Effect of Deep Placement of Calcium Cyanamide, Coated Urea, and Urea on Soybean (Glycine max (L.) Merr.) Seed Yield in Relation to Different Inoculation Methods
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概要
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The main objective of this study was to increase the productivity of soybean [Glycine max (L.) Merr. cv. Enrei] seed by deep placement of controlled release nitrogen fertilizers and by the application of different methods of inoculation of bradyrhizobia. Ten days old seedlings in an inoculated paper pot (IPP), in a non-inoculated paper pot (NIPP), and those grown in a vermiculite bed without paper pot (DT) were transplanted to an upland field converted from a drained paddy field in Nagaoka. In addition to the basal application of 16 kg N ha^-1 in the surface layer (Control), deep placement of 100 kg N ha^-1 of urea (Urea), 100-day type coated urea (CU-100), and calcium cyanamide (CaCN_2) treatments were applied at the depth of 20 cm. In the IPP method, a significantly higher seed yield was obtained with the deep placement of CaCN_2 and CU-100 compared with the Urea and Control treatments. A similar tendency was observed for the DT and NIPP methods. Among the same N fertilizer treatments, the seed yield for IPP and DT tended to exceed that for NIPP, although the NIPP roots also showed nodulation probably due to infection with indigenous bradyrhizobia. The percentage of nitrogen derived from atmospheric N_2 estimated by the simple relative ureide method was higher in the plants with CU-100 and CaCN_2 compared with those with the Urea and Control treatments at the R1 stage, suggesting that the basal deep placement of CaCN_2 or CU-100 for soybean cultivation enabled the supply of N without concomitant depression of N_2 fixation. Thus the deep placement of cheaper CaCN_2 was found to be as effective as that of CU-100 for enhancing the soybean seed yield.
- 社団法人日本土壌肥料学会の論文
著者
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Sueyoshi Kuni
Graduate School Of Science And Technology ; Niigata University
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OHTAKE Norikuni
Graduate School of Science and Technology ; Niigata University
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OHYAMA Takuji
Graduate School of Science and Technology ; Niigata University
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Ohyama Takuji
Faculty of Agriculture, Niigata University
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Ohyama Takuji
Faculty Of Agriculture Niigata University
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OHTAKE Norikuni
Faculty of Agriculture, Niigata University
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SUEYOSHI Kuni
Faculty of Agriculture, Niigata University
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TAKAHASHI Yoshihiko
Faculty of Agriculture, Niigata University
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KAUSHAL Tewari
Graduate School of Science and Technology, Niigata University
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FUJIKAKE Hiroyuki
Graduate School of Science and Technology, Niigata University
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Ohtake Norikuni
Dept. Appl. Biol. Chem. Fac. Agric. Niigata Univ.
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Takahashi Yoshihiko
Niigata Agricultural Experiment Station
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ティワリ カウサル
新潟大農
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Kaushal Tewari
Faculty Of Agriculture Niigata University
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Kawachi T
National Institute Of Livestock And Grassland Science
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Sueyoshi Kuni
Department Of Agricultural Chemistry Faculty Of Horticulture Chiba University
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Fujikake Hiroyuki
Graduate School Of Science And Technology Niigata University
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Sueyoshi Kuni
Department Of Applied Biological Chemistry Faculty Of Agriculture Niigata University
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Kaushal T
新潟大 農
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Suganuma Taketo
Graduate School of Science and Technology, Niigata University
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Tamura Y
Faculty Of Agriculture Niigata University
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Takahashi Y
National Institute Of Agro-environmental Sciences
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Suganuma Taketo
Graduate School Of Science And Technology Niigata University
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Kaushal Tawari
Graduate School of Science and Technology, Niigata University
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Fuzikake Hiroyuki
Graduate School of Science and Technology, Niigata University
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