1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.

Detalhes bibliográficos
Autor(a) principal: SABINO, A. R.
Data de Publicação: 2019
Outros Autores: TAVARES, S. S., RIFFEL, A., LI, J. V., OLIVEIRA, D. J. A., FERES, C. I. M. A., HENRIQUE, L., OLIVEIRA, J. S., CORREIA, G. D. S., NASCIMENTO, T. G., HAWKES, G., SANTANA, A. E. G., HOLMES, E., BENDO, E. S.
Tipo de documento: Artigo
Idioma: por
Título da fonte: Repositório Institucional da EMBRAPA (Repository Open Access to Scientific Information from EMBRAPA - Alice)
Texto Completo: http://www.alice.cnptia.embrapa.br/alice/handle/doc/1118719
Resumo: Sugarcane(Saccharum officinarum)has been considered one of the most efficient energy crops, but its productionyield is sensitive to outbreaks of pest insects, especially the sugarcane borerDiatraea saccharalis. Geneticbreeding programs and biotechnology projects have been developed to decode the defense mechanisms of su-garcane against herbivorous insect attacks, and the develop plague-resistant plants. We performed metabolicprofile analysis of the SP791011 sugarcane variety?s response toDiatraea saccharalisherbivory, using NuclearMagnetic Resonance (NMR) spectroscopy of organic leaf extracts. The leaf response of SP791011 toD. saccharalisresulted in depletion of choline, alanine, sucrose, glutamate, trigonelline, and isomers (E)-aconitate, (Z)-aco-nitate, and higher expression of chlorogenic acid and other caffeic acid conjugates in sugarcane leaves. Theincrease in chlorogenic acid suggests the shikimic acid pathway was induced byD. saccharalisherbivory, in-creasing the biosynthesis of phenylpropanoids such as chlorogenic acid in the sugarcane leaves. In addition tothe herbivory test, we performed an in vivo biological assay by adding chlorogenic acid to an artificial diet toD.saccharaliscaterpillars. This assay demonstrated a decrease in the development time of the pupae compared withpupae from caterpillars raised under normal diet. However, deformations in moth wings fed with chlorogenicacid were observed for three concentrations tested (0.05 mg/mL, 0.5 mg/mL and 5 mg/mL) during the in vivobioassay. Chlorogenic acid may be considered a natural biopesticide and its production could be induced todevelop more resistant sugarcane varieties againstD. saccharalis.
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spelling 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.Cana de AçúcarInsetoInseto Para Controle BiológicoSugarcaneSugarcane(Saccharum officinarum)has been considered one of the most efficient energy crops, but its productionyield is sensitive to outbreaks of pest insects, especially the sugarcane borerDiatraea saccharalis. Geneticbreeding programs and biotechnology projects have been developed to decode the defense mechanisms of su-garcane against herbivorous insect attacks, and the develop plague-resistant plants. We performed metabolicprofile analysis of the SP791011 sugarcane variety?s response toDiatraea saccharalisherbivory, using NuclearMagnetic Resonance (NMR) spectroscopy of organic leaf extracts. The leaf response of SP791011 toD. saccharalisresulted in depletion of choline, alanine, sucrose, glutamate, trigonelline, and isomers (E)-aconitate, (Z)-aco-nitate, and higher expression of chlorogenic acid and other caffeic acid conjugates in sugarcane leaves. Theincrease in chlorogenic acid suggests the shikimic acid pathway was induced byD. saccharalisherbivory, in-creasing the biosynthesis of phenylpropanoids such as chlorogenic acid in the sugarcane leaves. In addition tothe herbivory test, we performed an in vivo biological assay by adding chlorogenic acid to an artificial diet toD.saccharaliscaterpillars. This assay demonstrated a decrease in the development time of the pupae compared withpupae from caterpillars raised under normal diet. However, deformations in moth wings fed with chlorogenicacid were observed for three concentrations tested (0.05 mg/mL, 0.5 mg/mL and 5 mg/mL) during the in vivobioassay. Chlorogenic acid may be considered a natural biopesticide and its production could be induced todevelop more resistant sugarcane varieties againstD. saccharalis.ADILSON R. SABINO; SHEILA S. TAVARES; ALESSANDRO RIFFEL, CPATC; JIA V. LI; DEMETRIOS J. A. OLIVEIRA; CHRYSTIAN I. M. A. FERES; JAIM S. OLIVEIRA; GONCALO D. S. CORREIA; ANDERSON R. SABINO; TICIANO G. NASCIMENTO; GEOFREY HAWKES; ANTONIO E. G. SANTANA; ELAINE HOLMES; EDSON S. BENTO.SABINO, A. R.TAVARES, S. S.RIFFEL, A.LI, J. V.OLIVEIRA, D. J. A.FERES, C. I. M. A.HENRIQUE, L.OLIVEIRA, J. S.CORREIA, G. D. S.SABINO, A. R.NASCIMENTO, T. G.HAWKES, G.SANTANA, A. E. G.HOLMES, E.BENDO, E. S.2020-01-14T18:15:08Z2020-01-14T18:15:08Z2020-01-1420192020-01-14T18:15:08Zinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleIndustrial Crops & Products, V. 140, 111651, 2019.http://www.alice.cnptia.embrapa.br/alice/handle/doc/1118719porinfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da EMBRAPA (Repository Open Access to Scientific Information from EMBRAPA - Alice)instname:Empresa Brasileira de Pesquisa Agropecuária (Embrapa)instacron:EMBRAPA2020-01-14T18:15:15Zoai:www.alice.cnptia.embrapa.br:doc/1118719Repositório InstitucionalPUBhttps://www.alice.cnptia.embrapa.br/oai/requestopendoar:21542020-01-14T18:15:15falseRepositório InstitucionalPUBhttps://www.alice.cnptia.embrapa.br/oai/requestcg-riaa@embrapa.bropendoar:21542020-01-14T18:15:15Repositório Institucional da EMBRAPA (Repository Open Access to Scientific Information from EMBRAPA - Alice) - Empresa Brasileira de Pesquisa Agropecuária (Embrapa)false
dc.title.none.fl_str_mv 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
title 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
spellingShingle 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
SABINO, A. R.
