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Arango, JacoboMoreta, D.Núñez, J.Hartmann, K.Domínguez, M.Ishitani, ManabuMiles, John W.Subbaraoa, Guntur V.Peters, MichaelRao, Idupulapati M.[Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses]Developing methods to evaluate phenotypic variability in biological nitrification inhibition (BNI) capacity of Brachiaria grasses

To select a plant genotype that will thrive in targeted environments it is critical to understand the genotype by environment interaction (GEI). In this study, multi-environment QTL analysis was used to characterize node addition rate (NAR, node day− 1) on the main stem of the common bean (Phaseo...


Zhang, LiGezan, Salvador A.Vallejos, C. EduardoJones, James W.Boote, Kenneth J.Clavijo Michelangeli, Jose A.Bhakta, Mehul S.Osorno, Juan M.Rao, Idupulapati M.Beebe, Stephen E.Roman Paoli, Elvin O.González, AbiezerBeaver, James S.Ricaurte Oyola, José JaumerColbert, RaphaelCorrell, Melanie J.[Development of a QTL-environment-based predictive model for node addition rate in common bean]Development of a QTL-environment-based predictive model for node addition rate in common bean

Common bean productivity is reduced by several abiotic stress factors like drought and low soil fertility, leading to yield losses particularly in low input smallholder farming systems in the tropics. To understand the genetics of stress tolerance, and to improve adaptation of common bean to adv...


Díaz, Lucy MilenaRicaurte, JaumerTovar, EduardoCajiao V., César HernandoTerán Santofimio, HenryGrajales, Miguel A.Polanía, JoseRao, Idupulapati M.Beebe, Stephen E.Raatz, Bodo[QTL analyses for tolerance to abiotic stresses in a common bean (Phaseolus vulgaris L.) population]QTL analyses for tolerance to abiotic stresses in a common bean (Phaseolus vulgaris L.) population

Drought stress limits growth and yield of crops, particularly under smallholder production systems with minimal use of inputs and edaphic limitations such as nitrogen (N) deficiency. The development of genotypes adapted to these conditions through genetic improvement is an important strategy to a...


Polanía Perdomo, José A.Poschenrieder, CharlotteRao, Idupulapati M.Beebe, Stephen E.[Root traits and their potential links to plant ideotypes to improve drought resistance in common bean]Root traits and their potential links to plant ideotypes to improve drought resistance in common bean

Brachiaria grasses are sown in tropical regions around the world, especially in the Neotropics, to improve livestock production. Waterlogging is a major constraint to the productivity and persistence of Brachiaria grasses during the rainy season. While some Brachiaria cultivars are moderately tol...


Jiménez Serna, Juan de la CruzCardoso Arango, Juan AndrésLeiva, Luisa F.Gil, JuanitaForero, Manuel G.Worthington, MargaretMiles, John W.Rao, Idupulapati M.[Non-destructive phenotyping to identify brachiaria hybrids tolerant to waterlogging stress under field conditions]Non-destructive phenotyping to identify brachiaria hybrids tolerant to waterlogging stress under field conditions
Beebe, Stephen E.Rao, Idupulapati M.Blair, Matthew W.Acosta Gallegos, Jorge Alberto[Phenotyping common beans for adaptation to drought]Phenotyping common beans for adaptation to drought
Araújo, Susana S.Beebe, Stephen E.Crespi, MartinDelbreil, BrunoGonzález, Esther M.Gruber, VeroniqueLejeune-Henaut, IsabelleLink, WolfgangMonteros, Maria JPrats, ElenaRao, Idupulapati M.Vadez, VincentVaz Patto, Maria C[Abiotic stress responses in legumes: strategies used to cope with environmental challenges]Abiotic stress responses in legumes: strategies used to cope with environmental challenges

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