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Titlebook: Engineering Nitrogen Utilization in Crop Plants; Ashok Shrawat,Adel Zayed,David A. Lightfoot Book 2018 Springer International Publishing A

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Molecular Targets for Improvement of Crop Nitrogen Use Efficiency: Current and Emerging Optionsn factors, and NAC transcription factors. The nitrate transporter of NRT1.1 is proposed to be a sensor or transceptor, which regulates the crop yield by acting as a component in the Ca.-mediated signaling cascade. Several other signaling pathways involving target of rapamycin (TOR) complex, general
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Nitrogen Partitioning and Remobilization in , Under Sufficient and Depleted Conditionsow exponential changes in seed yield. Under these conditions, plants were grown for seven weeks in sufficient N solution, where a subset of the population was harvested to determine basal N allocation. Half of the remaining plants remained in N sufficient conditions, while the rest were subjected to
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Field Testing for Improved Nitrogen Use Efficiency of Corn—From Whole-Plant Physiology to Agroecosysssary to combine several measurements. Measurements of root zone soil N at planting, residual root zone soil N at harvest, and measurement of plant N capture from an unfertilized check plot provide an estimate of net N availability during the growing season. This quantitative estimate of net N avail
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