Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos

Detalhes bibliográficos
Autor(a) principal: Sasso, Victória Martini
Data de Publicação: 2020
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Manancial - Repositório Digital da UFSM
Texto Completo: http://repositorio.ufsm.br/handle/1/22238
Resumo: Brazil and the world have been facing serious soil contamination problems in the last decade. Among the numerous contaminants are heavy metals, which in turn may or may not be essential for human and plants development. Among the elements is chromium (Cr) which in high concentrations causes serious problems to human health. Some of the contaminated soil used in agriculture requires the knowledge of simple, efficient and cost-effective remediation technicians such as phytoremediation. In this context, the objective of the present study was to evaluate the phytoremediation potential of the Handroanthus chrysotrichus (yellow Ipe) and Handroanthus heptaphyllus (purple Ipe) species and the effect of Cr on plant physiology and biochemistry. The experiments were carried out at the greenhouse and at the Plant Physiology and Plant Nutrition Laboratory belonging to the Department of Biology of the Federal University of Santa Maria (UFSM), Santa Maria campus (RS). Part of the seeds of both species underwent germination test under the conditions of treatments of 0, 50, 100, 150 and 200 mg L-1 of Cr6+, while others were germinated and after initial growth sent to hydroponic system in greenhouse and submitted to the same treatments. After exposure to the different treatments, samples were collected and analyzed for physiological variables (fresh and dry biomass, plant height, root system biometric variables, leaf area and leaf number), biochemical (antioxidant enzymes, hydrogen peroxide content, lipid peroxidation and photosynthetic pigments) and photosynthetic variables. Toxicity symptoms were observed in the two species studied mainly at levels above 100 mg L-1. The germination of H. heptaphyllus was less affected that H. chrysotrichus, however, yellow ipe had greater tolerance to the presence of Cr in the root and leaf area, average root diameter, peroxidase enzyme activity, lipid peroxidation and presence of H2O2 in the roots, water use efficiency and internal CO2 concentration. It is possible to register that two species can be used as bioindicators of high temperature contamination Cr. However, even activating their defense motors and overcoming damage caused by damage above 100 mg L-1 has not been visualized, their use in projects of a Recovery of contaminated areas may still be suggested using previous studies of contamination of the area.
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spelling 2021-09-16T18:06:01Z2021-09-16T18:06:01Z2020-01-30http://repositorio.ufsm.br/handle/1/22238Brazil and the world have been facing serious soil contamination problems in the last decade. Among the numerous contaminants are heavy metals, which in turn may or may not be essential for human and plants development. Among the elements is chromium (Cr) which in high concentrations causes serious problems to human health. Some of the contaminated soil used in agriculture requires the knowledge of simple, efficient and cost-effective remediation technicians such as phytoremediation. In this context, the objective of the present study was to evaluate the phytoremediation potential of the Handroanthus chrysotrichus (yellow Ipe) and Handroanthus heptaphyllus (purple Ipe) species and the effect of Cr on plant physiology and biochemistry. The experiments were carried out at the greenhouse and at the Plant Physiology and Plant Nutrition Laboratory belonging to the Department of Biology of the Federal University of Santa Maria (UFSM), Santa Maria campus (RS). Part of the seeds of both species underwent germination test under the conditions of treatments of 0, 50, 100, 150 and 200 mg L-1 of Cr6+, while others were germinated and after initial growth sent to hydroponic system in greenhouse and submitted to the same treatments. After exposure to the different treatments, samples were collected and analyzed for physiological variables (fresh and dry biomass, plant height, root system biometric variables, leaf area and leaf number), biochemical (antioxidant enzymes, hydrogen peroxide content, lipid peroxidation and photosynthetic pigments) and photosynthetic variables. Toxicity symptoms