Effects of different water availability at post-anthesis stage on grain nutrition and quality in strong-gluten winter wheat
Влияние различной обеспеченности водой на стадии после цветения на питательную ценность и качество зерна озимой пшеницы с сильной клейковиной
2009-04-29
SCID: 54.1/xnfb3rcy
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bread-making qualitygrain nutritiongrain qualitypost-anthesis water stressstrong-gluten winter wheat
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Abstract (AI)
Wheat (Triticum aestivum L.) is one of the most important agricultural crops worldwide. However, water is the most important limiting factor for wheat production. This study was initiated to test water stress environmental effects on grain quality and nutritional value of wheat by using single different water conditions at post-anthesis stage. Further analyses were conducted to examine variations in concentrations and compositions of the bioactive compounds and nutritions in strong-gluten winter wheat subjected to different levels of water deficit during grain filling. For the experiment on the response to different soil water conditions during post-anthesis stage, effects of soil water environment on protein content and composition in the grains were significant. Soil water conditions in this study greatly affected mineral contents in the grains of winter wheat, particularly with regard to the major minerals (P, K, Ca and Mg). Water deficit during grain filling can result in a decrease in lipid contents in wheat grains, which agrees well with experimental findings elsewhere. Concomitantly, a mild water deficit during grain filling would be beneficial to the grain filling and starch compositions, significantly improved bread-making quality. Therefore, it was concluded that good management of wheat field water at post-anthesis stage was helpful to improving grain quality and nutritions relevant to processing and human nutrition.
Key Findings
1
Effective post-anthesis water management can improve wheat grain quality and nutritional value relevant to processing and human nutrition.
2
Mild water deficit during grain filling benefited grain filling and starch composition, significantly improving bread-making quality.
3
Post-anthesis soil water conditions significantly altered protein content and composition in strong-gluten winter wheat grains.
4
Water availability substantially affected grain mineral concentrations, especially phosphorus, potassium, calcium, and magnesium.
5
Water deficit during grain filling decreased lipid content in wheat grains.
Research Object
Strong-gluten winter wheat grains under different soil-water conditions during the post-anthesis grain-filling stage
Research Subject
effects of water availability and deficit on grain nutritional composition and quality, including proteins, minerals, lipids, starch, grain filling, and bread-making properties
Publication Details
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2009-04-29
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