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Nutrient distribution across wheat rhizosphere with oxamide and ammonium sulfate as N source
Authors:Md. Yunus Miah  Shinjiro Kanazawa  Mitsuo Chino
Affiliation:1. Department of Agricultural Chemistry , National Taiwan University , Taipei , Taiwan;2. Department of Environmental Science and Technology, Faculty of Agriculture , Kagoshima University , Kagoshima , 890-8114 , Japan;3. Department of Applied Biological Chemistry, Faculty of Agricultural Life Sciences , The University of Tokyo , Tokyo , 113-8657 , Japan
Abstract:Analysis of the behavior of slow releasing nitrogen fertilizers in the rhizosphere soil of agricultural crops is essential for their effective use. This work presents a comparative study of the effects of oxamide and ammonium sulfate as different N sources on the relative mobility of some nutritionally important anions and cations and their relevance to plant growth, root development, and pH distribution pattern in the rhizosphere of wheat (Triticum aestivum cv. Nourin No. 61). Experiment was conducted on a Japanese upland alluvial soil through a rhizobox approach. In the central compartment (CC) of the oxamide and ammonium sulfate treated rhizoboxes, four uncontaminated and homogeneous wheat seedlings germinated on a sterile petridish were grown for nearly two months. During the growing period plant height was recorded weekly. After the growing period, rhizoboxes were dismantled for soil sampling and photography of roots. Soil samples from each compartment of the two rhizoboxes were used for the analysis of CI-, N03 -, SO4 2-, Ca2+, Mg2+, K+, NH4 +-N, N03 --N and measurement of pH. Compared with ammonium sulfate, the distribution of anions and cations from the distant compartments to the central ones over a distance of 3–5 mm along with a better plant growth, high rooting density, and high pH confirmed that oxamide was an efficient nitrogen fertilizer.
Keywords:alluvial soil  ammonium sulfate  anion-cation  oxamide  rhizosphere and wheat
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