Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice

In rice crops, fertilization is a naturalized practice, although inefficient, that could be improved by applying foliar fertilization. Phytoprostanes (PhytoPs) and phytofurans (PhytoFs) are products of α-linolenic acid peroxidation, useful as biomarkers of oxidative degradation in higher plants. The...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Pinciroli, María, Domínguez Perles, R., Abellán, A., Bultel Poncé, V., Durand, T., Galano, J. M., Ferreres, F., Gil Izquierdo, Á.
Formato: Articulo
Lenguaje:Inglés
Publicado: 2019
Materias:
Acceso en línea:http://sedici.unlp.edu.ar/handle/10915/154333
Aporte de:
id I19-R120-10915-154333
record_format dspace
spelling I19-R120-10915-1543332023-06-14T20:04:33Z http://sedici.unlp.edu.ar/handle/10915/154333 issn:1520-5118 Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice Pinciroli, María Domínguez Perles, R. Abellán, A. Bultel Poncé, V. Durand, T. Galano, J. M. Ferreres, F. Gil Izquierdo, Á. 2019 2023-06-14T18:20:40Z en Ciencias Agrarias Oryza sativa foliar fertilization genotypes protein grain phytoprostanes phytofurans In rice crops, fertilization is a naturalized practice, although inefficient, that could be improved by applying foliar fertilization. Phytoprostanes (PhytoPs) and phytofurans (PhytoFs) are products of α-linolenic acid peroxidation, useful as biomarkers of oxidative degradation in higher plants. The objective was to determine the effect of the foliar fertilization on the concentration of PhytoPs and PhytoFs and its relationships with modifications of yield and quality of rice productions. It was described that the concentration of biomarkers of stress decreased with the application of foliar fertilization, being the response significantly different depending the genotypes and compound monitored. Moreover, fertilization did not modify significantly the parameters of yield (961.2 g m−2), 1000 whole-grain (21.2 g), and protein content (10.7% dry matter). Therefore, this is the first work that describes the effect of fertilization on PhytoPs and PhytoFs in rice genotypes and reinforces the capacity of these compounds as biomarkers to monitor specific abiotic stress, in this case, represented by nutritional stress. Facultad de Ciencias Agrarias y Forestales Articulo Articulo http://creativecommons.org/licenses/by/4.0/ Creative Commons Attribution 4.0 International (CC BY 4.0) application/pdf 597-605
institution Universidad Nacional de La Plata
institution_str I-19
repository_str R-120
collection SEDICI (UNLP)
language Inglés
topic Ciencias Agrarias
Oryza sativa
foliar fertilization
genotypes
protein grain
phytoprostanes
phytofurans
spellingShingle Ciencias Agrarias
Oryza sativa
foliar fertilization
genotypes
protein grain
phytoprostanes
phytofurans
Pinciroli, María
Domínguez Perles, R.
Abellán, A.
Bultel Poncé, V.
Durand, T.
Galano, J. M.
Ferreres, F.
Gil Izquierdo, Á.
Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
topic_facet Ciencias Agrarias
Oryza sativa
foliar fertilization
genotypes
protein grain
phytoprostanes
phytofurans
description In rice crops, fertilization is a naturalized practice, although inefficient, that could be improved by applying foliar fertilization. Phytoprostanes (PhytoPs) and phytofurans (PhytoFs) are products of α-linolenic acid peroxidation, useful as biomarkers of oxidative degradation in higher plants. The objective was to determine the effect of the foliar fertilization on the concentration of PhytoPs and PhytoFs and its relationships with modifications of yield and quality of rice productions. It was described that the concentration of biomarkers of stress decreased with the application of foliar fertilization, being the response significantly different depending the genotypes and compound monitored. Moreover, fertilization did not modify significantly the parameters of yield (961.2 g m−2), 1000 whole-grain (21.2 g), and protein content (10.7% dry matter). Therefore, this is the first work that describes the effect of fertilization on PhytoPs and PhytoFs in rice genotypes and reinforces the capacity of these compounds as biomarkers to monitor specific abiotic stress, in this case, represented by nutritional stress.
format Articulo
Articulo
author Pinciroli, María
Domínguez Perles, R.
Abellán, A.
Bultel Poncé, V.
Durand, T.
Galano, J. M.
Ferreres, F.
Gil Izquierdo, Á.
author_facet Pinciroli, María
Domínguez Perles, R.
Abellán, A.
Bultel Poncé, V.
Durand, T.
Galano, J. M.
Ferreres, F.
Gil Izquierdo, Á.
author_sort Pinciroli, María
title Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
title_short Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
title_full Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
title_fullStr Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
title_full_unstemmed Statement of Foliar Fertilization Impact on Yield, Composition, and Oxidative Biomarkers in Rice
title_sort statement of foliar fertilization impact on yield, composition, and oxidative biomarkers in rice
publishDate 2019
url http://sedici.unlp.edu.ar/handle/10915/154333
work_keys_str_mv AT pincirolimaria statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT dominguezperlesr statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT abellana statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT bultelponcev statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT durandt statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT galanojm statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT ferreresf statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
AT gilizquierdoa statementoffoliarfertilizationimpactonyieldcompositionandoxidativebiomarkersinrice
_version_ 1768902316734283776