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An iterative gene-editing strategy broadens eIF4E1 genetic diversity in Solanum lycopersicum and generates resistance to multiple potyvirus isolates

Plant Biotechnol J. 2023-01; 
Kyoka Kuroiwa, Benoit Danilo, Laura Perrot, Christina Thenault, Florian Veillet, Fabien Delacote, Philippe Duchateau, Fabien Nogué, Marianne Mazier, Jean-Luc Gallois
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Proteins, Expression, Isolation and Analysis … By taking the susceptibility factor eIF4E as an example, we exemplify how genome editing … The DNA donor template for gene knock-in was synthesized by GenScript (Piscataway, NJ) … Get A Quote

摘要

Resistance to potyviruses in plants has been largely provided by the selection of natural variant alleles of eukaryotic translation initiation factors (eIF) 4E in many crops. However, the sources of such variability for breeding can be limited for certain crop species, while new virus isolates continue to emerge. Different methods of mutagenesis have been applied to inactivate the eIF4E genes to generate virus resistance, but with limited success due to the physiological importance of translation factors and their redundancy. Here, we employed genome editing approaches at the base level to induce non-synonymous mutations in the eIF4E1 gene and create genetic diversity in cherry tomato (Solanum lycopersicum var.... More

關鍵詞

base editing, eIF4E, genetic resistance, genome editing, potyvirus, tomato
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