Cana de Açúcar
Inseto
Inseto Para Controle Biológico
Sugarcane
title_short 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
title_full 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
title_fullStr 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
title_full_unstemmed 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
title_sort 1H NMR metabolomic approach reveals chlorogenic acid as a response ofsugarcane induced by exposure toDiatraea saccharalis.
author SABINO, A. R.
author_facet SABINO, A. R.
TAVARES, S. S.
RIFFEL, A.
LI, J. V.
OLIVEIRA, D. J. A.
FERES, C. I. M. A.
HENRIQUE, L.
OLIVEIRA, J. S.
CORREIA, G. D. S.
NASCIMENTO, T. G.
HAWKES, G.
SANTANA, A. E. G.
HOLMES, E.
BENDO, E. S.
author_role author
author2 TAVARES, S. S.
RIFFEL, A.
LI, J. V.
OLIVEIRA, D. J. A.
FERES, C. I. M. A.
HENRIQUE, L.
OLIVEIRA, J. S.
CORREIA, G. D. S.
NASCIMENTO, T. G.
HAWKES, G.
SANTANA, A. E. G.
HOLMES, E.
BENDO, E. S.
author2_role author
author
author
author
author
author
author
author
author
author
author
author
author
dc.contributor.none.fl_str_mv ADILSON R. SABINO; SHEILA S. TAVARES; ALESSANDRO RIFFEL, CPATC; JIA V. LI; DEMETRIOS J. A. OLIVEIRA; CHRYSTIAN I. M. A. FERES; JAIM S. OLIVEIRA; GONCALO D. S. CORREIA; ANDERSON R. SABINO; TICIANO G. NASCIMENTO; GEOFREY HAWKES; ANTONIO E. G. SANTANA; ELAINE HOLMES; EDSON S. BENTO.
dc.contributor.author.fl_str_mv SABINO, A. R.
TAVARES, S. S.
RIFFEL, A.
LI, J. V.
OLIVEIRA, D. J. A.
FERES, C. I. M. A.
HENRIQUE, L.
OLIVEIRA, J. S.
CORREIA, G. D. S.
SABINO, A. R.
NASCIMENTO, T. G.
HAWKES, G.
SANTANA, A. E. G.
HOLMES, E.
BENDO, E. S.
dc.subject.por.fl_str_mv Cana de Açúcar
Inseto
Inseto Para Controle Biológico
Sugarcane
topic Cana de Açúcar
Inseto
Inseto Para Controle Biológico
Sugarcane
description Sugarcane(Saccharum officinarum)has been considered one of the most efficient energy crops, but its productionyield is sensitive to outbreaks of pest insects, especially the sugarcane borerDiatraea saccharalis. Geneticbreeding programs and biotechnology projects have been developed to decode the defense mechanisms of su-garcane against herbivorous insect attacks, and the develop plague-resistant plants. We performed metabolicprofile analysis of the SP791011 sugarcane variety?s response toDiatraea saccharalisherbivory, using NuclearMagnetic Resonance (NMR) spectroscopy of organic leaf extracts. The leaf response of SP791011 toD. saccharalisresulted in depletion of choline, alanine, sucrose, glutamate, trigonelline, and isomers (E)-aconitate, (Z)-aco-nitate, and higher expression of chlorogenic acid and other caffeic acid conjugates in sugarcane leaves. Theincrease in chlorogenic acid suggests the shikimic acid pathway was induced byD. saccharalisherbivory, in-creasing the biosynthesis of phenylpropanoids such as chlorogenic acid in the sugarcane leaves. In addition tothe herbivory test, we performed an in vivo biological assay by adding chlorogenic acid to an artificial diet toD.saccharaliscaterpillars. This assay demonstrated a decrease in the development time of the pupae compared withpupae from caterpillars raised under normal diet. However, deformations in moth wings fed with chlorogenicacid were observed for three concentrations tested (0.05 mg/mL, 0.5 mg/mL and 5 mg/mL) during the in vivobioassay. Chlorogenic acid may be considered a natural biopesticide and its production could be induced todevelop more resistant sugarcane varieties againstD. saccharalis.
publishDate 2019
dc.date.none.fl_str_mv 2019
2020-01-14T18:15:08Z
2020-01-14T18:15:08Z
2020-01-14
2020-01-14T18:15:08Z
dc.type.driver.fl_str_mv info:eu-repo/semantics/publishedVersion
info:eu-repo/semantics/article
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv Industrial Crops & Products, V. 140, 111651, 2019.
http://www.alice.cnptia.embrapa.br/alice/handle/doc/1118719
identifier_str_mv Industrial Crops & Products, V. 140, 111651, 2019.
url http://www.alice.cnptia.embrapa.br/alice/handle/doc/1118719
dc.language.iso.fl_str_mv por
language por
dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
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