Works matching DE "BARLEY powdery mildew disease"
Results: 106
Establishment of efficient strategies for controlling downy mildew (Peronospora salviaeofficinalis) and other pathogenic fungi on common sage (Salvia officinalis).
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- 2016
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- Abstract
An LRR/Malectin Receptor-Like Kinase Mediates Resistance to Non-adapted and Adapted Powdery Mildew Fungi in Barley and Wheat.
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- Frontiers in Plant Science, 2016, v. 7, p. 1, doi. 10.3389/fpls.2016.01836
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- Article
Frequency of Powdery Mildew Resistances in Spring Barley Cultivars in Czech Variety Trials.
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- Plant Protection Science, 2012, v. 48, n. 3, p. 17, doi. 10.17221/11/2011-pps
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Identification of Powdery Mildew Resistance Genes in Selections from Moroccan Barley Landraces.
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- Acta Agriculturae Scandinavica: Section B, Soil & Plant Science, 2002, v. 52, n. 2/3, p. 116, doi. 10.1080/090647102321089864
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RATES OF INCREASE OF BARLEY MILDEW IN MIXED STANDS OF BARLEY AND WHEAT.
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- Journal of Applied Ecology, 1979, v. 16, n. 1, p. 253, doi. 10.2307/2402744
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- Article
Cereal immunity against powdery mildews targets RNase-Like Proteins associated with Haustoria (RALPH) effectors evolved from a commonancestral gene.
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- New Phytologist, 2017, v. 213, n. 3, p. 969, doi. 10.1111/nph.14386
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Magical mystery tour: MLO proteins in plant immunity and beyond.
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- New Phytologist, 2014, v. 204, n. 2, p. 273, doi. 10.1111/nph.12889
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Specificity and levels of nonhost resistance to nonadapted Blumeria graminis forms in barley.
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- New Phytologist, 2010, v. 185, n. 1, p. 275, doi. 10.1111/j.1469-8137.2009.03039.x
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- Article
The barley mutant emr2 shows enhanced resistance against several fungal leaf pathogens.
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- Plant Breeding, 2009, v. 128, n. 2, p. 124, doi. 10.1111/j.1439-0523.2008.01604.x
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- Article
Development of a cDNA-AFLP derived CAPS marker co-segregating with the powdery mildew resistance gene Mlg in barley.
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- Plant Breeding, 2008, v. 127, n. 1, p. 102, doi. 10.1111/j.1439-0523.2007.01381.x
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- Article
Powdery mildew resistance in Czech and Slovak barley cultivars.
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- Plant Breeding, 2000, v. 119, n. 3, p. 203, doi. 10.1046/j.1439-0523.2000.00473.x
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Identification of RAPD markers closely linked to the mlo-locus in barley.
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- Plant Breeding, 1997, v. 116, n. 5, p. 461, doi. 10.1111/j.1439-0523.1997.tb01031.x
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Comparison between QTL analysis of powdery mildew resistance in barley based on detached primary leaves and on field data.
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- Plant Breeding, 1996, v. 115, n. 5, p. 419, doi. 10.1111/j.1439-0523.1996.tb00946.x
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Genetics of multiple disease resistance in a doubled-haploid population of barley.
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- Plant Breeding, 1995, v. 114, n. 1, p. 50, doi. 10.1111/j.1439-0523.1995.tb00758.x
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Distorted Segregation for Mildew Resistance in Doubled Haploid Lines of Spring Barley.
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- Plant Breeding, 1994, v. 112, n. 3, p. 248, doi. 10.1111/j.1439-0523.1994.tb00679.x
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A barley powdery mildew fungus non-autonomous retrotransposon encodes a peptide that supports penetration success on barley.
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- Journal of Experimental Botany, 2018, v. 69, n. 15, p. 3745, doi. 10.1093/jxb/ery174
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Novel jack-in-the-box effector of the barley powdery mildew pathogen?
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- Journal of Experimental Botany, 2018, v. 69, n. 15, p. 3511, doi. 10.1093/jxb/ery192
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A barley Engulfment and Motility domain containing protein modulates Rho GTPase activating protein HvMAGAP1 function in the barley powdery mildew interaction.
