Industrial revolution markedly increased the environmental contamination by different pollutants, which include the metal lead (Pb). The phytoremediation potential of native species from tropical regions is little known, especially for woody plants. The present study aimed to evaluate the performance of Lonchocarpus cultratus (Fabaceae), a tree species from the Brazilian savanna, grown in soil that was artificially contaminated with increasing Pb concentrations (control and 4 Pb treatments, 56, 120, 180, and 292 mg kg) for 6 months. The biomass of L. cultratus was not depressed by exposure to Pb, despite the high accumulation of this metal (up to 7421.23 μg plant), indicating a high plant tolerance to this trace metal. Lead was mainly accumulated in roots (from 67 to 99%), suggesting that the low root-to-shoot Pb translocation is a plant strategy to avoid Pb-induced damages in photosynthetic tissues. Accordingly, the content of chlorophylls a and b was maintained at similar levels between Pb-treated and control plants. Moreover, increments in leaf area were noticed in Pb-treated plants in comparison to the control plants (on average, 24.7%). In addition, root length was boosted in plants under Pb exposure (22.6-66.7%). In conclusion, L. cultratus is able to endure the exposure to high Pb concentrations in soil, being a potential plant species to be used for Pb phytostabilization in metal-contaminated soils in tropical regions.
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http://dx.doi.org/10.1007/s11356-021-15856-5 | DOI Listing |
J Pharm Pharmacol
January 2022
Laboratory of Applied Immunology, Center of Medical and Pharmaceutical Sciences, Western Paraná State University (Unioeste), Cascavel, Paraná, Brazil.
Objectives: This study aimed to evaluate the in vitro anti-Leishmania activity of chalcone-rich three extracts (LDR, LHR and LMR) from Lonchocarpus cultratus (Vell.) A.M.
View Article and Find Full Text PDFEnviron Sci Pollut Res Int
September 2021
Instituto Federal Goiano, Campus Rio Verde, Rio Verde, Goiás, Brazil.
Industrial revolution markedly increased the environmental contamination by different pollutants, which include the metal lead (Pb). The phytoremediation potential of native species from tropical regions is little known, especially for woody plants. The present study aimed to evaluate the performance of Lonchocarpus cultratus (Fabaceae), a tree species from the Brazilian savanna, grown in soil that was artificially contaminated with increasing Pb concentrations (control and 4 Pb treatments, 56, 120, 180, and 292 mg kg) for 6 months.
View Article and Find Full Text PDFJ Infect Dev Ctries
March 2021
Laboratory of Applied Immunology, Center of Medical and Pharmaceutical Sciences, Western Parana State University, Cascavel, PR, Brazil.
Introduction: Trypanosoma cruzi is the agent of Chagas' disease and affects approximately 6-8 million people worldwide. The search for new anti-T. cruzi drugs are relevant because only two drugs exist actually.
View Article and Find Full Text PDFSaudi J Biol Sci
January 2021
Center of Medical and Pharmaceutical Sciences, Western Parana State University (UNIOESTE), 2069 Universitaria St., Cascavel, PR, Brazil.
is the agent of Chagas disease, an infection that affects around 8 million people worldwide. The search for new anti- drugs are relevant, mainly because the treatment of this disease is limited to two drugs. The objective of this study was to investigate the trypanocidal and cytotoxic activity and elucidate the chemical profile of extracts from the roots of the .
View Article and Find Full Text PDFNat Prod Res
June 2021
Departamento de Química, Universidade Estadual de Maringá, Maringá, Brazil.
The aerial parts of were submitted to a phytopharmacological investigation in order to isolate and identify the major secondary metabolites and evaluate its crude extract, fractions and isolated compounds for antiproliferative activity. Seven compounds were isolated and identified as the chalcones 2',4'-dihydroxy-5'-prenylchalcone () and isocordoin (), the flavanone 8-prenylpinocembrin (), the alkaloid 4-hydroxy--methylproline (), the triterpenes lupeol and lupenone. These compounds were identified by nuclear magnetic resonance of H and C data in comparison with literature.
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