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Papers by Maritza Escalona

Research paper thumbnail of Estrategias para disminuir la necrosis apical en la multiplicación y el enraizamiento in vitro del Pistacho

Revista Colombiana de Biotecnología, 2016

Research paper thumbnail of Protein changes associated with plant regeneration in embryogenic calli of sugarcane (Saccharum sp.)

Plant Cell Tissue Organ Cult, 1997

Research paper thumbnail of The physiology of ex vitro pineapple (Ananas comosus L.Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions

Research paper thumbnail of Propagación in vitro de Paeonia sp

Revista Actualidades Biologicas, Dec 3, 2012

Research paper thumbnail of Genetic and morphoagronomic characterization of plantain variants of Musa AAB clone 'CEMSA 3/4

International Journal of Food Agriculture and Environment, 2007

AGRIS record. Record number, FI2009322855. Titles, Genetic and morphoagronomic characterization o... more AGRIS record. Record number, FI2009322855. Titles, Genetic and morphoagronomic characterization of plantain variants of Musa AAB clone "CEMSA ¾". Personal Authors, Hernández, Ricardo.,Rodríguez, Roberto.,Ramírez, Teresa ...

Research paper thumbnail of Metodología para el control de las contaminaciones en el cultivo in vitro de plantas ornamentales

Cuadernos De Fitopatologia Revista Tecnica De Fitopatologia Y Entomologia, 1996

Información del artículo Metodología para el control de las contaminaciones en el cultivo in vitr... more Información del artículo Metodología para el control de las contaminaciones en el cultivo in vitro de plantas ornamentales.

Research paper thumbnail of ACLIMATIZACIÓN DE PLÁNTULAS DE CAÑA DE AZÚCAR (Saccharum sp. híbrido) PROVENIENTES DE SISTEMAS DE INMERSIÓN TEMPORAL

Research paper thumbnail of Jatropha curcas (L): a promising biofuel plant. current status and future prospects (chapter 1)

Research paper thumbnail of Morfogénesis "in vitro" de Teca ("Tectona grandis" L.)

Research paper thumbnail of In Vitro Propagation of Paeonia SP

Research paper thumbnail of Temporary immersion systems (RITA®) for the improvement of cork oak somatic embryogenic culture proliferation and somatic embryo production

Research paper thumbnail of Field performance and (epi)genetic profile of plantain (Musa AAB) clone ‘CEMSA ¾’ plants micropropagated by temporary immersion systems

Scientia Horticulturae, 2012

Research paper thumbnail of Optimization of plantain (Musa AAB) micropropagation by temporary immersion system

Plant Cell, Tissue and Organ Culture, 2005

Research paper thumbnail of Pineapple ( Ananas comosus L. Merr) micropropagation in temporary immersion systems

Research paper thumbnail of Carbon metabolism in leaves of micropropagated sugarcane during acclimatization phase

In Vitro Cellular & Developmental Biology - Plant, 2008

Research paper thumbnail of New contributions to propagation of pineapple (Ananas comosus L. Merr) in temporary immersion bioreactors

In Vitro Cellular & Developmental Biology - Plant, 2005

Research paper thumbnail of The physiology of ex vitro pineapple (Ananas comosus L. Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions

Plant cell reports, 2012

Many plant species grown under in vitro controlled conditions can be used as models for the study... more Many plant species grown under in vitro controlled conditions can be used as models for the study of physiological processes. Adult pineapple can display CAM physiology while in vitro it functions as a C3 plant. Ex vitro Ananas comosus has plastic morphology and physiology, both easy to modify from C3 to CAM by changing the environmental conditions. The yield of survival for a rentable propagation protocol of pineapple is closely related with the C3/CAM shift and the associated physiological characteristics. In the present work, ex vitro pineapple plants were divided in two sets and subjected to C3 and CAM-inducing environmental conditions, determined by light intensity and relative humidity, respectively, 40 μmol m(-2) s(-1)/85% and 260 μmol m(-2) s(-1)/50%. The results demonstrated that the stress imposed by the environmental conditions switched pineapple plants from C3 to CAM behavior. Comparing to CAM induced, C3-induced pineapple plants showed substandard growth parameters and ...

Research paper thumbnail of Protein changes associated with plant regeneration in embryogenic calli of sugarcane (Saccharum sp.)

Plant Cell, Tissue …, 1997

Research paper thumbnail of Sugarcane micropropagation and phenolic excretion

Plant cell, tissue and …, 2001

Research paper thumbnail of Sugarcane shoot formation in an improved temporary immersion system

Plant Cell, Tissue and …, 1998

Research paper thumbnail of Estrategias para disminuir la necrosis apical en la multiplicación y el enraizamiento in vitro del Pistacho

Revista Colombiana de Biotecnología, 2016

Research paper thumbnail of Protein changes associated with plant regeneration in embryogenic calli of sugarcane (Saccharum sp.)

