Engineering the nuclear genome of plants is perceived to be associated with problems regarding biosafety and the stability of expression of the transgene. Alternative transformation strategies using the genomic outfit of the plastid promise to be more successful in this respect. Over the past few years progress has been made in screening procedures, and plastid transformation technology has allowed function to be assigned to open reading frames, massive expression of insecticidal agents and proteins involved in herbicide resistance, and the accumulation of biopolymers. Recently, the design of a novel femtoinjection technique that allows injection into chloroplasts has provided the opportunity to further manipulate and understand chloroplast...
Uncontrollable spread of transgenes to untransformed varieties and other related wild species throug...
Transgene expression from the plastid (chloroplast) genome offers unique attractions to plant biotec...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Since the development of methodologies for achieving genetic modification of chloroplast genomes, te...
Plastid transformation has emerged as an alternative platform to generate transgenic plants. Attract...
Chloroplasts are the site of photosynthesis in plants mostly seen in leaves and some eukaryotic alga...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
Plant genetic engineering will probably contribute to the required continued increase in agricultura...
Abstract Chloroplasts play a great role for sustained wellbeing of life on the planet. They have the...
Plastid transformation has a number of advantages in comparison with nuclear transformation. Current...
Abstract Plastids (chloroplasts) are the defining organelles of plants and eukaryotic algae. In addi...
Chloroplast genetic engineering offers a number of unique advantages, including high-level transgene...
Expression of transgenes from the plastid genome offers a number of attractions to biotechnologists,...
Uncontrollable spread of transgenes to untransformed varieties and other related wild species throug...
Transgene expression from the plastid (chloroplast) genome offers unique attractions to plant biotec...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Since the development of methodologies for achieving genetic modification of chloroplast genomes, te...
Plastid transformation has emerged as an alternative platform to generate transgenic plants. Attract...
Chloroplasts are the site of photosynthesis in plants mostly seen in leaves and some eukaryotic alga...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Chloroplast genetic engineering offers a number of unique advantages, including a high-level of tran...
Plastid genome engineering holds great promise in many biotechnological applications, including prod...
Plant genetic engineering will probably contribute to the required continued increase in agricultura...
Abstract Chloroplasts play a great role for sustained wellbeing of life on the planet. They have the...
Plastid transformation has a number of advantages in comparison with nuclear transformation. Current...
Abstract Plastids (chloroplasts) are the defining organelles of plants and eukaryotic algae. In addi...
Chloroplast genetic engineering offers a number of unique advantages, including high-level transgene...
Expression of transgenes from the plastid genome offers a number of attractions to biotechnologists,...
Uncontrollable spread of transgenes to untransformed varieties and other related wild species throug...
Transgene expression from the plastid (chloroplast) genome offers unique attractions to plant biotec...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...