CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID

Modern maize hybrids exhibit higher yields, increased biomass production, stress tolerance and greater nitrogen (N) use efficiency. Increased biomass accumulation can influence nutrient uptake and lead to increased nutrient removal. Hybrids were tested at seeding rates (SR) of 74000 (low) and 148000...

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Main Author: Santoro, Maria Julia
Format: Others
Published: UKnowledge 2018
Subjects:
Online Access:https://uknowledge.uky.edu/pss_etds/100
https://uknowledge.uky.edu/cgi/viewcontent.cgi?article=1109&context=pss_etds
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spelling ndltd-uky.edu-oai-uknowledge.uky.edu-pss_etds-11092019-10-16T04:28:25Z CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID Santoro, Maria Julia Modern maize hybrids exhibit higher yields, increased biomass production, stress tolerance and greater nitrogen (N) use efficiency. Increased biomass accumulation can influence nutrient uptake and lead to increased nutrient removal. Hybrids were tested at seeding rates (SR) of 74000 (low) and 148000 (supraoptimal) plants ha-1 and at N rates of 0 (deficient) and 390 (non-limiting) kg N ha-1. Plants were sampled at V7, V14, R3, R5 and R6 and separated into vegetative and reproductive fractions for determination of dry matter and N accumulation. Grain yield was harvested at R6. The high SR and high N treatment combination resulted in greatest biomass accumulation, crop growth rates, and N accumulation per hectare in both vegetative and grain tissues. The high SR and high N combination maximized grain yield at 20.6 Mg ha-1, essentially through an increase in kernels ha-1. High SR decreased kernel weight, even with high N. At the higher plant densities resulting from the high SR, however, average utilization of available N was enhanced. The results have implications for improved management practices under high input systems and providing insight to growers who incorporate variable seed and N rates. 2018-01-01T08:00:00Z text application/pdf https://uknowledge.uky.edu/pss_etds/100 https://uknowledge.uky.edu/cgi/viewcontent.cgi?article=1109&context=pss_etds Theses and Dissertations--Plant and Soil Sciences UKnowledge nitrogen rates plant density maize nutrient uptake grain yield yield components Agricultural Science Agriculture Agronomy and Crop Sciences
collection NDLTD
format Others
sources NDLTD
topic nitrogen rates
plant density
maize
nutrient uptake
grain yield
yield components
Agricultural Science
Agriculture
Agronomy and Crop Sciences
spellingShingle nitrogen rates
plant density
maize
nutrient uptake
grain yield
yield components
Agricultural Science
Agriculture
Agronomy and Crop Sciences
Santoro, Maria Julia
CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
description Modern maize hybrids exhibit higher yields, increased biomass production, stress tolerance and greater nitrogen (N) use efficiency. Increased biomass accumulation can influence nutrient uptake and lead to increased nutrient removal. Hybrids were tested at seeding rates (SR) of 74000 (low) and 148000 (supraoptimal) plants ha-1 and at N rates of 0 (deficient) and 390 (non-limiting) kg N ha-1. Plants were sampled at V7, V14, R3, R5 and R6 and separated into vegetative and reproductive fractions for determination of dry matter and N accumulation. Grain yield was harvested at R6. The high SR and high N treatment combination resulted in greatest biomass accumulation, crop growth rates, and N accumulation per hectare in both vegetative and grain tissues. The high SR and high N combination maximized grain yield at 20.6 Mg ha-1, essentially through an increase in kernels ha-1. High SR decreased kernel weight, even with high N. At the higher plant densities resulting from the high SR, however, average utilization of available N was enhanced. The results have implications for improved management practices under high input systems and providing insight to growers who incorporate variable seed and N rates.
author Santoro, Maria Julia
author_facet Santoro, Maria Julia
author_sort Santoro, Maria Julia
title CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
title_short CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
title_full CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
title_fullStr CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
title_full_unstemmed CORN GRAIN YIELD COMPONENTS AND NUTRIENT ACCUMULATION IN RESPONSE TO NITROGEN, PLANT DENSITY AND HYBRID
title_sort corn grain yield components and nutrient accumulation in response to nitrogen, plant density and hybrid
publisher UKnowledge
publishDate 2018
url https://uknowledge.uky.edu/pss_etds/100
https://uknowledge.uky.edu/cgi/viewcontent.cgi?article=1109&context=pss_etds
work_keys_str_mv AT santoromariajulia corngrainyieldcomponentsandnutrientaccumulationinresponsetonitrogenplantdensityandhybrid
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