Currently, biology is revolutionized by ever growing applications of the CRISPR /Cas system. As discussed in this Review, new avenues have opened up for plant research and breeding by the use of the sequence‐specific DN ases Cas9 and Cas12 (formerly named Cpf1) and, more recently, the RN ase Cas13 (formerly named C2c2). Although double strand break‐induced gene editing based on error‐prone nonhomologous end joining has been applied to obtain new traits, such as powdery mildew resistance in wheat or improved pathogen resistance and increased yield in tomato, improved technologies based on CRISPR /Cas for programmed change in plant genomes via homologous recombination have recently been developed. Cas9‐ and Cas12‐ mediated DNA binding is used...
The precise manipulation of plant genomes relies on the induction of DNA double-strand breaks by sit...
The increasing burden of the world population on agriculture requires the development of more robust...
AbstractTargeted genome editing using artificial nucleases has the potential to accelerate basic res...
Application of the bacterial CRISPR /Cas systems to eukaryotes is revolutionizing biology. Cas9 and ...
Development of new plant breeding techniques have facilitated easy manipulation of plants at genetic...
Development of new plant breeding techniques have facilitated easy manipulation of plants at genetic...
In the last years, tremendous progress has been made in the development of CRISPR/Cas-mediated genom...
Traditionally, generation of new plants with improved or desirable features has relied on laborious ...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Genome editing has a long history that dates back to the 1970s with the introduction of recombinant ...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Advancements in Genome editing technologies have revolutionized the fields of functional genomics an...
The likelihood of reduced agricultural production due to highly turbulent climatic conditions increa...
The increasing burden of the world population on agriculture requires the development of more robus...
The precise manipulation of plant genomes relies on the induction of DNA double-strand breaks by sit...
The increasing burden of the world population on agriculture requires the development of more robust...
AbstractTargeted genome editing using artificial nucleases has the potential to accelerate basic res...
Application of the bacterial CRISPR /Cas systems to eukaryotes is revolutionizing biology. Cas9 and ...
Development of new plant breeding techniques have facilitated easy manipulation of plants at genetic...
Development of new plant breeding techniques have facilitated easy manipulation of plants at genetic...
In the last years, tremendous progress has been made in the development of CRISPR/Cas-mediated genom...
Traditionally, generation of new plants with improved or desirable features has relied on laborious ...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Genome editing has a long history that dates back to the 1970s with the introduction of recombinant ...
Modern omics platforms have made the determination of susceptible/resistance genes feasible in any s...
Advancements in Genome editing technologies have revolutionized the fields of functional genomics an...
The likelihood of reduced agricultural production due to highly turbulent climatic conditions increa...
The increasing burden of the world population on agriculture requires the development of more robus...
The precise manipulation of plant genomes relies on the induction of DNA double-strand breaks by sit...
The increasing burden of the world population on agriculture requires the development of more robust...
AbstractTargeted genome editing using artificial nucleases has the potential to accelerate basic res...