Plant Cell Tissue Organ Cult, 1997

Research paper thumbnail of The physiology of ex vitro pineapple (Ananas comosus L.Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions

Research paper thumbnail of Propagación in vitro de Paeonia sp

Revista Actualidades Biologicas, Dec 3, 2012

Research paper thumbnail of Genetic and morphoagronomic characterization of plantain variants of Musa AAB clone 'CEMSA 3/4

International Journal of Food Agriculture and Environment, 2007

AGRIS record. Record number, FI2009322855. Titles, Genetic and morphoagronomic characterization o... more AGRIS record. Record number, FI2009322855. Titles, Genetic and morphoagronomic characterization of plantain variants of Musa AAB clone "CEMSA ¾". Personal Authors, Hernández, Ricardo.,Rodríguez, Roberto.,Ramírez, Teresa ...

Research paper thumbnail of Metodología para el control de las contaminaciones en el cultivo in vitro de plantas ornamentales

Cuadernos De Fitopatologia Revista Tecnica De Fitopatologia Y Entomologia, 1996

Información del artículo Metodología para el control de las contaminaciones en el cultivo in vitr... more Información del artículo Metodología para el control de las contaminaciones en el cultivo in vitro de plantas ornamentales.

Research paper thumbnail of ACLIMATIZACIÓN DE PLÁNTULAS DE CAÑA DE AZÚCAR (Saccharum sp. híbrido) PROVENIENTES DE SISTEMAS DE INMERSIÓN TEMPORAL

Research paper thumbnail of Jatropha curcas (L): a promising biofuel plant. current status and future prospects (chapter 1)

Research paper thumbnail of Morfogénesis "in vitro" de Teca ("Tectona grandis" L.)

Research paper thumbnail of In Vitro Propagation of Paeonia SP

Research paper thumbnail of Temporary immersion systems (RITA®) for the improvement of cork oak somatic embryogenic culture proliferation and somatic embryo production

Research paper thumbnail of Field performance and (epi)genetic profile of plantain (Musa AAB) clone ‘CEMSA ¾’ plants micropropagated by temporary immersion systems

Scientia Horticulturae, 2012

Research paper thumbnail of Optimization of plantain (Musa AAB) micropropagation by temporary immersion system

Plant Cell, Tissue and Organ Culture, 2005

Research paper thumbnail of Pineapple ( Ananas comosus L. Merr) micropropagation in temporary immersion systems

Research paper thumbnail of Carbon metabolism in leaves of micropropagated sugarcane during acclimatization phase

In Vitro Cellular & Developmental Biology - Plant, 2008

Research paper thumbnail of New contributions to propagation of pineapple (Ananas comosus L. Merr) in temporary immersion bioreactors

In Vitro Cellular & Developmental Biology - Plant, 2005

Research paper thumbnail of The physiology of ex vitro pineapple (Ananas comosus L. Merr. var MD-2) as CAM or C3 is regulated by the environmental conditions

Plant cell reports, 2012

Many plant species grown under in vitro controlled conditions can be used as models for the study... more Many plant species grown under in vitro controlled conditions can be used as models for the study of physiological processes. Adult pineapple can display CAM physiology while in vitro it functions as a C3 plant. Ex vitro Ananas comosus has plastic morphology and physiology, both easy to modify from C3 to CAM by changing the environmental conditions. The yield of survival for a rentable propagation protocol of pineapple is closely related with the C3/CAM shift and the associated physiological characteristics. In the present work, ex vitro pineapple plants were divided in two sets and subjected to C3 and CAM-inducing environmental conditions, determined by light intensity and relative humidity, respectively, 40 μmol m(-2) s(-1)/85% and 260 μmol m(-2) s(-1)/50%. The results demonstrated that the stress imposed by the environmental conditions switched pineapple plants from C3 to CAM behavior. Comparing to CAM induced, C3-induced pineapple plants showed substandard growth parameters and ...

Research paper thumbnail of Protein changes associated with plant regeneration in embryogenic calli of sugarcane (Saccharum sp.)

Plant Cell, Tissue …, 1997

Research paper thumbnail of Sugarcane micropropagation and phenolic excretion

Plant cell, tissue and …, 2001

Research paper thumbnail of Sugarcane shoot formation in an improved temporary immersion system

Plant Cell, Tissue and …, 1998

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