Gene Silencing without DNA: RNA-Mediated Cross-Protection between Viruses
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[1] H. Vaucheret,et al. Infection of tobacco or Arabidopsis plants by CMV counteracts systemic post-transcriptional silencing of nonviral (trans)genes. , 1998, Virology.
[2] K. Kasschau,et al. A Counterdefensive Strategy of Plant Viruses Suppression of Posttranscriptional Gene Silencing , 1998, Cell.
[3] P. Waterhouse,et al. Virus resistance and gene silencing in plants can be induced by simultaneous expression of sense and antisense RNA. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[4] A. Mallory,et al. A viral suppressor of gene silencing in plants. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[5] D. Baulcombe,et al. Systemic Spread of Sequence-Specific Transgene RNA Degradation in Plants Is Initiated by Localized Introduction of Ectopic Promoterless DNA , 1998, Cell.
[6] A. Gleave,et al. Post-transcriptional Silencing of Chalcone Synthase in Petunia Using a Geminivirus-based Episomal Vector , 2022 .
[7] Olivier Voinnet,et al. Initiation and Maintenance of Virus-Induced Gene Silencing , 1998, Plant Cell.
[8] W. F. Thompson,et al. Gene silencing from plant DNA carried by a Geminivirus. , 1998, The Plant journal : for cell and molecular biology.
[9] S. Covey,et al. Transcriptional and posttranscriptional plant gene silencing in response to a pathogen , 1998, Science.
[10] Y. Okada,et al. Transgenic potato expressing a double-stranded RNA-specific ribonuclease is resistant to potato spindle tuber viroid , 1997, Nature Biotechnology.
[11] Won-Young Kim,et al. Testing the nuclear test-ban treaty , 1997, Nature.
[12] D. Baulcombe,et al. Requirement of sense transcription for homology‐dependent virus resistance and trans‐inactivation , 1997 .
[13] H. Vaucheret,et al. A Transcriptionally Active State Is Required for Post-Transcriptional Silencing (Cosuppression) of Nitrate Reductase Host Genes and Transgenes. , 1997, The Plant cell.
[14] S. MacFarlane,et al. Replication of in vitro tobravirus recombinants shows that the specificity of template recognition is determined by 5' non-coding but not 3' non-coding sequences. , 1997, The Journal of general virology.
[15] D. Baulcombe,et al. Consistent gene silencing in transgenic plants expressing a replicating potato virus X RNA , 1997, The EMBO journal.
[16] D. Baulcombe,et al. A similarity between viral defense and gene silencing in plants. , 1997, Science.
[17] J. Carrington,et al. Plant viral synergism: the potyviral genome encodes a broad-range pathogenicity enhancer that transactivates replication of heterologous viruses. , 1997, The Plant cell.
[18] M. Metzlaff,et al. RNA-Mediated RNA Degradation and Chalcone Synthase A Silencing in Petunia , 1997, Cell.
[19] D. Prasher,et al. Removal of a cryptic intron and subcellular localization of green fluorescent protein are required to mark transgenic Arabidopsis plants brightly. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[20] J. García,et al. Delayed Resistance to Plum Pox Potyvirus Mediated by a Mutated RNA Replicase Gene: Involvement of a Gene-Silencing Mechanism , 1997 .
[21] K. Kasschau,et al. Genome amplification and long-distance movement functions associated with the central domain of tobacco etch potyvirus helper component-proteinase. , 1997, Virology.
[22] S. Covey,et al. Plants combat infection by gene silencing , 1997, Nature.
[23] D. Brown,et al. Transmission of tobacco rattle virus isolate PpK20 by its nematode vector requires one of the two non-structural genes in the viral RNA 2. , 1997, The Journal of general virology.
[24] T. Hori,et al. Virus-induced cell death in plants expressing the mammalian 2′,5′ oligoadenylate system , 1996, Nature Biotechnology.
[25] D. Baulcombe. Mechanisms of Pathogen-Derived Resistance to Viruses in Transgenic Plants. , 1996, The Plant cell.
[26] R. Silverman,et al. A mammalian 2-5A system functions as an antiviral pathway in transgenic plants. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[27] W. Dawson. Gene silencing and virus resistance: a common mechanism , 1996 .
[28] W. Stemmer,et al. Improved Green Fluorescent Protein by Molecular Evolution Using DNA Shuffling , 1996, Nature Biotechnology.
[29] D. Baulcombe,et al. Suppression of Virus Accumulation in Transgenic Plants Exhibiting Silencing of Nuclear Genes. , 1996, The Plant cell.
[30] W. Dougherty,et al. Genetic and biochemical dissection of transgenic RNA-mediated virus resistance. , 1996, The Plant cell.
[31] D. Baulcombe,et al. Homology‐dependent resistance: transgenic virus resistance in plants related to homology‐dependent gene silencing , 1995 .
[32] D. Baulcombe,et al. Jellyfish green fluorescent protein as a reporter for virus infections. , 1995, The Plant journal : for cell and molecular biology.
[33] M. Kumagai,et al. Cytoplasmic inhibition of carotenoid biosynthesis with virus-derived RNA. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[34] H. A. Smith,et al. Transgenic plant virus resistance mediated by untranslatable sense RNAs: expression, regulation, and fate of nonessential RNAs. , 1994, The Plant cell.
[35] W. Dougherty,et al. Induction of a Highly Specific Antiviral State in Transgenic Plants: Implications for Regulation of Gene Expression and Virus Resistance. , 1993, The Plant cell.
[36] D. Baulcombe,et al. Molecular analysis of a resistance-breaking strain of potato virus X. , 1992, Virology.
[37] D. Baulcombe,et al. Potato virus X as a vector for gene expression in plants. , 1992, The Plant journal : for cell and molecular biology.
[38] D. Gilmer,et al. Efficient inoculation with CaMV 35 S promoter-driven DNA clones of the tobravirus PEBV. , 1992, Virology.
[39] M. J. Cormier,et al. Primary structure of the Aequorea victoria green-fluorescent protein. , 1992, Gene.
[40] W. Dawson,et al. Systemic expression of a bacterial gene by a tobacco mosaic virus-based vector. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[41] D. Baulcombe,et al. Infectious RNA Produced by in vitro Transcription of a Full-length Tobacco Rattle Virus RNA-1 cDNA , 1989 .
[42] J. Semancik,et al. Multiple small RNA species and the viroid hypothesis for the sunblotch disease of avocado. , 1980, Virology.
[43] K. Fernow,et al. Cross protection among four viroids. , 1978, Virology.
[44] A. F. Murant,et al. Seed‐transmission of nematode‐borne viruses , 1967 .
[45] B. Harrison,et al. STUDIES ON THE PROPERTIES OF SOIL‐BORNE VIRUSES OF THE TOBACCO‐RATTLE TYPE OCCURRING IN SCOTLAND , 1959 .
[46] H. Vaucheret. Promoter-dependent trans-inactivation in transgenic tobacco plants : kinetic aspects of gene silencing and gene reactivation , 1994 .
[47] D. Grierson,et al. Does co-suppression of sense genes in transgenic plants involve antisense RNA? , 1991 .
[48] D. Robinson,et al. The tobraviruses. , 1978, Advances in virus research.
[49] F. I. Frosheiser. Alfalfa mosaic virus transmission to seed through alfalfa gametes and longevity in alfalfa seed. , 1974 .
[50] K. Fernow. Tomato as a test plant for detecting mild strains of Potato spindle tuber virus. , 1967 .