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Transfer of a mutant plant glutamate 1-semialdehyde aminotransferase gene from the nuclear to the plastid genome confers gabaculine resistance in tobacco

Plant Cell, Tissue and Organ Culture (PCTOC). 2019; 
Michele Bellucci, Francesca De Marchis, Andrea Pompa, Maurizio Micheli, Tiziano Gardi & Daniele Rosellini
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Codon Optimization … Codon optimization for expression in the tobacco plastome was performed using the Optimum-Gene™ algorithm at GenScript (Piscataway, NJ) and the resulting coding sequence was in silico assembled with the tobacco 5′ psbA … Get A Quote

摘要

New selection systems are required to extend plastid transformation to a more significant number of plant species. After demonstrating that a bacterial mutant glutamate 1-semialdehyde aminotransferase (GSA) gene is functional in tobacco plastids and confers resistance to the phytotoxin gabaculine, in this work, we transformed the tobacco plastome with a mutated GSA gene derived from alfalfa, along with the aadA selectable marker gene conferring spectinomycin resistance. Selection exploiting gabaculine was not effective to directly regenerate transplastomic events, but some events regenerated using conventional spectinomycin selection acquired gabaculine resistance during the second or third regeneration round... More

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