pH-responsive/sustained release nitrogen fertilizer hydrogel improves yield, nitrogen metabolism, and nitrogen use efficiency of rice under alternative wetting and moderate drying irrigation
Author:
Publisher
Elsevier BV
Subject
Plant Science,Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics
Reference75 articles.
1. Impacts of slow-release nitrogen fertilizer rates on the morpho-physiological traits, yield, and nitrogen use efficiency of rice under different water regimes;Aasmi;Agriculture,2022
2. Wheat straw biochar application improves the morphological, physiological, and yield attributes of maize and the physicochemical properties of soil under deficit irrigation and salinity stress;Alfadil;J. Plant Nutr.,2021
3. Effects of irrigation regime and soil clay content and their interaction on the biological yield, nitrogen uptake and nitrogen-use efficiency of rice grown in southern China;Alhaj Hamoud;Agric. Water Manag.,2019
4. Impact of alternative wetting and soil drying and soil clay content on the morphological and physiological traits of rice roots and their relationships to yield and nutrient use-efficiency;Alhaj Hamoud;Agric. Water Manag.,2019
5. Effect of irrigation regimes and soil texture on the potassium utilization efficiency of rice;Alhaj Hamoud;Agronomy,2019
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