were observed in the two species studied mainly at levels above 100 mg L-1. The germination of H. heptaphyllus was less affected that H. chrysotrichus, however, yellow ipe had greater tolerance to the presence of Cr in the root and leaf area, average root diameter, peroxidase enzyme activity, lipid peroxidation and presence of H2O2 in the roots, water use efficiency and internal CO2 concentration. It is possible to register that two species can be used as bioindicators of high temperature contamination Cr. However, even activating their defense motors and overcoming damage caused by damage above 100 mg L-1 has not been visualized, their use in projects of a Recovery of contaminated areas may still be suggested using previous studies of contamination of the area.O Brasil e o mundo vêm enfrentando problemas sérios de contaminação dos solos na última década. Dentre os numerosos contaminantes estão os metais pesados, estes por sua vez, podem ser ou não essenciais para o desenvolvimento humano e vegetal. Entre os essenciais encontra-se o cromo (Cr) que em concentrações elevadas é causador de sérios problemas a saúde humana. Com parte dos solos utilizados na agricultura contaminados é necessário o conhecimento de técnicas de remediação simples, eficientes e de baixo custo, como a fitorremediação. Nesse contexto, o objetivo do presente trabalho foi avaliar o potencial fitorremediador das espécies Handroanthus chrysotrichus (Ipê-amarelo) e Handroanthus heptaphyllus (Ipê-roxo) e o efeito do Cr na fisiologia e bioquímica das plantas. Os experimentos foram realizados na casa de vegetação e no Laboratório de Fisiologia Vegetal e Nutrição de Plantas pertencente ao Departamento de Biologia da Universidade Federal de Santa Maria (UFSM), campus de Santa Maria (RS). Parte das sementes de ambas as espécies passaram por teste de germinação in vitro sob as condições dos tratamentos de 0, 50, 100, 150 e 200 mg L-1 de Cr6+, enquanto outras foram germinadas e após crescimento inicial encaminhadas para sistema hidropônico em casa de vegetação e submetidas aos mesmos tratamentos. Após a exposição aos diferentes tratamentos, foi realizada a coleta de amostras e análise das variáveis morfológicas (biomassa fresca e seca, altura de plantas, variáveis biométricas do sistema radicular, área foliar e número de folhas), bioquímicas (enzimas antioxidantes, conteúdo de peróxido de hidrogênio, peroxidação lipídica e pigmentos fotossintéticos) e os parâmetros fotossintéticos. Foram observados sintomas de toxidez nas duas espécies estudadas, principalmente, em concentrações superiores a 100 mg L-1. A germinação de H. heptaphyllus foi menos afetada que a de H. chrysotrichus, entretanto o Ipê-amarelo apresentou maior tolerância a presença de Cr na área radicular e foliar, no diâmetro médio das raízes, na atividade da enzima peroxidase, na peroxidação lipídica e na presença de H2O2 nas raízes, na eficiência do uso da água e na concentração interna de CO2. É possível afirmar que as duas espécies podem ser utilizadas como bioindicadoras da contaminação por altas concentrações de Cr. Mesmo ativando seus mecanismos de defesa, a superação dos danos causados em concentrações acima de 100 mg L-1 não foi visualizada, contudo sua utilização em projetos de recuperação de áreas contaminadas ainda pode ser sugerida mediante estudos prévios de contaminação da área.Conselho Nacional de Pesquisa e Desenvolvimento Científico e Tecnológico - CNPqporUniversidade Federal de Santa MariaCentro de Ciências Naturais e ExatasPrograma de Pós-Graduação em AgrobiologiaUFSMBrasilCiências BiológicasAttribution-NonCommercial-NoDerivatives 4.0 Internationalhttp://creativecommons.org/licenses/by-nc-nd/4.0/info:eu-repo/semantics/openAccessMetal pesadoFitorremediaçãoIpê-roxoIpê-amareloToxidezHeavy metalPhytoremediationPurple ipeYellow ipeToxicityCNPQ::CIENCIAS BIOLOGICASPotencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) MattosStudy of the potential phytoremediation for chromium of Handroanthus chrysotrichus (Mart. ex DC.) Mattos and Handroanthus heptaphyllus (Vell.) 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dc.title.por.fl_str_mv Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
dc.title.alternative.eng.fl_str_mv Study of the potential phytoremediation for chromium of Handroanthus chrysotrichus (Mart. ex DC.) Mattos and Handroanthus heptaphyllus (Vell.) Mattos
title Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
