Conditions have been developed that induce maize ( Zea mays L.) protoplasts to re-synthesize cell walls and to initiate cell divisions. Two types of embryogenic maize callus were used as a source of protoplasts: a heterogeneous callus (Type I) derived from immature embryos after three weeks in culture, and a friable, rapidly growing callus (Type II) selected from portions of the Type I callus. Many variables in the growth conditions of the donor tissue (type of medium, transfer schedule, age of callus), protoplast isolation solutions (pH, osmolarity, type and concentration of cell wall hydrolyzing enzymes, addition of polyamines) and conditions (amount of time in enzyme, amount of tissue per volume of enzyme incubation medium, agitation, pr...
Maize production and productivity is on a sharp decline due to abiotic and abiotic stresses, therefo...
Maize and soybean tissues have been maintained in culture under different growth conditions. Primary...
Tissue culture of inbred line SM5-4 maize (Zea mays L.), maternal parent of Putra J- 58 (F1 hybrids...
Maize ( Zea mays L. ) protoplasts obtained from Type I and Type II calli from several genotypes were...
Callus production from root explants of the maize (Zea mays L.) inbred line 21A-6 was optimal on a M...
The use of immature zygotic embryos as an explant for maize regeneration has been hampered by the st...
The development of protocols to overcome the current limitations of callus induction and in vitro re...
Two experiments were conducted to develop an efficient maize regeneration system using mature and im...
Objective: Protoplasts are the ideal material for genetic transformation of plants. This requires th...
Protoplasts isolated from the economically important grasses do not readily divide in culture. This ...
This thesis deals with cytomorphogenic aspects during various phases of regeneration in tissue cultu...
Callus induction from explants is a critical process in regeneration, micropropagation and transform...
AbstractWe established conditions for the regeneration of natural maize zygotes isolated from pollin...
Callus induction and regeneration ability of five maize genotypes UMI 757, UMI 615, UMI 112, UMI 285...
Four commercial tropical maize genotypes (H627, H625, H513 and DLC1) were screened in vitro for call...
Maize production and productivity is on a sharp decline due to abiotic and abiotic stresses, therefo...
Maize and soybean tissues have been maintained in culture under different growth conditions. Primary...
Tissue culture of inbred line SM5-4 maize (Zea mays L.), maternal parent of Putra J- 58 (F1 hybrids...
Maize ( Zea mays L. ) protoplasts obtained from Type I and Type II calli from several genotypes were...
Callus production from root explants of the maize (Zea mays L.) inbred line 21A-6 was optimal on a M...
The use of immature zygotic embryos as an explant for maize regeneration has been hampered by the st...
The development of protocols to overcome the current limitations of callus induction and in vitro re...
Two experiments were conducted to develop an efficient maize regeneration system using mature and im...
Objective: Protoplasts are the ideal material for genetic transformation of plants. This requires th...
Protoplasts isolated from the economically important grasses do not readily divide in culture. This ...
This thesis deals with cytomorphogenic aspects during various phases of regeneration in tissue cultu...
Callus induction from explants is a critical process in regeneration, micropropagation and transform...
AbstractWe established conditions for the regeneration of natural maize zygotes isolated from pollin...
Callus induction and regeneration ability of five maize genotypes UMI 757, UMI 615, UMI 112, UMI 285...
Four commercial tropical maize genotypes (H627, H625, H513 and DLC1) were screened in vitro for call...
Maize production and productivity is on a sharp decline due to abiotic and abiotic stresses, therefo...
Maize and soybean tissues have been maintained in culture under different growth conditions. Primary...
Tissue culture of inbred line SM5-4 maize (Zea mays L.), maternal parent of Putra J- 58 (F1 hybrids...