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- Plant Molecular Biology, 2014, v. 84, n. 4-5, p. 469, doi. 10.1007/s11103-013-0145-x
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Physcion, a natural anthraquinone derivative, enhances the gene expression of leaf-specific thionin of barley against Blumeria graminis.
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- Pest Management Science, 2010, v. 66, n. 7, p. 718, doi. 10.1002/ps.1933
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Host perception and signal transduction studies in wild-type Blumeria graminis f. sp. hordel and a quinoxyfen-resistant mutant implicate quinoxyfen in the inhibition of serine esterase activity.
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- Pest Management Science, 2008, v. 64, n. 5, p. 544, doi. 10.1002/ps.1538
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Synthesis and antifungal activity of five classes of diamines.
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- Pest Management Science, 2004, v. 60, n. 2, p. 143, doi. 10.1002/ps.794
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Potassium phosphate induces systemic protection in barley to powdery mildew infection.
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- Pest Management Science, 2004, v. 60, n. 2, p. 126, doi. 10.1002/ps.795
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Expression analysis of genes induced in barley after chemical activation reveals distinct disease resistance pathways.
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- Molecular Plant Pathology, 2000, v. 1, n. 5, p. 277, doi. 10.1046/j.1364-3703.2000.00031.x
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- Article
Fusarium oxysporumf. sp.radicis-lycopersicican Induce Systemic Resistance in Barley Against Powdery Mildew.
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- Journal of Phytopathology, 2005, v. 153, n. 6, p. 366, doi. 10.1111/j.1439-0434.2005.00986.x
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Powdery Mildew Resistance in Barley Landraces from Morocco.
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- Journal of Phytopathology, 2000, v. 148, n. 5, p. 277, doi. 10.1046/j.1439-0434.2000.00507.x
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The Occurrence of Barley Mild Mosaic Virus (BaMMV) in China and the Nucleotide Sequence of its Coat Protein Gene.
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- Journal of Phytopathology, 1999, v. 147, n. 4, p. 229, doi. 10.1046/j.1439-0434.1999.147004229.x
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Selection for Aggressiveness in Erysiphe graminis f. sp. hordei Towards Partial Resistance in Barley.
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- Journal of Phytopathology, 1992, v. 136, n. 2, p. 165, doi. 10.1111/j.1439-0434.1992.tb01294.x
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Endogenous elicitor present in barley seeds. II. Mechanisms of the induction of the resistance in barley leaves to <em>Erysiphe graminis</em>.
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- Journal of Phytopathology, 1992, v. 135, n. 2, p. 167, doi. 10.1111/j.1439-0434.1992.tb01263.x
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Origin and Proportions of the Components of Composite Populations of Erysiphe graminis f. sp. hordei.
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- Journal of Phytopathology, 1992, v. 135, n. 1, p. 6, doi. 10.1111/j.1439-0434.1992.tb01245.x
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Recurrent selection for adaptation of Erysiphe graminis f. sp. hordei to partial resistance and the effect of environment on expression of partial resistance of barley.
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- Journal of Phytopathology, 1991, v. 132, n. 4, p. 328, doi. 10.1111/j.1439-0434.1991.tb00128.x
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Effect of Nitrogen and Powdery Mildew on the Yield Formation of Two Winter Barley Cultivars.
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- Journal of Phytopathology, 1990, v. 130, n. 2, p. 89, doi. 10.1111/j.1439-0434.1990.tb01156.x
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Elicitor-like substances present in barley and wheat seeds.
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- Journal of Phytopathology, 1990, v. 128, n. 2, p. 89, doi. 10.1111/1439-0434.ep8110460
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Genetic Adaptation of Erysiphe <em>graminis</em> f. sp. <em>hordei</em> to Barley with Partial Resistance.
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- Journal of Phytopathology, 1989, v. 126, n. 2, p. 133, doi. 10.1111/j.1439-0434.1989.tb01097.x
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Effect of Leaf Age and Etiolation of Barley on Susceptibility to Powdery Mildew Infection.
