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Overexpression of polyphenol oxidase in transgenic tomato plants results in enhanced bacterial disease resistance

Planta · 2002 · Vol. 215(2) · pp. 239–247
Li LiJohn C. Steffens
Plant-Microbe Interactions and ImmunityPlant tissue culture and regenerationPlant Virus Research StudiesPseudomonas syringaeLycopersiconBiologyPolyphenol oxidaseGenetically modified cropsTransgeneCauliflower mosaic virusPlant disease resistanceGenetically modified tomatoSolanaceae

MeSH terms

Chlorogenic AcidCatechol OxidaseImmunity, InnateOxidation-ReductionOxidoreductasesPhenolsPlant DiseasesPromoter Regions, GeneticPseudomonasRecombinant Fusion ProteinsRutinMonophenol MonooxygenaseGene Expression Regulation, EnzymologicCaulimovirusDNA, Complementary

Funding

  • U.S. Department of Agriculture
Citations
565
FWCI
15.68
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References
41
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99%
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Overexpression of polyphenol oxidase in transgenic tomato plants results in enhanced bacterial disease resistance · Scinovex