needed to mitigate negative impacts on soil quality. This study assessed the phytoremediation potential of and in soils contaminated with tebuthiuron, thiamethoxam, and vinasse under greenhouse conditions. Experiments used a completely randomized design (five replicates, 4 × 2 factorial). Plant development impacts on the sentinel species , and ecotoxicity via bioassays were evaluated. Tebuthiuron strongly inhibited , while thiamethoxam showed mild stimulatory effects. maintained better growth in the presence of contaminants. Bioassays revealed greater residual toxicity in tebuthiuron treatments. Overall, demonstrated superior biomass production and capacity to lessen soil toxicity, underscoring its potential as a sustainable tool for phytoremediation of pesticide-impacted soils.
Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world's largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation, are needed to mitigate negative impacts on soil quality. This study assessed the phytoremediation potential of Canavalia ensiformis and Mucuna pruriens in soils contaminated with tebuthiuron, thiamethoxam, and vinasse under greenhouse conditions. Experiments used a completely randomized design (five replicates, 4 × 2 factorial). Plant development impacts on the sentinel species Crotalaria juncea, and ecotoxicity via Lactuca sativa bioassays were evaluated. Tebuthiuron strongly inhibited C. ensiformis, while thiamethoxam showed mild stimulatory effects. M. pruriens maintained better growth in the presence of contaminants. Bioassays revealed greater residual toxicity in tebuthiuron treatments. Overall, M. pruriens demonstrated superior biomass production and capacity to lessen soil toxicity, underscoring its potential as a sustainable tool for phytoremediation of pesticide-impacted soils.Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world's largest producer. Intensive cultivation demands pesticides like tebuthiuron and thiamethoxam, while fertigation with vinasse may alter their environmental behavior. Sustainable approaches, such as phytoremediation, are needed to mitigate negative impacts on soil quality. This study assessed the phytoremediation potential of Canavalia ensiformis and Mucuna pruriens in soils contaminated with tebuthiuron, thiamethoxam, and vinasse under greenhouse conditions. Experiments used a completely randomized design (five replicates, 4 × 2 factorial). Plant development impacts on the sentinel species Crotalaria juncea, and ecotoxicity via Lactuca sativa bioassays were evaluated. Tebuthiuron strongly inhibited C. ensiformis, while thiamethoxam showed mild stimulatory effects. M. pruriens maintained better growth in the presence of contaminants. Bioassays revealed greater residual toxicity in tebuthiuron treatments. Overall, M. pruriens demonstrated superior biomass production and capacity to lessen soil toxicity, underscoring its potential as a sustainable tool for phytoremediation of pesticide-impacted soils.
Audience Academic
Author Simionatto, Henzo Henrique
Cruz, Victor Hugo
Ribeiro, Emanuella Roberto
Lopes, Paulo Renato Matos
Aragão, Munick Beato
Ferreira, Paulo Henrique Frata
Frias, Yanca Araujo
Valério, Thalia Silva
Batista, Alexandre Ribeiro
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  givenname: Victor Hugo
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Keywords bioremediation
Canavalia ensiformis
Mucuna pruriens
soil ecotoxicity
tebuthiuron
thiamethoxam
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  publication-title: Int. J. Phytoremediat.
  doi: 10.1080/15226514.2020.1825329
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Snippet Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world’s largest producer. Intensive cultivation demands pesticides like...
Sugarcane is a key crop for sugar, biofuels, and bioenergy, with Brazil as the world's largest producer. Intensive cultivation demands pesticides like...
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SubjectTerms Beans
Bioassays
Biofuels
Biomass
Biomass energy
bioremediation
Canavalia ensiformis
Contaminants
Environmental behavior
Herbicides
Insecticides
Jack beans
Legumes
Leguminous plants
Mimosaceae
Mucuna pruriens
Pesticides
Phytoremediation
Phytotoxicity
Soil contamination
soil ecotoxicity
Soil pollution
Soil quality
Soils
Sugarcane
tebuthiuron
Thiamethoxam
Toxicity
Vinasse
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Title Evaluation of Leguminous Plants as Phytoremediator Species in Soil with Pesticide and Vinasse Interactions
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