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- Journal of Phytopathology, 1989, v. 124, n. 2, p. 101, doi. 10.1111/j.1439-0434.1989.tb04901.x
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HvGCN2 silencing in barley displays enhanced Blumeria graminis f. sp. hordei susceptibility.
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- Archives of Biological Sciences, 2018, v. 70, n. 3, p. 513, doi. 10.2298/ABS171017012O
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The Incidence of Barley (Hordeum vulgare L.) Leaf Diseases in Central Anatolia Region of Turkey in 2020.
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- Selcuk Journal of Agriculture & Food Sciences / Selcuk Tarim ve Gida Bilimleri Dergisi, 2022, v. 36, n. 3, p. 410, doi. 10.15316/SJAFS.2022.054
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Effects of cyclohexylamine and norspermidine on powdery mildew infection of spring barley.
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- International Journal of Pest Management, 1998, v. 44, n. 3, p. 181, doi. 10.1080/096708798228284
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Comprehensive Phylogenetic Analysis Sheds Light on the Diversity and Origin of the MLO Family of Integral Membrane Proteins.
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- Genome Biology & Evolution, 2016, v. 8, n. 3, p. 878, doi. 10.1093/gbe/evw036
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Fine mapping and comparative genomics integration of two quantitative trait loci controlling resistance to powdery mildew in a Spanish barley landrace.
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- Theoretical & Applied Genetics, 2012, v. 124, n. 1, p. 49, doi. 10.1007/s00122-011-1686-5
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Resistance to powdery mildew in Spanish barley landraces is controlled by different sets of quantitative trait loci.
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- Theoretical & Applied Genetics, 2011, v. 123, n. 6, p. 1019, doi. 10.1007/s00122-011-1644-2
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Over-expression of the cell death regulator BAX inhibitor-1 in barley confers reduced or enhanced susceptibility to distinct fungal pathogens.
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- Theoretical & Applied Genetics, 2009, v. 118, n. 3, p. 455, doi. 10.1007/s00122-008-0912-2
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Mildew-resistant mutants induced in North American two- and six-rowed malting barley cultivars.
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- Theoretical & Applied Genetics, 2003, v. 107, n. 7, p. 1278, doi. 10.1007/s00122-003-1362-5
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A high-resolution genetic map and a diagnostic RFLP marker for the Mlg resistance locus to powdery mildew in barley.
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- Theoretical & Applied Genetics, 2001, v. 102, n. 1, p. 53, doi. 10.1007/s001220051617
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Characterizing the pathotype structure of barley powdery mildew and effectiveness of resistance genes to this pathogen in Kazakhstan.
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- BMC Plant Biology, 2017, v. 17, p. 39, doi. 10.1186/s12870-017-1130-3
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Evolution of the EKA family of powdery mildew avirulence-effector genes from the ORF 1 of a LINE retrotransposon.
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- BMC Genomics, 2015, v. 16, p. 1, doi. 10.1186/s12864-015-2185-x
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Research news highlights.
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- 2006
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- Abstract
The β-Ketoacyl-CoA Synthase HvKCS1, Encoded by Cer-zh, Plays a Key Role in Synthesis of Barley Leaf Wax and Germination of Barley Powdery Mildew.
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- Plant & Cell Physiology, 2018, v. 59, n. 4, p. 806, doi. 10.1093/pcp/pcy020
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Plants and the Environment. Methyl jasmonate alters polyamine metabolism and induces systemic protection against powdery mildew infection in barley seedlings.
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- Journal of Experimental Botany, 2002, v. 53, n. 369, p. 747, doi. 10.1093/jexbot/53.369.747
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The Barley Powdery Mildew Effector Candidates CSEP0081 and CSEP0254 Promote Fungal Infection Success.
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- PLoS ONE, 2016, v. 11, n. 6, p. 1, doi. 10.1371/journal.pone.0157586
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Genetic evidence of local adaption and long distance migration in Blumeria graminis f. sp. hordei populations from China.
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- Journal of General Plant Pathology, 2016, v. 82, n. 2, p. 69, doi. 10.1007/s10327-016-0643-1
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- Article