Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Spring Nitrogen and Cultivar Affect Seed Production in Winter Canola

View through CrossRef
Limited information is available on the effects of spring‐applied N on winter canola (Brassica napus L.) seed yield in seasonally high‐rainfall environments. The objective of this study was to investigate spring‐applied N effects on four winter canola cultivars: Athena, Baldur, Virginia and Kronos. Trials were conducted over a 3‐yr period at Corvallis, OR, with four spring N rates: 0, 56, 112, and 168 kg N ha−1. Lodging severity affected seed yield responses to spring‐applied N. Under low or moderate lodging, yield was increased incrementally with spring N rate. When lodging was severe, yields were reduced by 168 kg N ha−1. Spring N increased yield up to 75%, but losses in yield due to N when lodged ranged up to 11%. Seeds m−2 was the main contributor to increased or decreased yields in response to spring N. Seed oil content was reduced by increased N rate, but seed protein was unaffected by spring N. Oil yield was increased by spring N when lodging was low or moderate but not when severe. Seed yield varied among cultivars with a different cultivar producing the highest yield each year. Athena, Baldur, and Virginia averaged 2800 kg ha−1, while Kronos yielded the lowest at 2550 kg ha−1. Expression of yield by cultivars was governed by a combination of seed number and seed weight. The best spring N rate for winter canola was 112 kg N ha−1 because it provided high potential yield while minimizing yield losses associated with lodging.Core Ideas Spring N increased seed and oil yield in winter canola except with crop lodging. Seeds m−2 was the most influential factor in determining seed yield in winter canola. Seed oil content was high but was inversely related to the rate of spring N applied. Seed and oil yield was maximized at 112 kg N ha−1 while minimizing lodging losses. First study on winter canola in the seasonally wet environment of western Oregon.
Title: Spring Nitrogen and Cultivar Affect Seed Production in Winter Canola
Description:
Limited information is available on the effects of spring‐applied N on winter canola (Brassica napus L.
) seed yield in seasonally high‐rainfall environments.
The objective of this study was to investigate spring‐applied N effects on four winter canola cultivars: Athena, Baldur, Virginia and Kronos.
Trials were conducted over a 3‐yr period at Corvallis, OR, with four spring N rates: 0, 56, 112, and 168 kg N ha−1.
Lodging severity affected seed yield responses to spring‐applied N.
Under low or moderate lodging, yield was increased incrementally with spring N rate.
When lodging was severe, yields were reduced by 168 kg N ha−1.
Spring N increased yield up to 75%, but losses in yield due to N when lodged ranged up to 11%.
Seeds m−2 was the main contributor to increased or decreased yields in response to spring N.
Seed oil content was reduced by increased N rate, but seed protein was unaffected by spring N.
Oil yield was increased by spring N when lodging was low or moderate but not when severe.
Seed yield varied among cultivars with a different cultivar producing the highest yield each year.
Athena, Baldur, and Virginia averaged 2800 kg ha−1, while Kronos yielded the lowest at 2550 kg ha−1.
Expression of yield by cultivars was governed by a combination of seed number and seed weight.
The best spring N rate for winter canola was 112 kg N ha−1 because it provided high potential yield while minimizing yield losses associated with lodging.
Core Ideas Spring N increased seed and oil yield in winter canola except with crop lodging.
Seeds m−2 was the most influential factor in determining seed yield in winter canola.
Seed oil content was high but was inversely related to the rate of spring N applied.
Seed and oil yield was maximized at 112 kg N ha−1 while minimizing lodging losses.
First study on winter canola in the seasonally wet environment of western Oregon.

Related Results

Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Wheat VS Canola-Economic Comparison of Production Cost, Yield and Net Profitability
Wheat VS Canola-Economic Comparison of Production Cost, Yield and Net Profitability
Canola, sunflower, mustard, soya bean and cotton seed are the most common sources of edible oil in Pakistan and many farmers are shifting from wheat to oilseed crops thanks to its ...
Varietal Screening of Canola (<i>Brassica Nappus</i>) against Major Insect Pests and their Correlation with Climatic Factors
Varietal Screening of Canola (<i>Brassica Nappus</i>) against Major Insect Pests and their Correlation with Climatic Factors
Oilseed crops are very important part of cropping system in Pakistan and known as 2nd important source of edible oil after groundnuts. The objective of study to find out the respon...
Effect of abiotic stress on the endophytic fungal community in Brassica napus L. (winter canola) leaves
Effect of abiotic stress on the endophytic fungal community in Brassica napus L. (winter canola) leaves
Abstract Winter canola is an oleaginous plant whose seeds are used in the food and biodiesel industries. Fungal endophytes are found in asymptomatic tissues of almost all p...
Karakteristik Fermentasi Rumen dan Keseimbangan Nitrogen Domba yang Diberi Minyak Kanola Murni dan Terenkaspulasi
Karakteristik Fermentasi Rumen dan Keseimbangan Nitrogen Domba yang Diberi Minyak Kanola Murni dan Terenkaspulasi
ABSTRAK                                                            Penelitian ini bertujuan untuk menganalisis pengaruh minyak kanola tanpa proteksi dan terenkapsulasi pada karakte...
MODERN SEED TECHNOLOGY AND DEVELOPMENT
MODERN SEED TECHNOLOGY AND DEVELOPMENT
Modern Seed Technology and Development: Science, Innovation and Applications is a comprehensive and contemporary textbook that explores the scientific foundations, technological ad...

Back to Top