The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamydomonas reinhardtii is allowing researchers to explore the use of this microalga as a phototrophic cell platform for synthesis of high value recombinant proteins and metabolites. However, the established method for delivering transforming DNA into the algal chloroplast involves microparticle bombardment using an expensive "gene gun". Furthermore, selection of transformant lines most commonly involves the use of a bacterial antibiotic resistance gene. In this chapter, we describe a simple and cheap delivery method in which cell-DNA suspensions are agitated with glass beads: a method that is more commonly used for nuclear transformation of Chlam...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Chlamydomonas reinhardtii is a model alga of increasing interest as a cell factory for the productio...
Sustainable and economically viable support for an ever-increasing global population requires a para...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
In recent years, there has been an increasing interest in the exploitation of microalgae in industri...
The chloroplast of microalgae such as Chlamydomonas reinhardtii represents an attractive chassis for...
The chloroplast of microalgae such as Chlamydomonas reinhardtii represents an attractive chassis for...
There is a growing interest in the use of microalgae as low‐cost hosts for the synthesis of recombin...
Interest in the exploitation of microalgae for biotechnological applications has increased over the ...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Chlamydomonas reinhardtii is a model alga of increasing interest as a cell factory for the productio...
Sustainable and economically viable support for an ever-increasing global population requires a para...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
The availability of routine methods for the genetic engineering of the chloroplast genome of Chlamyd...
In recent years, there has been an increasing interest in the exploitation of microalgae in industri...
The chloroplast of microalgae such as Chlamydomonas reinhardtii represents an attractive chassis for...
The chloroplast of microalgae such as Chlamydomonas reinhardtii represents an attractive chassis for...
There is a growing interest in the use of microalgae as low‐cost hosts for the synthesis of recombin...
Interest in the exploitation of microalgae for biotechnological applications has increased over the ...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
The chloroplast represents an attractive compartment for light-driven biosynthesis of recombinant pr...
Green algae present a unique platform for bioengineering and biomanufacturing; they grow rapidly, ph...
Chlamydomonas reinhardtii is a model alga of increasing interest as a cell factory for the productio...
Sustainable and economically viable support for an ever-increasing global population requires a para...