spellingShingle Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
Sasso, Victória Martini
Metal pesado
Fitorremediação
Ipê-roxo
Ipê-amarelo
Toxidez
Heavy metal
Phytoremediation
Purple ipe
Yellow ipe
Toxicity
CNPQ::CIENCIAS BIOLOGICAS
title_short Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
title_full Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
title_fullStr Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
title_full_unstemmed Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
title_sort Potencial fitorremediador para cromo de Handroanthus chrysotrichus (Mart. ex DC.) Mattos e Handroanthus heptaphyllus (Vell.) Mattos
author Sasso, Victória Martini
author_facet Sasso, Victória Martini
author_role author
dc.contributor.advisor1.fl_str_mv Tabaldi, Luciane Almeri
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/7018571529110665
dc.contributor.advisor-co1.fl_str_mv Tarouco, Camila Peligriontti
dc.contributor.referee1.fl_str_mv Saldanha, Cleber
dc.contributor.referee2.fl_str_mv Turchetto, Felipe
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/9411200798445549
dc.contributor.author.fl_str_mv Sasso, Victória Martini
contributor_str_mv Tabaldi, Luciane Almeri
Tarouco, Camila Peligriontti
Saldanha, Cleber
Turchetto, Felipe
dc.subject.por.fl_str_mv Metal pesado
Fitorremediação
Ipê-roxo
Ipê-amarelo
Toxidez
topic Metal pesado
Fitorremediação
Ipê-roxo
Ipê-amarelo
Toxidez
Heavy metal
Phytoremediation
Purple ipe
Yellow ipe
Toxicity
CNPQ::CIENCIAS BIOLOGICAS
dc.subject.eng.fl_str_mv Heavy metal
Phytoremediation
Purple ipe
Yellow ipe
Toxicity
dc.subject.cnpq.fl_str_mv CNPQ::CIENCIAS BIOLOGICAS
description Brazil and the world have been facing serious soil contamination problems in the last decade. Among the numerous contaminants are heavy metals, which in turn may or may not be essential for human and plants development. Among the elements is chromium (Cr) which in high concentrations causes serious problems to human health. Some of the contaminated soil used in agriculture requires the knowledge of simple, efficient and cost-effective remediation technicians such as phytoremediation. In this context, the objective of the present study was to evaluate the phytoremediation potential of the Handroanthus chrysotrichus (yellow Ipe) and Handroanthus heptaphyllus (purple Ipe) species and the effect of Cr on plant physiology and biochemistry. The experiments were carried out at the greenhouse and at the Plant Physiology and Plant Nutrition Laboratory belonging to the Department of Biology of the Federal University of Santa Maria (UFSM), Santa Maria campus (RS). Part of the seeds of both species underwent germination test under the conditions of treatments of 0, 50, 100, 150 and 200 mg L-1 of Cr6+, while others were germinated and after initial growth sent to hydroponic system in greenhouse and submitted to the same treatments. After exposure to the different treatments, samples were collected and analyzed for physiological variables (fresh and dry biomass, plant height, root system biometric variables, leaf area and leaf number), biochemical (antioxidant enzymes, hydrogen peroxide content, lipid peroxidation and photosynthetic pigments) and photosynthetic variables. Toxicity symptoms were observed in the two species studied mainly at levels above 100 mg L-1. The germination of H. heptaphyllus was less affected that H. chrysotrichus, however, yellow ipe had greater tolerance to the presence of Cr in the root and leaf area, average root diameter, peroxidase enzyme activity, lipid peroxidation and presence of H2O2 in the roots, water use efficiency and internal CO2 concentration. It is possible to register that two species can be used as bioindicators of high temperature contamination Cr. However, even activating their defense motors and overcoming damage caused by damage above 100 mg L-1 has not been visualized, their use in projects of a Recovery of contaminated areas may still be suggested using previous studies of contamination of the area.
publishDate 2020
dc.date.issued.fl_str_mv 2020-01-30
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Centro de Ciências Naturais e Exatas
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dc.publisher.department.fl_str_mv Ciências Biológicas
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Centro de Ciências Naturais e Exatas
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