Works matching DE "STAGONOSPORA"
Results: 37
Bacteria associated with <em>Stagonospora (Septoria) nodorum</em> increase pathogenicity of the fungus.
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- New Phytologist, 1999, v. 144, n. 3, p. 489, doi. 10.1046/j.1469-8137.1999.00542.x
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Survival and spread of the endophyte Stagonospora pteridiicola in Pteridium aquilinum, other ferns and some flowering plants.
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- New Phytologist, 1996, v. 132, n. 1, p. 119, doi. 10.1111/j.1469-8137.1996.tb04516.x
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Ultrastructural features of a Stagonospora species (Ascomycotina) in senescent tissues of perennial ryegrass (Lolium perenne L.).
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- New Phytologist, 1989, v. 113, n. 2, p. 127, doi. 10.1111/j.1469-8137.1989.tb04698.x
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Host-selective toxins produced by Stagonospora nodorum confer disease susceptibility in adult wheat plants under field conditions.
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- Theoretical & Applied Genetics, 2009, v. 118, n. 8, p. 1489, doi. 10.1007/s00122-009-0997-2
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A comparative analysis of the heterotrimeric G-protein Gα, Gβ and Gγ subunits in the wheat pathogen Stagonospora nodorum.
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- BMC Microbiology, 2012, v. 12, n. 1, p. 131, doi. 10.1186/1471-2180-12-131
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Development, identification, and validation of markers for marker-assisted selection against the Stagonospora nodorum toxin sensitivity genes Tsn1 and Snn2 in wheat.
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- Molecular Breeding, 2009, v. 23, n. 1, p. 35, doi. 10.1007/s11032-008-9211-5
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Determining the order of resistance genes against Stagonospora nodorum blotch, Fusarium head blight and stem rust on wheat chromosome arm 3BS.
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- BMC Research Notes, 2016, v. 9, p. 1, doi. 10.1186/s13104-016-1859-z
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Genetic and Pathogenic Characterization of Different Stagonospora sp. Isolated from Bindweed.
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- Biocontrol Science & Technology, 1999, v. 9, n. 4, doi. 10.1080/09583159929514
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Study of Genetic Variability Among Monopycnidial and Monopycnidiospore Isolates Derived from Single Pycnidia of Stagonospora ssp. and Septoria tritici with the use of RAPD-PCR, MP-PCR and rep-PCR Techniques.
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- Journal of Phytopathology, 1999, v. 147, n. 9, p. 539, doi. 10.1111/j.1439-0434.1999.tb03862.x
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Transmission of Stagonospora nodorum and Fusarium spp. on Triticale and Wheat Seed and the Effect of Seedborne Stagonospora nodorum on Disease Severity under Field Conditions.
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- Journal of Phytopathology, 1998, v. 146, n. 7, p. 339, doi. 10.1111/j.1439-0434.1998.tb04702.x
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Development of a multiplex PCR diagnostic assay for the detection of Stagonosporopsis species associated with ray blight of Asteraceae.
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- European Journal of Plant Pathology, 2016, v. 146, n. 3, p. 581, doi. 10.1007/s10658-016-0944-4
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Assessing genetic resistance to spot blotch, Stagonospora nodorum blotch and tan spot in wheat from Nepal.
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- European Journal of Plant Pathology, 2011, v. 131, n. 2, p. 249, doi. 10.1007/s10658-011-9803-5
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ISSR fingerprinting for the assessment of the bindweed biocontrol agent Stagonospora convolvuli LA39 after field release.
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- Letters in Applied Microbiology, 2007, v. 45, n. 3, p. 244, doi. 10.1111/j.1472-765X.2007.02177.x
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Two putatively homoeologous wheat genes mediate recognition of SnTox3 to confer effector-triggered susceptibility to Stagonospora nodorum.
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- Plant Journal, 2011, v. 65, n. 1, p. 27, doi. 10.1111/j.1365-313X.2010.04407.x
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Investigating the role of calcium/calmodulin-dependent protein kinases in Stagonospora nodorum.
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- Molecular Microbiology, 2006, v. 62, n. 2, p. 367, doi. 10.1111/j.1365-2958.2006.05380.x
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Pathogenicity of Stagonospora nodorum requires malate synthase.
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- Molecular Microbiology, 2004, v. 53, n. 4, p. 1065, doi. 10.1111/j.1365-2958.2004.04178.x
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Effect of hosts on competition among clones and evidence of differential selection between pathogenic and saprophytic phases in experimental populations of the wheat pathogen Phaeosphaeria nodorum.
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- BMC Evolutionary Biology, 2011, v. 11, n. 1, p. 188, doi. 10.1186/1471-2148-11-188
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An improved simple method for DNA extraction from fungal mycelia.
