357
Views
231
CrossRef citations to date
0
Altmetric
Original Articles

Genetics of Powdery Mildew Resistance in Barley

&
Pages 97-119 | Published online: 30 Mar 2011

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Mirna Barsoum, Björn Sabelleck, Pietro D. Spanu & Ralph Panstruga. (2019) Rumble in the Effector Jungle: Candidate Effector Proteins in Interactions of Plants with Powdery Mildew and Rust Fungi. Critical Reviews in Plant Sciences 38:4, pages 255-279.
Read now
Jerzy Henryk Czembor & Henryk Jerzy Czembor. (2002) Identification of Powdery Mildew Resistance Genes in Selections from Moroccan Barley Landraces. Acta Agriculturae Scandinavica, Section B — Soil & Plant Science 52:2, pages 116-120.
Read now
Jerzy Henryk Czembor. (2001) Sources of resistance to powdery mildew (Blumeria graminis f. sp. hordei) in Moroccan barley land races. Canadian Journal of Plant Pathology 23:3, pages 260-269.
Read now
Jerzy Henryk Czembor. (2000) Sources of powdery mildew resistance in barley landraces from morocco. Archives of Phytopathology and Plant Protection 33:2, pages 111-130.
Read now

Articles from other publishers (227)

Antonín Dreiseitl. (2023) Rare Virulences and Great Pathotype Diversity of a Central European Blumeria hordei Population. Journal of Fungi 9:11, pages 1045.
Crossref
Helen J Brabham, Diana Gómez De La Cruz, Vincent Were, Motoki Shimizu, Hiromasa Saitoh, Inmaculada Hernández-Pinzón, Phon Green, Jennifer Lorang, Koki Fujisaki, Kazuhiro Sato, István Molnár, Hana Šimková, Jaroslav Doležel, James Russell, Jodie Taylor, Matthew Smoker, Yogesh Kumar Gupta, Tom Wolpert, Nicholas J Talbot, Ryohei Terauchi & Matthew J Moscou. (2023) Barley MLA3 recognizes the host-specificity effector Pwl2 from Magnaporthe oryzae . The Plant Cell.
Crossref
Peter M. Dracatos, Jing Lu, Javier Sánchez‐Martín & Brande B.H. Wulff. (2023) Resistance that stacks up: engineering rust and mildew disease control in the cereal crops wheat and barley. Plant Biotechnology Journal 21:10, pages 1938-1951.
Crossref
Emma E Crean, Merle Bilstein-Schloemer, Takaki Maekawa, Paul Schulze-Lefert & Isabel M L Saur. (2023) A dominant-negative avirulence effector of the barley powdery mildew fungus provides mechanistic insight into barley MLA immune receptor activation. Journal of Experimental Botany.
Crossref
Yuliya Genievskaya, Alibek Zatybekov, Saule Abugalieva & Yerlan Turuspekov. (2023) Identification of Quantitative Trait Loci Associated with Powdery Mildew Resistance in Spring Barley under Conditions of Southeastern Kazakhstan. Plants 12:12, pages 2375.
Crossref
Stefan Engelhardt, Adriana Trutzenberg, Michaela Kopischke, Katja Probst, Christopher McCollum, Johanna Hofer & Ralph Hückelhoven. (2022) Barley RIC157, a potential RACB scaffold protein, is involved in susceptibility to powdery mildew. Plant Molecular Biology 111:4-5, pages 329-344.
Crossref
Antonín Dreiseitl & Marta Zavřelová. (2022) Non-Authenticity of Spring Barley Genotypes Revealed in Gene Bank Accessions. Plants 11:22, pages 3059.
Crossref
R. A. Abdullaev, I. N. Anisimova, O. N. Kovaleva & E. E. Radchenko. (2022) Juvenile resistance of barleys from the East Asian center of crop origin and domestication to powdery mildew. Proceedings on applied botany, genetics and breeding 183:3, pages 188-193.
Crossref
Antonín Dreiseitl. (2022) Powdery Mildew Resistance Genes in European Barley Cultivars Registered in the Czech Republic from 2016 to 2020. Genes 13:7, pages 1274.
Crossref
Ayakoz Zhunusova & Amangeldy Sarbaev. (2022) RESISTANCE OF BARLEY VARIETIES TO MAJOR FUNGAL DISEASES. Biosafety and Biotechnology:10, pages 31-43.
