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A Novel Ternary Vector System United with Morphogenic Genes Enhances CRISPR/Cas Delivery in Maize

Plant Physiol. 2019-09; 
Zhang Q, Zhang Y, Lu MH, Chai YP, Jiang YY, Zhou Y, Wang XC, Chen QJ.
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ORF cDNA Clones/MolecularCloud The vectors are available from Addgene and/or MolecularCloud (GenScript) for sharing with academic investigators for noncommercial research...Annotated sequences of the vectors 278 described in this study together with their DNA samples are available from Addgene and/or MolecularCloud 279 (GenScript) for sharing with academic investigators for noncommercial research. Get A Quote

摘要

The lack of efficient delivery methods is a major barrier to CRISPR/Cas-mediated genome editing in many plant species. Combinations of morphogenic regulator (MR) genes and ternary vector systems are promising solutions to this problem. In this study, we first demonstrated that MR vectors greatly enhance maize (Zea mays) transformation. We then tested a CRISPR/Cas9 MR vector in maize and found that the MR and CRISPR/Cas9 modules have no negative influence on each other. Finally, we developed a novel ternary vector system to integrate the MR and CRISPR/Cas modules. Our ternary vector system is composed of new pGreen-like binary vectors, here named pGreen3, and a pVS1-based virulence helper plasmid, which also fun... More

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