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Rice Genetics IV - IRRI books - International Rice Research Institute

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Stam M, de Bruin R, Kenter S, van der Hourn RAL, van Blokland R, Mol JNM, Kooter JM.1997. Post-transcriptional silencing of chalcone synthase in Petunia by inverted transgenerepeats. Plant J. 12:63-82.Tacke E, Salamini F, Rohde W. 1996. Genetic engineering of potato for broad spectrum protectionagainst virus infection. Nat. Biotechnol. 14:1597-1601.Tavladoraki P, Benvenuto E, Trinca S, DeMartinis D, Cattaneo A, Galeffi P, De Martinis D.1993. Transgenic plants expressing a functional single-chain Fv antibody are specificallyprotected from virus attack. Nature 366:469-472.Tenllado F, Garcia-Luque I, Serra MT, Diaz-Ruiz JR. 1995. Nicotiana benthamiana plantstransformed with the 54-kDa region of the pepper mild mottle tobravirus replicase geneexhibit two types of resistance responses against viral infection. Virology 211:170-183.Tepfer M, Balazs E. 1997. Virus-resistant transgenic plants: potential ecological impact. Heidelberg,Berlin (Germany): Springer-Verlag. 126 p.Tien P, Wu G. 1991. Satellite RNA for the biocontrol of plant disease. Adv. Virus Res. 39:321-339.Truve E, Aaspôllu A, Honkanen J, Puska R, Mehto M, Hassl A, Teeri TH, Kelve M, SeppanenP, Saarma M. 1993. Transgenic potato plants expressing mammalian 2’-5’ oligoadenylatesynthetase are protected from potato virus X infection under field conditions. Bio/Technology11:1048-1052.Upadhyaya NM, Yang M, Kositratana W, Ghosh A, Waterhouse PM. 1995. Molecular analysisof rice ragged stunt oryzavirus segment S9 and sequence conservation among isolates fromThailand and India. Arch. Virol. 140:1945-1956.Upadhyaya NM, Li Z, Yang M, Kositratana W, Waterhouse PM. 1996. <strong>Rice</strong> ragged stunt virussynthetic resistance genes and japonica rice transformation. In: Khush GS, editor. <strong>Rice</strong>genetics III. Proceedings of the Third <strong>International</strong> <strong>Rice</strong> <strong>Genetics</strong> Symposium, 16-20 Oct.1995, Manila (Philippines). Manila (Philippines): <strong>International</strong> <strong>Rice</strong> <strong>Research</strong> <strong>Institute</strong>.p 773-779.Upadhyaya NM, Ramm K, Li Z, Kositratana M, Waterhouse PM. 1998a. <strong>Rice</strong> ragged stuntoryzavirus genome segment S4 could encode an RNA dependent RNA polymerase and asecond protein of unknown function. Arch. Virol.143:1815-1822.Upadhyaya NM, Li Z, Ramm K, Gaudron J, Waterhouse PM, Wang M-B, Kositratana W, GongZ-X. 1998b. Production of transgenic rice with rice ragged stunt virus synthetic resistancegenes. In: Drew RA, editor. Proceedings of the <strong>International</strong> Symposium on Biotechnologyof Tropical and Subtropical Species. Acta Hortic. 461:393-400.van den Elzen PJM, Huisman MJ, Posthumus-L, Willink D, Jongedijk E, Hoekema A,Cornelissen BJ. 1989. Engineering virus resistance in agricultural crops. Plant Mol. Biol.13:337-346.Wang M-B, Waterhouse PM. 2000. High efficient silencing of a β-glucuronidase gene in rice iscorrelated with repetitive transgene structure but is independent of DNA methylation. PlantMol. Biol. 43:67-82.Watanabe Y, Ogawa T, Takahashi H, Ishida I, Takeuchi Y, Yamamoto M, Okada Y. 1995. Resistanceagainst multiple plant viruses in plants mediated by double-stranded RNA-specificribonuclease. FEBS Lett. 372:165-168.Waterhouse PM, Graham MW, Wang M-B. 1998. Virus resistance and gene silencing in plantscan be induced by simultaneous expression of sense and antisense RNA. Proc. Natl. Acad.Sci. USA 95:13959-13964.Waterhouse PM, Smith NA, Wang M-B. 1999. Virus resistance and gene silencing: killing themessenger. Trends Plant Sci. 4:452-457.420 Upadhyaya et al

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