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The Musa germplasm bank established in Colombia has accessions tolerant to Yellow Sigatoka and is located at over 1310 meters above sea level. This germplasm has been characterized using morphological descriptors. However it is has been difficult to identify some accessions due to mutations and e...


Sánchez, InésGaviria Arias, DuberneyGallego Sánchez, Gerardo J.Fajardo, DiegoValencia Montoya, Jorge AlbertoLobo Arias, MarioTohme, Joseph M.Roca, William M.[Caracterización molecular para el manejo de la colección colombiana de musaceas]Caracterización molecular para el manejo de la colección colombiana de musaceas

Fory Sánchez, L.F.Pérez, J.G.Duque, S.Calle, FMorante, NBolaños, E.Herrera, P.Duque, M.Ceballos, H.Roca, William M.Gallego Sánchez, Gerardo J.Tohme, Joseph M.[Linea base para la toma de decisiones en bioseguridad: desarrollo de un modelo para la evaluación de flujo de genes en yuca utilizando una linea androesteril (Manihot esculenta Crantz)]Linea base para la toma de decisiones en bioseguridad: desarrollo de un modelo para la evaluación de flujo de genes en yuca utilizando una linea androesteril (Manihot esculenta Crantz)

Background Cassava, an allotetraploid known for its remarkable tolerance to abiotic stresses is an important source of energy for humans and animals and a raw material for many industrial processes. A full-length cDNA library of cassava plants under normal, heat, drought, aluminum and post harves...


Sakurai, TetsuyaPlata, GermanRodriguez, FaustoSeki, MotoaliSalcedo, AndresToyoda, AtsushiHiwata, AtsushiTohme, Joseph M.Sake, YoshiyukiShinozaki, KazuoIshitani, Manabu[Sequencing analysis of 20,000 full-length cDNA clones from cassava reveals lineage specific expansions in gene families related to stress response]Sequencing analysis of 20,000 full-length cDNA clones from cassava reveals lineage specific expansions in gene families related to stress response

A major constraint for incorporating new traits into cassava using biotechnology is the limited list of known/tested promoters that encourage the expression of transgenes in the cassava’s starchy roots. Based on a previous report on the glutamic-acid-rich protein Pt2L4, indicating a preferential ...


Beltrán Giraldo, Jorge AlonsoPrias, MAl-Babili, S.Ladino Franco, YJLópez, D.Beyer, PeterChavarriaga Aguirre, PaulTohme, Joseph M.[Expression pattern conferred by a glutamic acid-rich protein gene promoter in field-grown transgenic cassava (Manihot esculenta Crantz)]Expression pattern conferred by a glutamic acid-rich protein gene promoter in field-grown transgenic cassava (Manihot esculenta Crantz)
Tomkins, JPFregene, Martin A.Tohme, Joseph M.Wing, RA[Involvement of farmers in the development of cassava low-cost input, in vitro propagation methods]Involvement of farmers in the development of cassava low-cost input, in vitro propagation methods
Chávez, Alba L.Ceballos, H.Sánchez, T.Tohme, Joseph M.[Nutritional and agronomic advantages of yellow rooted cassava]Nutritional and agronomic advantages of yellow rooted cassava

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