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Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation

Accurate and timely appraisal of plant nitrogen (N) demand is imperative to regulate the canopy structure and corn production. The strength and time of plant N deficit can be quantified by critical N concentration. The study was aimed to analyze nitrogen nutrition index (NNI), nitrogen deficit conte...

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Autores principales: Zhao, Ben, Ata-Ul-Karim, Syed Tahir, Duan, Aiwang, Gao, Yang, Lou, He, Liu, Zugui, Qin, Anzhen, Ning, Dongfeng, Ma, Shoutian, Liu, Zhandong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9026184/
https://www.ncbi.nlm.nih.gov/pubmed/35463394
http://dx.doi.org/10.3389/fpls.2022.864258
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author Zhao, Ben
Ata-Ul-Karim, Syed Tahir
Duan, Aiwang
Gao, Yang
Lou, He
Liu, Zugui
Qin, Anzhen
Ning, Dongfeng
Ma, Shoutian
Liu, Zhandong
author_facet Zhao, Ben
Ata-Ul-Karim, Syed Tahir
Duan, Aiwang
Gao, Yang
Lou, He
Liu, Zugui
Qin, Anzhen
Ning, Dongfeng
Ma, Shoutian
Liu, Zhandong
author_sort Zhao, Ben
collection PubMed
description Accurate and timely appraisal of plant nitrogen (N) demand is imperative to regulate the canopy structure and corn production. The strength and time of plant N deficit can be quantified by critical N concentration. The study was aimed to analyze nitrogen nutrition index (NNI), nitrogen deficit content (NDC), plant nitrogen productivity (PNP), and a fraction of intercepted photosynthetic active radiation (FIPAR) across different N treatments and to develop NNI-NDC, NNI-PNP, NNI-FIPAR, NDC-PNP, and NDC-FIPAR relationships from V6 to V12 stages of corn to quantify the suitable PNP and FIPAR values under the optimal plant N condition. Four multi-N rates (0, 75, 90, 150, 180, 225, 270, and 300 kg N ha(−1)) field experiments were conducted with two cultivars of corn in Henan province of China. Results indicated that N fertilization affected yield, plant biomass, plant N content, and leaf area index. The values of NNI and NDC were from 0.54 to 1.28 kg ha(−1) and from −28.13 to 21.99 kg ha(−1) under the different treatments of N rate, respectively. The NDC and NNI showed significantly negative relationships from V6 to V12 stages. The values of PNP and FIPAR increased gradually with the crop growth process. The PNP values gradually declined while the FIPAR values of every leaf layer increased with the increase of N supply. The NDC-PNP and NNI-FIPAR relationships were significantly positive; however, the relationships between NNI-PNP and NDC-FIPAR were significantly negative during the vegetative period of corn. The coefficient of determination (R(2)) based on NNI was better than that on NDC. The FIPAR values were ~0.35, 0.67, and 0.76% at the upper, middle, and bottom of leaf layers, respectively, and PNP values were ~39, 44, and 51 kg kg(−1) at V6, V9, and V12 stages, respectively, when NNI and NDC values were equal to 1 and 0 kg ha(−1), respectively. This study described the quantitative information about the effect of a plant's internal N deficit on plant N productivity and canopy light intercept. The projected results would assist in predicting the appropriate plant growth status during key N top-dressing stages of corn, which can optimize N application and improve N use efficiency.
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spelling pubmed-90261842022-04-23 Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation Zhao, Ben Ata-Ul-Karim, Syed Tahir Duan, Aiwang Gao, Yang Lou, He Liu, Zugui Qin, Anzhen Ning, Dongfeng Ma, Shoutian Liu, Zhandong Front Plant Sci Plant Science Accurate and timely appraisal of plant nitrogen (N) demand is imperative to regulate the canopy structure and corn production. The strength and time of plant N deficit can be quantified by critical N concentration. The study was aimed to analyze nitrogen nutrition index (NNI), nitrogen deficit content (NDC), plant nitrogen productivity (PNP), and a fraction of intercepted photosynthetic active radiation (FIPAR) across different N treatments and to develop NNI-NDC, NNI-PNP, NNI-FIPAR, NDC-PNP, and NDC-FIPAR relationships from V6 to V12 stages of corn to quantify the suitable PNP and FIPAR values under the optimal plant N condition. Four multi-N rates (0, 75, 90, 150, 180, 225, 270, and 300 kg N ha(−1)) field experiments were conducted with two cultivars of corn in Henan province of China. Results indicated that N fertilization affected yield, plant biomass, plant N content, and leaf area index. The values of NNI and NDC were from 0.54 to 1.28 kg ha(−1) and from −28.13 to 21.99 kg ha(−1) under the different treatments of N rate, respectively. The NDC and NNI showed significantly negative relationships from V6 to V12 stages. The values of PNP and FIPAR increased gradually with the crop growth process. The PNP values gradually declined while the FIPAR values of every leaf layer increased with the increase of N supply. The NDC-PNP and NNI-FIPAR relationships were significantly positive; however, the relationships between NNI-PNP and NDC-FIPAR were significantly negative during the vegetative period of corn. The coefficient of determination (R(2)) based on NNI was better than that on NDC. The FIPAR values were ~0.35, 0.67, and 0.76% at the upper, middle, and bottom of leaf layers, respectively, and PNP values were ~39, 44, and 51 kg kg(−1) at V6, V9, and V12 stages, respectively, when NNI and NDC values were equal to 1 and 0 kg ha(−1), respectively. This study described the quantitative information about the effect of a plant's internal N deficit on plant N productivity and canopy light intercept. The projected results would assist in predicting the appropriate plant growth status during key N top-dressing stages of corn, which can optimize N application and improve N use efficiency. Frontiers Media S.A. 2022-04-08 /pmc/articles/PMC9026184/ /pubmed/35463394 http://dx.doi.org/10.3389/fpls.2022.864258 Text en Copyright © 2022 Zhao, Ata-Ul-Karim, Duan, Gao, Lou, Liu, Qin, Ning, Ma and Liu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Zhao, Ben
Ata-Ul-Karim, Syed Tahir
Duan, Aiwang
Gao, Yang
Lou, He
Liu, Zugui
Qin, Anzhen
Ning, Dongfeng
Ma, Shoutian
Liu, Zhandong
Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title_full Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title_fullStr Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title_full_unstemmed Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title_short Estimating the Impacts of Plant Internal Nitrogen Deficit at Key Top Dressing Stages on Corn Productivity and Intercepted Photosynthetic Active Radiation
title_sort estimating the impacts of plant internal nitrogen deficit at key top dressing stages on corn productivity and intercepted photosynthetic active radiation
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9026184/
https://www.ncbi.nlm.nih.gov/pubmed/35463394
http://dx.doi.org/10.3389/fpls.2022.864258
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