Abstract Background Gene editing technologies enable the precise insertion of favourable mutations and performance enhancing trait genes into chromosomes whilst excluding all excess DNA from modified genomes. The technology gives rise to a new class of biotech crops which is likely to have widespread applications in agriculture. Despite progress in the nucleus, the seamless insertions of point mutations and non-selectable foreign genes into the organelle genomes of crops have not been described. The chloroplast genome is an attractive target to improve photosynthesis and crop performance. Current chloroplast genome engineering technologies for introducing point mutations into native chloroplast genes leave DNA scars, such as the target site...
We performed deep sequencing of the nuclear and organellar genomes of three mungbean genotypes: Vign...
Genome Editing for targeted gene improvement is widely used in the field of plant science for basic ...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Plant organelles including mitochondria and chloroplasts contain their own genomes, which encode man...
Uncontrollable spread of transgenes to untransformed varieties and other related wild species throug...
© 2022, The Author(s).Chloroplast DNA (cpDNA) encodes up to 315 (typically, 120–130) genes1, includi...
Abstract Background The gene expression system of chloroplasts is far more complex than that of thei...
Abstract Plastids (chloroplasts) are the defining organelles of plants and eukaryotic algae. In addi...
Chloroplast RNA editing proceeds by C-to-U transitions at highly specific sites. Here, we provide a ...
The first characterization of transcriptional, posttranscriptional, and translational processes of h...
Chloroplasts are at the front line of many advancements in molecular biology, ranging from evolution...
RNA editing in organelles of angiosperm plants results in alteration of Cs to Us in transcripts. In ...
The first characterization of transcriptional, posttranscriptional, and translational processes of h...
In the last years, tremendous progress has been achieved in the field of gene editing in plants. By ...
Chloroplast genetic engineering offers a number of unique advantages, including high-level transgene...
We performed deep sequencing of the nuclear and organellar genomes of three mungbean genotypes: Vign...
Genome Editing for targeted gene improvement is widely used in the field of plant science for basic ...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...
Plant organelles including mitochondria and chloroplasts contain their own genomes, which encode man...
Uncontrollable spread of transgenes to untransformed varieties and other related wild species throug...
© 2022, The Author(s).Chloroplast DNA (cpDNA) encodes up to 315 (typically, 120–130) genes1, includi...
Abstract Background The gene expression system of chloroplasts is far more complex than that of thei...
Abstract Plastids (chloroplasts) are the defining organelles of plants and eukaryotic algae. In addi...
Chloroplast RNA editing proceeds by C-to-U transitions at highly specific sites. Here, we provide a ...
The first characterization of transcriptional, posttranscriptional, and translational processes of h...
Chloroplasts are at the front line of many advancements in molecular biology, ranging from evolution...
RNA editing in organelles of angiosperm plants results in alteration of Cs to Us in transcripts. In ...
The first characterization of transcriptional, posttranscriptional, and translational processes of h...
In the last years, tremendous progress has been achieved in the field of gene editing in plants. By ...
Chloroplast genetic engineering offers a number of unique advantages, including high-level transgene...
We performed deep sequencing of the nuclear and organellar genomes of three mungbean genotypes: Vign...
Genome Editing for targeted gene improvement is widely used in the field of plant science for basic ...
While genetic improvement of susceptible crop species may enhance resistance to microbial pathogens...