Yield and Grain Quality Response of Spring Wheat Varieties to Irrigation and Fertility Management  

Yield and Grain Quality Response of Spring Wheat Varieties to Irrigation and Fertility Management

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作  者:Nanthana Chaiwong Chanakan Prom-u-thai Michael Ostlie Nanthana Chaiwong;Chanakan Prom-u-thai;Michael Ostlie(Department of Agriculture, Bangkok, Thailand;Division of Agronomy, Department of Plant and Soil Sciences, Faculty of Agriculture, Chiang Mai University, Chiang Mai, Thailand;Lanna Rice Research Center, Chiang Mai University, Chiang Mai, Thailand;Carrington Research Extension Center, North Dakota State University, Carrington, ND, USA)

机构地区:[1]Department of Agriculture, Bangkok, Thailand [2]Division of Agronomy, Department of Plant and Soil Sciences, Faculty of Agriculture, Chiang Mai University, Chiang Mai, Thailand [3]Lanna Rice Research Center, Chiang Mai University, Chiang Mai, Thailand [4]Carrington Research Extension Center, North Dakota State University, Carrington, ND, USA

出  处:《Agricultural Sciences》2023年第7期939-953,共15页农业科学(英文)

摘  要:Experiments were conducted in 2020 and 2021 in North Dakota to determine the effects of foliar and soil applied fertilizers, variety and irrigation on yield and grain quality of spring wheat. Foliar application of N did not consistently increase yield and protein indicating the soil N levels were adequate to optimize yield. The variety Bolles had higher protein content than Faller. Zinc (Zn) content in the grain was greatest when applied at either flowering or post anthesis. It was also found to be correlated with grain protein content. Yield and grain protein content were negatively related. There was no consistent effect of phosphorous or Zn when applied to the soil on yield, protein, gluten, or Zn content in the grain. Zinc concentration in the grain was significantly correlated with the protein, gluten and P content of the grain. The timing of Zn application was critical to the success of translocating Zn to the grain. Grain Zn concentration increased with most late season foliar Zn applications to both varieties indicating potential for enriching spring wheat nutrient content through production management practices already common in areas that grow spring wheat.Experiments were conducted in 2020 and 2021 in North Dakota to determine the effects of foliar and soil applied fertilizers, variety and irrigation on yield and grain quality of spring wheat. Foliar application of N did not consistently increase yield and protein indicating the soil N levels were adequate to optimize yield. The variety Bolles had higher protein content than Faller. Zinc (Zn) content in the grain was greatest when applied at either flowering or post anthesis. It was also found to be correlated with grain protein content. Yield and grain protein content were negatively related. There was no consistent effect of phosphorous or Zn when applied to the soil on yield, protein, gluten, or Zn content in the grain. Zinc concentration in the grain was significantly correlated with the protein, gluten and P content of the grain. The timing of Zn application was critical to the success of translocating Zn to the grain. Grain Zn concentration increased with most late season foliar Zn applications to both varieties indicating potential for enriching spring wheat nutrient content through production management practices already common in areas that grow spring wheat.

关 键 词:Zinc GLUTEN Fertilizer Timing Nitrogen Phosphorus 

分 类 号:S51[农业科学—作物学]

 

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