MAIZE STOVER DEGRADATION UNDER THE INFLUENCE OF HALOXYFOP-METHYL UNDERDOSES

ABSTRACT One of the major constraints to sustainable tillage is the rapid decomposition of the dry matter. The mechanism known to facilitate this process is the interference in the metabolic pathways of lignin polymers from spraying herbicide underdoses. This study has aimed to verify the effect of...

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Published in:Planta daninha Vol. 34; no. 3; pp. 509 - 516
Main Authors: JASPER, S.P., VELINI, E.D., PICOLI JR, G.J., CARBONARI, C.A., SILVA, P.R.A.
Format: Journal Article
Language:English
Published: Sociedade Brasileira da Ciência das Plantas Daninhas 01-09-2016
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Abstract ABSTRACT One of the major constraints to sustainable tillage is the rapid decomposition of the dry matter. The mechanism known to facilitate this process is the interference in the metabolic pathways of lignin polymers from spraying herbicide underdoses. This study has aimed to verify the effect of underdoses of haloxyfop-methyl in the synthesis of lignin and correlate the interference of this phenolic compound in the decomposition of maize stover. Two preliminary experiments were carried out in a greenhouse to set up the best underdoses to be applied in the yield area experiment. The treatments in the first experiment consisted of: 0; 2.5; 5 and 10 g a.i. ha-1 of haloxyfop-methyl herbicide. And in the second experiment: 0; 0.625; 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl herbicide. In all treatments were added 0.5% (v:v) of the surfactant ethoxylated nonyl phenol + dodecylbenzene sulfonic acid (Aterbane). For the yield area experiment, the underdoses used were 0, 0.625, 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl plus 0.5% (v:v) of the surfactant Aterbane. There was an increase in lignin content in the greenhouse experiments with the underdose 0.625 g a.i. ha-1. In this underdose, change in maize plants growth was not observed. In the field, the concentration of 0.625 g a.i. ha-1 of haloxyfop-methyl increased in 13% the lignin content without interfering in height and biomass of the plants, contributing to delay the decomposition rate in 4% in the residual stover. RESUMO Uma das maiores limitações para sustentabilidade do plantio direto é a rápida decomposição da matéria seca. O mecanismo conhecido para viabilizar esse processo é a interferência nas vias metabólicas dos polímeros de lignina a partir da aplicação de subdoses de herbicida. Este trabalho teve por objetivos verificar o efeito de subdoses do haloxyfop-methyl na síntese da lignina e correlacionar a interferência desse composto fenólico na decomposição da palhada do milho. Dois experimentos preliminares em casa de vegetação foram conduzidos para ajuste das melhores subdoses a serem aplicadas no experimento em área de produção. Os tratamentos, no primeiro experimento, constituíram-se da aplicação do herbicida haloxyfop-methyl nas subdoses de 0, 2,5, 5 e 10 g i.a. ha-1 e, no segundo, nas subdoses de 0, 0,625, 1,25 e 2,5 g i.a. ha-1. Em todos os tratamentos foi adicionado 0,5% (v:v) do surfatante nonil fenol etoxilado+ácido dodecilbenzeno sulfônico (Aterbane). Para o experimento em área de produção, foram utilizadas as subdoses de 0, 0,625, 1,25 e 2,5 g i.a. ha-1 de haloxyfop-methyl, acrescidas de 0,5% (v:v) do surfatante Aterbane. Houve aumento no teor de lignina nos experimentos conduzidos em casa de vegetação na subdose de 0,625 g i.a. ha-1. Nesta subdose não foi observada alteração no crescimento nas plantas de milho. No campo, a concentração de 0,625 g i.a. ha-1 do haloxyfop-methyl aumentou em 13% o teor de lignina sem interferir na altura e na biomassa das plantas, o que contribuiu para retardar a velocidade de decomposição em 4% na palhada residual.
AbstractList ABSTRACT One of the major constraints to sustainable tillage is the rapid decomposition of the dry matter. The mechanism known to facilitate this process is the interference in the metabolic pathways of lignin polymers from spraying herbicide underdoses. This study has aimed to verify the effect of underdoses of haloxyfop-methyl in the synthesis of lignin and correlate the interference of this phenolic compound in the decomposition of maize stover. Two preliminary experiments were carried out in a greenhouse to set up the best underdoses to be applied in the yield area experiment. The treatments in the first experiment consisted of: 0; 2.5; 5 and 10 g a.i. ha-1 of haloxyfop-methyl herbicide. And in the second experiment: 0; 0.625; 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl herbicide. In all treatments were added 0.5% (v:v) of the surfactant ethoxylated nonyl phenol + dodecylbenzene sulfonic acid (Aterbane). For the yield area experiment, the underdoses used were 0, 0.625, 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl plus 0.5% (v:v) of the surfactant Aterbane. There was an increase in lignin content in the greenhouse experiments with the underdose 0.625 g a.i. ha-1. In this underdose, change in maize plants growth was not observed. In the field, the concentration of 0.625 g a.i. ha-1 of haloxyfop-methyl increased in 13% the lignin content without interfering in height and biomass of the plants, contributing to delay the decomposition rate in 4% in the residual stover.
