The bacterium Erwinia amylovora, the causal agent of fire blight disease in apple, triggers its infection through the DspA/E effector which interacts with the apple susceptibility protein MdDIPM4. In this work, an MdDIPM4 knock-out has been produced in two Malus x domestica susceptible cultivars using the CRISPR/Cas9 system delivered via Agrobacterium tumefaciens. Fifty-seven transgenic lines were screened to identify CRISPR/Cas9-induced mutations. An editing efficiency of 75% was obtained. Seven edited lines with a loss-of-function mutation were inoculated with the pathogen. Highly significant reduction of susceptibility was observed compared to control plants. Sequencing of 5 potential off-target sites revealed no mutation event. Moreover...
Fire blight disease, caused by the bacterium Erwinia amylovora (E. amylovora), is responsible for su...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
The generation and selection of novel fire blight resistant apple genotypes would greatly improve th...
The bacterium Erwinia amylovora, the causal agent of fire blight disease in apple, triggers its infe...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impo...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impo...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impor...
Fire blight, caused by the bacterium Erwinia amylovora (E. amylovora), is one of the most economical...
Most commercial apples are sensitive to pathogens causing re blight (Erwinia amylovora) and powdery ...
Fire blight is the most important bacterial disease in apple (Malus × domestica) and pear (Pyrus co...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
Fire blight disease, caused by the bacterium Erwinia amylovora (E. amylovora), is responsible for su...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
The generation and selection of novel fire blight resistant apple genotypes would greatly improve th...
The bacterium Erwinia amylovora, the causal agent of fire blight disease in apple, triggers its infe...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impo...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impo...
Fire blight, caused by the bacterium Erwinia amylovora (E.a.), is one of the most economically impor...
Fire blight, caused by the bacterium Erwinia amylovora (E. amylovora), is one of the most economical...
Most commercial apples are sensitive to pathogens causing re blight (Erwinia amylovora) and powdery ...
Fire blight is the most important bacterial disease in apple (Malus × domestica) and pear (Pyrus co...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
Fire blight disease, caused by the bacterium Erwinia amylovora (E. amylovora), is responsible for su...
The combined availability of whole genome sequences and genome editing tools is set to revolutionize...
The generation and selection of novel fire blight resistant apple genotypes would greatly improve th...