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dc.contributor.authorBationo, A.
dc.contributor.authorNtare, B.R.
dc.contributor.authorTarawali, S.A.
dc.contributor.authorTabo, R.
dc.date.accessioned2019-12-04T11:31:14Z
dc.date.available2019-12-04T11:31:14Z
dc.date.issued2002
dc.identifier.citationBationo, A., Ntare, B.R., Tarawali, S.A. & Tabo, R. (2002). Soil fertility management and cowpea production in the semiarid tropics. In C.A. Fatokun, S.A. Tarawali, B.B. Singh, P.M. Kormawa and M. Tamo, Challenges and opportunities for enhancing sustainable cowpea production. Ibadan, Nigeria: IITA, (p. 301-318).
dc.identifier.isbn978-131-190-8
dc.identifier.urihttps://hdl.handle.net/20.500.12478/5470
dc.description.abstractCowpea (Vigna unguiculata[L.] Walp.) is an important grain legume in the semi- arid zone of West Africa as it is a major source of dietary protein for the people. It is usually grown as an intercrop with the major cereals, namely millet and sorghum. Despite its importance, its yields are very low due to several constraints including poor soil, insect pests, and drought. The soils in semiarid West Africa are inherently low in nitrogen and phosphorus. Soil, water, and nutrient management practices are inadequate to sustain food production and to meet the food requirements of the fast growing population. Research results show that proper management of organic amendments such as crop residues and manure, which are essential complements to mineral phosphorus fertilizers, can increase yields of cowpea and associated cereals more than three fold. Direct application of indigenous phosphate rocks can be an economical alternative to the use of imported, more expensive soluble phos- phorus fertilizers for cowpea production in the region. The agronomic effectiveness of indigenous phosphate rock is about 50% compared to the imported single super- phosphate. Furthermore, when the unreactive phosphate rocks are partially acidu- lated at 50%, their agronomic effectiveness can increase to more than 70%. Stud- ies on cereal–cowpea rotation revealed that yields of cereals succeeding cowpea could, in some cases, double compared to continuous cereal cultivation. With efficient soil fertility management, cowpea can fix up to 88 kg N/ha and this results in an increase of nitrogen use efficiency on the succeeding cereal crop from 20% in the continuous cereal monoculture to 28% when cereals are in rotation with cowpea. Furthermore, the use of soil nitrogen increased from 39 kg N/ha in the continuous cereal monoculture to 62 kg N/ha in the rotation systems. Future research needs to focus on understanding the factors affecting phosphorus uptake from different sources of natural rock phosphate. There is also a need to quantify the below-ground nitrogen fixed by different cowpea cultivars. The increase of cowpea productivity in the cropping systems in this region will improve the nutri- tion of people, increase the feed quantity and quality for livestock, and contribute to soil fertility maintenance. This should contribute to reduction in poverty and environmental degradation.
dc.description.sponsorshipRockefeller Foundation
dc.language.isoen
dc.subjectCowpeas
dc.subjectCereals
dc.subjectNutrient Management
dc.subjectFood Production
dc.subjectFertilizers
dc.subjectBiotechnology
dc.subjectCropping Systems
dc.titleSoil fertility management and cowpea production in the semi arid tropics of West Africa
dc.typeBook Chapter
dc.description.versionPeer Review
cg.contributor.affiliationInternational Center for Tropical Agriculture
cg.contributor.affiliationInternational Crops Research Institute for the Semi-Arid Tropics
cg.contributor.affiliationInternational Institute of Tropical Agriculture
cg.coverage.regionAfrica
cg.coverage.regionWest Africa
cg.coverage.countryNigeria
cg.authorship.typesCGIAR multi-centre
cg.iitasubjectCowpea
cg.iitasubjectGrain Legumes
cg.iitasubjectNutrition
cg.iitasubjectFood Security
cg.accessibilitystatusOpen Access
local.dspaceid103827


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