ABSTRACT One of the major constraints to sustainable tillage is the rapid decomposition of the dry matter. The mechanism known to facilitate this process is the interference in the metabolic pathways of lignin polymers from spraying herbicide underdoses. This study has aimed to verify the effect of underdoses of haloxyfop-methyl in the synthesis of lignin and correlate the interference of this phenolic compound in the decomposition of maize stover. Two preliminary experiments were carried out in a greenhouse to set up the best underdoses to be applied in the yield area experiment. The treatments in the first experiment consisted of: 0; 2.5; 5 and 10 g a.i. ha-1 of haloxyfop-methyl herbicide. And in the second experiment: 0; 0.625; 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl herbicide. In all treatments were added 0.5% (v:v) of the surfactant ethoxylated nonyl phenol + dodecylbenzene sulfonic acid (Aterbane). For the yield area experiment, the underdoses used were 0, 0.625, 1.25 and 2.5 g a.i. ha-1 of haloxyfop-methyl plus 0.5% (v:v) of the surfactant Aterbane. There was an increase in lignin content in the greenhouse experiments with the underdose 0.625 g a.i. ha-1. In this underdose, change in maize plants growth was not observed. In the field, the concentration of 0.625 g a.i. ha-1 of haloxyfop-methyl increased in 13% the lignin content without interfering in height and biomass of the plants, contributing to delay the decomposition rate in 4% in the residual stover. RESUMO Uma das maiores limitações para sustentabilidade do plantio direto é a rápida decomposição da matéria seca. O mecanismo conhecido para viabilizar esse processo é a interferência nas vias metabólicas dos polímeros de lignina a partir da aplicação de subdoses de herbicida. Este trabalho teve por objetivos verificar o efeito de subdoses do haloxyfop-methyl na síntese da lignina e correlacionar a interferência desse composto fenólico na decomposição da palhada do milho. Dois experimentos preliminares em casa de vegetação foram conduzidos para ajuste das melhores subdoses a serem aplicadas no experimento em área de produção. Os tratamentos, no primeiro experimento, constituíram-se da aplicação do herbicida haloxyfop-methyl nas subdoses de 0, 2,5, 5 e 10 g i.a. ha-1 e, no segundo, nas subdoses de 0, 0,625, 1,25 e 2,5 g i.a. ha-1. Em todos os tratamentos foi adicionado 0,5% (v:v) do surfatante nonil fenol etoxilado+ácido dodecilbenzeno sulfônico (Aterbane). Para o experimento em área de produção, foram utilizadas as subdoses de 0, 0,625, 1,25 e 2,5 g i.a. ha-1 de haloxyfop-methyl, acrescidas de 0,5% (v:v) do surfatante Aterbane. Houve aumento no teor de lignina nos experimentos conduzidos em casa de vegetação na subdose de 0,625 g i.a. ha-1. Nesta subdose não foi observada alteração no crescimento nas plantas de milho. No campo, a concentração de 0,625 g i.a. ha-1 do haloxyfop-methyl aumentou em 13% o teor de lignina sem interferir na altura e na biomassa das plantas, o que contribuiu para retardar a velocidade de decomposição em 4% na palhada residual.
Author JASPER, S.P.
PICOLI JR, G.J.
VELINI, E.D.
CARBONARI, C.A.
SILVA, P.R.A.
AuthorAffiliation Universidade Federal do Paraná
Universidade Estadual Paulista
AuthorAffiliation_xml – name: Universidade Estadual Paulista
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  surname: JASPER
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  fullname: CARBONARI, C.A.
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  surname: SILVA
  fullname: SILVA, P.R.A.
  organization: Universidade Estadual Paulista, Brazil
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Cites_doi 10.1590/S0100-204X2010000200004
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Issue 3
Keywords growth stimulus
estímulo de crescimento
Zea mays
levels of lignin
herbicida
lignificação
herbicide
Language English
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Snippet ABSTRACT One of the major constraints to sustainable tillage is the rapid decomposition of the dry matter. The mechanism known to facilitate this process is...
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SubjectTerms growth stimulus
herbicide
levels of lignin
PLANT SCIENCES
Zea mays
Title MAIZE STOVER DEGRADATION UNDER THE INFLUENCE OF HALOXYFOP-METHYL UNDERDOSES
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