
pmid: 16139270
Since the discovery of RNAi, its mechanism in plants and animals has been intensively studied, widely exploited as a research tool, and used for a number of potential commercial applications. In this article, we discuss the platforms for delivering RNAi in plants. We provide a brief background to these platforms and concentrate on discussing the more recent advances, comparing the RNAi technologies used in plants with those used in animals, and trying to predict the ways in which RNAi technologies may further develop.
polymerase chain reaction, virus particle, Genetic Vectors, short survey, 3&apos, Small Interfering, Genes, Plant, hpRNA, Plant Viruses, untranslated region, Double-Stranded, gene silencing, RNA interference, plant virus, VIGS, plant defense, shRNA, Animalia, Animals, RNA-Induced Silencing Complex, Gene Silencing, Transgenes, RNA, Small Interfering, RNA structure, virus transformation, RNA, Double-Stranded, 5&apos, amplicon, transgene, Gene Transfer Techniques, Plant, DNA, RNA vector, MicroRNAs, virus genome, Genes, priority journal, Genetic Techniques, RNA, Plant, RNAi, RNA, DNA directed RNA polymerase III, RNA polymerase II, RNA Interference, Plasmids
polymerase chain reaction, virus particle, Genetic Vectors, short survey, 3&apos, Small Interfering, Genes, Plant, hpRNA, Plant Viruses, untranslated region, Double-Stranded, gene silencing, RNA interference, plant virus, VIGS, plant defense, shRNA, Animalia, Animals, RNA-Induced Silencing Complex, Gene Silencing, Transgenes, RNA, Small Interfering, RNA structure, virus transformation, RNA, Double-Stranded, 5&apos, amplicon, transgene, Gene Transfer Techniques, Plant, DNA, RNA vector, MicroRNAs, virus genome, Genes, priority journal, Genetic Techniques, RNA, Plant, RNAi, RNA, DNA directed RNA polymerase III, RNA polymerase II, RNA Interference, Plasmids
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