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dc.contributor.authorLunze, L
dc.contributor.authorKimani, P.M
dc.contributor.authorNgatoluwa, R
dc.contributor.authorRabary, B
dc.contributor.authorRachier, G.O
dc.contributor.authorUgen, M.M
dc.contributor.authorRuganza, Vicky
dc.contributor.authorAwad elkarim, E.E
dc.date.accessioned2013-06-14T14:04:27Z
dc.date.available2013-06-14T14:04:27Z
dc.date.issued2007
dc.identifier.citationL. Lunze, P.M. Kimani, R. Ngatoluwa, B. Rabary, G.O. Rachier, M.M. Ugen, Vicky Ruganza, E.E. Awad elkarim (2007). Bean improvement for low soil fertility adaptation in Eastern and Central Africa. Advances in Integrated Soil Fertility Management in sub-Saharan Africa: Challenges and Opportunities 2007, pp 325-332en
dc.identifier.urihttp://link.springer.com/chapter/10.1007/978-1-4020-5760-1_29
dc.identifier.urihttp://erepository.uonbi.ac.ke:8080/xmlui/handle/123456789/34024
dc.description.abstractLow soil fertility is one of the most important common bean (Phaseolus vulgaris L) productivity yield limiting factors in Eastern and Central Africa and cause substantial production losses. As a component of integrated soil fertility management strategy, a collaborative research was initiated to screen bean germplasms for their tolerance to the important edaphic stresses of the region, namely soil acidity, low available phosphorus and low nitrogen. A set of 300 breeding lines of major market classes seed types were evaluated at varying ecologies under moderate and non-stress conditions at different locations in five countries. Bean genotypes evaluated vary considerably in their yield under stress conditions. Several lines identified tolerant to individual stresses and gave yield advantage over previously selected tolerant varieties. A few lines, BZ 12894-C-1, AND 932-A-1, DRK 137-1, Nm 12806-2A were tolerant to all three stresses , while ARA 8-B-1, AFR 709-1, AFR 703-1 and AND 1055-1 are tolerant to low P and low pH, and RWK 10, ARA 8-5-1, and T 842-6F11-6A-1 tolerant to low N and low pH. It is concluded that bean genotypes with multiple tolerance to edaphic stresses will make it possible to improve bean yield on low fertility soils common on small scale farmers’ fields generally characterized by a complex constraints rather than a single stress.en
dc.language.isoenen
dc.titleBean improvement for low soil fertility adaptation in Eastern and Central Africaen
dc.typeArticleen
local.publisherDepartment of Plant Science and Crop Protection, University of Nairobi, Kenyaen


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