Descubre y comparte nuestro conocimiento público

Se han encontrado 320 recursos

Resultados de búsqueda

engAdvanced biotechniques offer the potential for greater precision and efficiency in genetic manipulation of crop species. Applications of molecular markers in Brachiaria include assessment of genetic variation, gene tagging, and genetic mapping. In particular, recent applications of molecular-m...


Tohme, Joseph M.Palacios, NLenis, SRoca, William M.[Applications of biotechnology to Brachiaria]Applications of biotechnology to Brachiaria

Tanzania is the fifth largest producer of cassava in Africa, the eighth largest producer in the world with an estimated average yields of about 10.4 t/ha, which is far below the potential yield of the crop. The low yield is caused by a number of factors including susceptibility of commonly grown ...


Kullaya, A.Mkamilo, G.S.Mtunda, K.Kulembeka, H.P.Masumba, E.Marandu, E.Kanju, E.Ferguson, M.Ospina, C.Marin, E.J.Santos, L.G.Barrera, E.Morante, N.Ceballos, H.Jarvis, A.Tohme, Joseph M.Fregene, Martin A.[Application of molecular marker-assisted selection in breeding for improved farmer/market preferred cassava varieties in Tanzania]Application of molecular marker-assisted selection in breeding for improved farmer/market preferred cassava varieties in Tanzania
Toro Chica, OrlandoTohme, Joseph M.Debouck, Daniel G.[Wild bean (Phaseolus vulgaris L.): description and distribution]Wild bean (Phaseolus vulgaris L.): description and distribution
Moreta, D.E.Arango, JacoboSotelo, M.Vergara, D.Rincón, A.Ishitani, ManabuCastro, A.Miles, John W.Peters, MichaelTohme, Joseph M.Subbaraoa, Guntur V.Cadisch, GeorgRao, Idupulapati M.[Using biological nitrification inhibition as a strategy to improve nitrogen recovery and nitrogen use efficiency of agricultural systems and to mitigate climate change]Using biological nitrification inhibition as a strategy to improve nitrogen recovery and nitrogen use efficiency of agricultural systems and to mitigate climate change
Mejía Jimenez, ARoyero Moya, NASaavedra, RSánchez, I.Gallego Sánchez, Gerardo J.Duque E., Myriam CristinaDomínguez Villafane, A.Rosero, ACaicedo, ACabra Martínez, JATohme, Joseph M.[Caracterización molecular y agromorfológica de la variabilidad genética nativa de guanábana (Annona muricata L.) y especies Anonáceas relacionadas: informe técnico final]Caracterización molecular y agromorfológica de la variabilidad genética nativa de guanábana (Annona muricata L.) y especies Anonáceas relacionadas: informe técnico final
Fregene, Martin A.Kullaya, AKMtunda, KKulembeka, H.P.Masumba, EAFerguson, Morag E.Ospina, C.Marín, J.A.Santos Meléndez, Luis GuillermoBarrera, E.Morante, NTohme, Joseph M.Ceballos, H.[Molecular marker-assisted selection for starchy staples]Molecular marker-assisted selection for starchy staples
Grimanelli, DTohme, Joseph M.González de León, D.[Applications of molecular genetics in apomixis research]Applications of molecular genetics in apomixis research
Blair, Matthew W.Kimani, P.M.Buendía Castellanos, Hector F.Garzón, LNChirwa, RowlandTohme, Joseph M.[Novel climbing bean genotypes developed through conventional breeding and marker-assisted selection]Novel climbing bean genotypes developed through conventional breeding and marker-assisted selection
Howard, Thomas P.Hayward, Andrew PTordillos, AnthonyFragoso, Christopher A.Moreno, Maria ATohme, Joseph M.Kausch, Albert PMottinger, John PDellaporta, Stephen L.[Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy]Identification of the maize gravitropism gene lazy plant1 by a transposon-tagging genome resequencing strategy

Selecciona los documentos para visualizarlos

Nombre del archivo Ver recurso