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Combined Effects of Legumes with Rock Phosphorus on Rice in West Africa
Author(s) -
Somado Eklou A.,
Becker Mathias,
Kuehne Ronald F.,
Sahrawat Kanwar L.,
Vlek Paul L. G.
Publication year - 2003
Publication title -
agronomy journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.752
H-Index - 131
eISSN - 1435-0645
pISSN - 0002-1962
DOI - 10.2134/agronj2003.1172
Subject(s) - legume , agronomy , oryza sativa , phosphorus , transplanting , productivity , green manure , nitrogen fixation , biology , phosphorite , biomass (ecology) , nitrogen , zoology , fertilizer , chemistry , sowing , biochemistry , organic chemistry , macroeconomics , economics , gene
Rice ( Oryza sativa L.) demand in West Africa is unmet because of insufficient production. Legume fixed N [biological N fixation (BNF)] may sustainably increase rice productivity in low‐input systems. However, P deficiency limits BNF on the acid soils encountered in the region, despite the prevalence of phosphate rock (PR). Pot and field experiments were conducted in Côte d'Ivoire in 1996–1998 to study the impact of combined legume and PR on rice performance. Triple superphosphate and PR were applied at rates of 60 (pot) and at 90 (field) kg P ha −1 to rice and the legume Aeschynomene afraspera grown for 8 wk and then incorporated before rice transplanting. Legume fixed N was determined by 15 N isotope dilution. Under field conditions, addition of PR doubled the biomass of A. afraspera . Irrespective of P source, P application increased the amount of BNF‐N (three‐ to eightfold) to 36 mg N plant −l in pots and to 84 kg N ha −1 in the field. Nitrogen derived from the air was correlated with legume P uptake ( r = 0.97∗∗∗, where ∗∗∗ = significant at the 0.001 level) and nodulation ( r = 0.91∗∗, where ∗∗ = significant at the 0.01 level). The synergy of PR and BNF on N and P cycling improved P nutrition and total biomass of subsequent lowland rice under pot conditions. Combining legume green manure (GM) with PR enhanced soil extractable Bray‐1 P and may thus play an important role in improving the availability of PR. Under field conditions, due to asynchrony in GM nutrient release and demand, the impact of the combined GM–PR treatment on rice yield was minimal.

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