Search Results - "Jackson, A.O"
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Tomato Bushy Stunt Virus Spread Is Regulated by Two Nested Genes That Function in Cell-to-Cell Movement and Host-Dependent Systemic Invasion
Published in Virology (New York, N.Y.) (10-11-1995)“…We have investigated the importance of two small nested genes (p19 and p22) located near the 3′ end of the genome of tomato bushy stunt virus (TBSV) for…”
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The Tomato Bushy Stunt Virus Replicase Proteins Are Coordinately Expressed and Membrane Associated
Published in Virology (New York, N.Y.) (01-04-1995)“…Two open reading frames at the 5′-end of the tomato bushy stunt virus genomic RNA are predicted to encode a 33-kDa (p33) protein and its 92-kDa (p92)…”
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Nucleotide Sequence and Infectivity of a Full-Length cDNA Clone of Panicum Mosaic Virus
Published in Virology (New York, N.Y.) (01-02-1998)“…The sequence of an infectious cDNA clone of panicum mosaic virus (PMV) showed that the single-stranded RNA genome is 4326 nucleotides (nt) and a single highly…”
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Expression of the Barley Stripe Mosaic Virus RNAβ “Triple Gene Block”
Published in Virology (New York, N.Y.) (15-02-1996)“…Genomic RNAβ of barley stripe mosaic virus (BSMV) contains four defined open reading frames (ORFs). These include the coat protein (βa) and a “triple gene…”
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Characterization and detection of sc4: a sixth gene encoded by sonchus yellow net virus
Published in Virology (New York, N.Y.) (01-10-1994)“…The nucleotide sequence of a sixth gene (sc4) of the plant rhabdovirus sonchus yellow net virus (SYNV) was determined from viral genomic and poly(A)+ cDNA…”
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Defective-interfering RNAs and elevated temperatures inhibit replication of tomato bushy stunt virus in inoculated protoplasts
Published in Virology (New York, N.Y.) (01-06-1990)“…Tomato bushy stunt virus (TBSV) genomic RNA and one of its defective interfering (DI) RNAs were inoculated in various combinations to protoplasts of Nicotiana…”
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Varied Movement Strategies Employed by Triple Gene Block–Encoding Viruses
Published in Molecular plant-microbe interactions (01-10-2010)“…Several RNA virus genera belonging to the Virgaviridae and Flexiviridae families encode proteins organized in a triple gene block (TGB) that facilitate…”
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Hagenulopsis Ulmer (Ephemeroptera: Leptophlebiidae): re-description, morphological notes and a new species from South America, Brazil
Published in Zootaxa (17-02-2022)“…Hagenulopsis diptera Ulmer, type species of the genus Hagenulopsis, was originally described based on imagos from Santa Catarina State, Southern Brazil…”
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New species and new records of Miroculis Edmunds, 1963 (Ephemeroptera: Leptophlebiidae) from Chacoan Domain in northeastern Brazil
Published in Zootaxa (19-01-2023)“…The genus Miroculis Edmunds, 1963 (Ephemeroptera: Leptophlebiidae) is endemic to South American with 27 described species. In Brazil, 21 of these are known to…”
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Infectious barley stripe mosaic virus RNA transcribed in vitro from full-length genomic cDNA clones
Published in Virology (New York, N.Y.) (01-08-1989)“…Full-length genomic cDNA clones of the Type and ND18 strains of barley stripe mosaic virus (BSMV) were transcribed in vitro using T7 RNA polymerase. The…”
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An updated distribution list of Leptophlebiidae Banks, 1900 (Ephemeroptera: Insecta) for Piauí state
Published in Biota neotropica (2023)“…Abstract Leptophlebiidae is the second most diverse family within Ephemeroptera, with species distributed across various States in Brazil, but with gaps in…”
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Biology of plant Rhabdoviruses
Published in Annual review of phytopathology (01-01-2005)“…The Rhabdoviridae, whose members collectively infect invertebrates, animals, and plants, form a large family that has important consequences for human health,…”
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Multiple genetic determinants of barley stripe mosaic virus influence lesion phenotype on Chenopodium amaranticolor
Published in Virology (New York, N.Y.) (01-01-1994)“…The ND18 and Type strains of barley stripe mosaic hordeivirus (BSMV) differ in the local lesion phenotypes they elicit on Chenopodium amaranticolor. The ND18…”
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Sequence analysis of the trailer region of sonchus yellow net virus genomic RNA
Published in Virology (New York, N.Y.) (01-07-1994)“…The sequence of the 5' terminus (or the "trailer" region) of the minus-sense RNA genome of sonchus yellow net virus (SYNV) was determined by dideoxynucleotide…”
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Brachypodium distachyon line Bd3-1 resistance is elicited by the barley stripe mosaic virus triple gene block 1 movement protein
Published in Journal of general virology (01-12-2012)“…Barley stripe mosaic virus North Dakota 18 (ND18), Beijing (BJ), Xinjiang (XJ), Type (TY) and CV21 strains are unable to infect the Brachypodium distachyon…”
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RNA recombination in the genome of barley stripe mosaic virus
Published in Virology (New York, N.Y.) (01-07-1992)“…Barley stripe mosaic Hordeivirus (BSMV) is a positive-strand RNA virus requiring three single-stranded RNAs (alpha, beta, and gamma) for infectivity. A…”
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Triple Gene Block Protein Interactions Involved in Movement of Barley Stripe Mosaic Virus
Published in Journal of Virology (01-05-2008)“…Barley stripe mosaic virus (BSMV) encodes three movement proteins in an overlapping triple gene block (TGB), but little is known about the physical…”
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Structure of the glycoprotein gene of sonchus yellow net virus, a plant rhabdovirus
Published in Virology (New York, N.Y.) (01-11-1991)“…The nucleotide sequence of the glycoprotein (G) gene of sonchus yellow net virus (SYNV), a plant rhabdovirus, was determined from viral genomic and mRNA cDNA…”
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Nucleotide sequence and genetic organization of barley stripe mosaic virus RNA gamma
Published in Virology (New York, N.Y.) (01-06-1987)“…The complete nucleotide sequences of RNA gamma from the Type and ND18 strains of barley stripe mosaic virus (BSMV) have been determined. The sequences are 3164…”
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Two forms of the major barley stripe mosaic virus nonstructural protein are synthesized in vivo from alternative initiation codons
Published in Virology (New York, N.Y.) (01-08-1990)“…Barley stripe mosaic virus (BSMV) has a tripartite genome comprising RNAs designated alpha, beta, and gamma, which collectively encode seven polypeptides. We…”
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