Chloroplast transformation provides an inexpensive, easily scalable production platform for expression of recombinant proteins in plants. However, this technology has been largely limited to the production of soluble proteins. Here we have tested the ability of tobacco chloroplasts to express a membrane protein, namely plastid terminal oxidase 1 from the green alga Chlamydomonas reinhardtii (Cr-PTOX1), which is predicted to function as a plastoquinol oxidase. A homoplastomic plant containing a codon-optimised version of the nuclear gene encoding PTOX1, driven by the 16S rRNA promoter and 5′UTR of gene 10 from phage T7, was generated using a particle delivery system. Accumulation of Cr-PTOX1 was shown by immunoblotting and expression in an e...
Background: Recombinant chloroplasts are endowed with an astonishing capacity to accumulate foreign ...
Plastid transformation has a number of advantages in comparison with nuclear transformation. Current...
Genetically engineered chloroplasts have an extraordinary capacity to accumulate recombinant protein...
Chloroplast transformation provides an inexpensive, easily scalable production platform for expressi...
Chloroplast transformation technology is an exciting platform for the safe, inexpensive and large-sc...
International audienceThe plastid terminal oxidase PTOX is a plastohydroquinone:oxygen oxidoreductas...
One of the distinguishing features of plants is the presence of membrane-bound organelles called pla...
Chloroplast is responsible for the major metabolic process photosynthesis. These organelles have the...
The chloroplast has been demonstrated to be an ideal compartment to accumulate certain proteins or t...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Thioredoxins (Trxs) are small ubiquitous disulphide proteins widely known to enhance expression and ...
Plastids sustain life on this planet by providing food, feed, essential biomolecules and oxygen. Suc...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Background: Recombinant chloroplasts are endowed with an astonishing capacity to accumulate foreign ...
Plastid transformation has a number of advantages in comparison with nuclear transformation. Current...
Genetically engineered chloroplasts have an extraordinary capacity to accumulate recombinant protein...
Chloroplast transformation provides an inexpensive, easily scalable production platform for expressi...
Chloroplast transformation technology is an exciting platform for the safe, inexpensive and large-sc...
International audienceThe plastid terminal oxidase PTOX is a plastohydroquinone:oxygen oxidoreductas...
One of the distinguishing features of plants is the presence of membrane-bound organelles called pla...
Chloroplast is responsible for the major metabolic process photosynthesis. These organelles have the...
The chloroplast has been demonstrated to be an ideal compartment to accumulate certain proteins or t...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Thioredoxins (Trxs) are small ubiquitous disulphide proteins widely known to enhance expression and ...
Plastids sustain life on this planet by providing food, feed, essential biomolecules and oxygen. Suc...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Background: Recombinant chloroplasts are endowed with an astonishing capacity to accumulate foreign ...
Plastid transformation has a number of advantages in comparison with nuclear transformation. Current...
Genetically engineered chloroplasts have an extraordinary capacity to accumulate recombinant protein...