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- Canadian Journal of Plant Pathology, 2016, v. 38, n. 4, p. 476, doi. 10.1080/07060661.2016.1243585
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Pathogenicity and Lipid Composition of Mycelium of the Fungus Stagonospora cirsii VIZR 1.41 during Submerged Cultivation.
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- Applied Biochemistry & Microbiology, 2021, v. 57, n. 2, p. 226, doi. 10.1134/S0003683821020034
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Molecular characterization of a Stagonospora nodorum lipase gene LIP1.
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- Plant Pathology, 2011, v. 60, n. 4, p. 698, doi. 10.1111/j.1365-3059.2011.02434.x
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Mating type distribution and genetic structure are consistent with sexual recombination in the Swedish population of Phaeosphaeria nodorum.
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- Plant Pathology, 2008, v. 57, n. 4, p. 634, doi. 10.1111/j.1365-3059.2008.01826.x
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Quantitative disease resistance assessment by real-time PCR using the Stagonospora nodorum-wheat pathosystem as a model.
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- Plant Pathology, 2008, v. 57, n. 3, p. 527, doi. 10.1111/j.1365-3059.2007.01787.x
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Variation in cultural characteristics, pathogenicity, vegetative compatibility and electrophoretic karyotype within field populations of Stagonospora nodorum.
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- Plant Pathology, 2000, v. 49, n. 2, p. 219, doi. 10.1046/j.1365-3059.2000.00441.x
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Fungi on Juncus roemerianus 14. Three New Coelomycetes, including Floricola, anam.-gen. nov.
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- Botanica Marina, 2000, v. 43, n. 4, p. 385, doi. 10.1515/BOT.2000.039
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The Mak2 MAP kinase signal transduction pathway is required for pathogenicity in Stagonospora nodorum.
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- Current Genetics, 2005, v. 48, n. 1, p. 60, doi. 10.1007/s00294-005-0588-y
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Functional characterisation of glyoxalase I from the fungal wheat pathogen Stagonospora nodorum.
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- Current Genetics, 2004, v. 46, n. 2, p. 115
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Didymella curtisii (Didymellaceae) on Pancratium maritimum in Bulgaria and Greece.
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- Phytologia Balcanica, 2018, v. 24, n. 1, p. 11
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Maiayamycin, a new streptomycete antifungal compound, specifically inhibits sporulation of Stagonospora nodorum (Berk) Castell and Germano, the cause of wheat glume blotch disease.
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- Pest Management Science, 2008, v. 64, n. 12, p. 1294, doi. 10.1002/ps.1632
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Seedling Resistance to Tan Spot and Stagonospora Nodorum Blotch in Synthetic Hexaploid Wheats.
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- Crop Science, 2004, v. 44, n. 6, p. 2238, doi. 10.2135/cropsci2004.2238
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Seed-transmitted beneficial endophytic Stagonospora sp. can penetrate the walls of the root epidermis, but does not proliferate in the cortex, of Phragmites australis.
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- Canadian Journal of Botany, 2006, v. 84, n. 6, p. 981, doi. 10.1139/B06-056
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Association mapping of Stagonospora nodorum blotch resistance in modern European winter wheat varieties.
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- Theoretical & Applied Genetics, 2007, v. 115, n. 5, p. 697, doi. 10.1007/s00122-007-0601-6
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Inheritance of field resistance to Stagonospora nodorum leaf and glume blotch and correlations with other morphological traits in hexaploid wheat ( Triticum aestivum L.).
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- Theoretical & Applied Genetics, 2005, v. 111, n. 2, p. 325, doi. 10.1007/s00122-005-2025-5
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Diversity of the trifunctional histidine biosynthesis gene (his) in cereal Phaeosphaeria species.
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- Genome, 2007, v. 50, n. 6, p. 595, doi. 10.1139/G07-038
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The Tsn1–ToxA interaction in the wheat–Stagonospora nodorum pathosystem parallels that of the wheat–tan spot system.
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- Genome, 2006, v. 49, n. 10, p. 1265, doi. 10.1139/G06-088
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QTL mapping of partial resistance in winter wheat to Stagonospora nodorum blotch.
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- Genome, 2003, v. 46, n. 4, p. 546, doi. 10.1139/g03-036
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Gene movement finding shifts focus.
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- Chemistry & Industry, 2006, n. 15, p. 7
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The Cysteine Rich Necrotrophic Effector SnTox1 Produced by Stagonospora nodorum Triggers Susceptibility of Wheat Lines Harboring Snn1.
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- PLoS Pathogens, 2012, v. 8, n. 1, p. 1, doi. 10.1371/journal.ppat.1002467
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