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Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators

Soil nitrogen mineralization potential (N(min)) has to be spatially quantified to enable farmers to vary N fertilizer rates, optimize crop yields, and minimize N transfer from soils to the environment. The study objectives were to assess the spatial variability in soil N(min) potential based on clay...

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Autores principales: Simard, R.R., Ziadi, N., Nolin, M.C., Cambouris, A.N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: TheScientificWorldJOURNAL 2001
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6083927/
https://www.ncbi.nlm.nih.gov/pubmed/12805786
http://dx.doi.org/10.1100/tsw.2001.329
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author Simard, R.R.
Ziadi, N.
Nolin, M.C.
Cambouris, A.N.
author_facet Simard, R.R.
Ziadi, N.
Nolin, M.C.
Cambouris, A.N.
author_sort Simard, R.R.
collection PubMed
description Soil nitrogen mineralization potential (N(min)) has to be spatially quantified to enable farmers to vary N fertilizer rates, optimize crop yields, and minimize N transfer from soils to the environment. The study objectives were to assess the spatial variability in soil N(min) potential based on clay and organic matter (OM) contents and the impact of grouping soils using these criteria on corn grain (Zea mays L.) yield, N uptake response curves to N fertilizer, and soil residual N. Four indicators were used: OM content and three equations involving OM and clay content. The study was conducted on a 15-ha field near Montreal, Quebec, Canada. In the spring 2000, soil samples (n = 150) were collected on a 30- x 30-m grid and six rates of N fertilizer (0 to 250 kg N ha(-1)) were applied. Kriged maps of particle size showed areas of clay, clay loam, and fine sandy loam soils. The N(min) indicators were spatially structured but soil nitrate (NO3(–)) was not. The N fertilizer rate to reach maximum grain yield (N(max)), as estimated by a quadratic model, varied among textural classes and N(min) indicators, and ranged from 159 to 250 kg N ha(-1). The proportion of variability (R(2)) and the standard error of the estimate (SE) varied among textural groups and N(min) indicators. The R(2) ranged from 0.53 to 0.91 and the SE from 0.13 to 1.62. Corn grain N uptake was significantly affected by N fertilizer and the pattern of response differed with soil texture. For the 50 kg N ha(-1) rate, the apparent N(min) potential (ANM) was significantly larger in the clay loam (122 kg ha(-1)) than in the fine sandy loam (80 kg ha(-1)) or clay (64 kg ha(-1)) soils. The fall soil residual N was not affected by N fertlizer inputs. Textural classes can be used to predict N(max). The N(min) indicators may also assist the variable rate N fertilizer inputs for corn production.
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spelling pubmed-60839272018-08-26 Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators Simard, R.R. Ziadi, N. Nolin, M.C. Cambouris, A.N. ScientificWorldJournal Research Article Soil nitrogen mineralization potential (N(min)) has to be spatially quantified to enable farmers to vary N fertilizer rates, optimize crop yields, and minimize N transfer from soils to the environment. The study objectives were to assess the spatial variability in soil N(min) potential based on clay and organic matter (OM) contents and the impact of grouping soils using these criteria on corn grain (Zea mays L.) yield, N uptake response curves to N fertilizer, and soil residual N. Four indicators were used: OM content and three equations involving OM and clay content. The study was conducted on a 15-ha field near Montreal, Quebec, Canada. In the spring 2000, soil samples (n = 150) were collected on a 30- x 30-m grid and six rates of N fertilizer (0 to 250 kg N ha(-1)) were applied. Kriged maps of particle size showed areas of clay, clay loam, and fine sandy loam soils. The N(min) indicators were spatially structured but soil nitrate (NO3(–)) was not. The N fertilizer rate to reach maximum grain yield (N(max)), as estimated by a quadratic model, varied among textural classes and N(min) indicators, and ranged from 159 to 250 kg N ha(-1). The proportion of variability (R(2)) and the standard error of the estimate (SE) varied among textural groups and N(min) indicators. The R(2) ranged from 0.53 to 0.91 and the SE from 0.13 to 1.62. Corn grain N uptake was significantly affected by N fertilizer and the pattern of response differed with soil texture. For the 50 kg N ha(-1) rate, the apparent N(min) potential (ANM) was significantly larger in the clay loam (122 kg ha(-1)) than in the fine sandy loam (80 kg ha(-1)) or clay (64 kg ha(-1)) soils. The fall soil residual N was not affected by N fertlizer inputs. Textural classes can be used to predict N(max). The N(min) indicators may also assist the variable rate N fertilizer inputs for corn production. TheScientificWorldJOURNAL 2001-11-09 /pmc/articles/PMC6083927/ /pubmed/12805786 http://dx.doi.org/10.1100/tsw.2001.329 Text en Copyright © 2001 R.R. Simard et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Simard, R.R.
Ziadi, N.
Nolin, M.C.
Cambouris, A.N.
Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title_full Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title_fullStr Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title_full_unstemmed Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title_short Prediction of Nitrogen Responses of Corn by Soil Nitrogen Mineralization Indicators
title_sort prediction of nitrogen responses of corn by soil nitrogen mineralization indicators
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6083927/
https://www.ncbi.nlm.nih.gov/pubmed/12805786
http://dx.doi.org/10.1100/tsw.2001.329
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