Crossref
Jie Xiao, Yali Li & Byoung Ryong Jeong. (2022) Foliar Silicon Spray before Summer Cutting Propagation Enhances Resistance to Powdery Mildew of Daughter Plants. International Journal of Molecular Sciences 23:7, pages 3803.
Crossref
Judit Kolozsváriné Nagy, Ildikó Schwarczinger, Lóránt Király, Renáta Bacsó, Attila L. Ádám & András Künstler. (2022) Near-Isogenic Barley Lines Show Enhanced Susceptibility to Powdery Mildew Infection Following High-Temperature Stress. Plants 11:7, pages 903.
Crossref
. (2022) Full Issue PDF. Molecular Plant-Microbe Interactions® 35:3, pages 177-299.
Crossref
Antony V. E. ChapmanJ. Mitch ElmoreMaxwell McReynoldsJustin W. Walley & Roger P. Wise. (2022) SGT1-Specific Domain Mutations Impair Interactions with the Barley MLA6 Immune Receptor in Association with Loss of NLR Protein. Molecular Plant-Microbe Interactions® 35:3, pages 274-289.
Crossref
Fabiano Sillo. 2022. Plant Pathology. Plant Pathology 405 422 .
R. A. Abdullaev, N. V. Alpatieva, T. V. Lebedeva, O. N. Kovaleva, E. E. Radchenko & I. N. Anisimova. (2021) Identification of barley accessions from the VIR collection carrying the <i>mlo11(cnv2)</i> powdery mildew resistance allele. Plant Biotechnology and Breeding 4:3, pages 37-44.
Crossref
Jan Bettgenhaeuser, Inmaculada Hernández-Pinzón, Andrew M. Dawson, Matthew Gardiner, Phon Green, Jodie Taylor, Matthew Smoker, John N. Ferguson, Peter Emmrich, Amelia Hubbard, Rosemary Bayles, Robbie Waugh, Brian J. Steffenson, Brande B. H. Wulff, Antonín Dreiseitl, Eric R. Ward & Matthew J. Moscou. (2021) The barley immune receptor Mla recognizes multiple pathogens and contributes to host range dynamics. Nature Communications 12:1.
Crossref
Cynthia Ge, Elzette Wentzel, Nola D'Souza, Kefei Chen, Richard P Oliver & Simon R Ellwood. (2021) Adult resistance genes to barley powdery mildew confer basal penetration resistance associated with broad‐spectrum resistance. The Plant Genome 14:3.
Crossref
Jerzy H. Czembor & Elżbieta Czembor. (2021) Sources of Resistance to Powdery Mildew in Barley Landraces from Turkey. Agriculture 11:10, pages 1017.
Crossref
Antonín Dreiseitl & Zdeněk Nesvadba. (2021) Powdery Mildew Resistance Genes in Single-Plant Progenies Derived from Accessions of a Winter Barley Core Collection. Plants 10:10, pages 1988.
Crossref
R. A. Abdullaev, T. V. Lebedeva, N. V. Alpatieva, B. A. Batasheva, I. N. Anisimova & E. E. Radchenko. (2021) Powdery mildew resistance of barley accessions from Dagestan. Vavilov Journal of Genetics and Breeding 25:5, pages 528-533.
Crossref
Somayyeh Makhtoum, Hossein Sabouri, Abdollatif Gholizadeh, Leila Ahangar, Fakhtak Taliei & Mahnaz Katouzi. (2021) Important chromosomal regions for genetic control of powdery mildew resistance under control, drought, and saline conditions in barley (Hordeum vulgare L.). Tropical Plant Pathology 46:6, pages 622-642.
Crossref
Anna Brugger, Patrick Schramowski, Stefan Paulus, Ulrike Steiner, Kristian Kersting & Anne‐Katrin Mahlein. (2021) Spectral signatures in the UV range can be combined with secondary plant metabolites by deep learning to characterize barley–powdery mildew interaction. Plant Pathology 70:7, pages 1572-1582.
Crossref
Antonín Dreiseitl. (2021) Powdery Mildew Resistance Phenotypes of Wheat Gene Bank Accessions. Biology 10:9, pages 846.
Crossref
Isabel M. L. Saur, Ralph Panstruga & Paul Schulze-Lefert. (2020) NOD-like receptor-mediated plant immunity: from structure to cell death. Nature Reviews Immunology 21:5, pages 305-318.
Crossref
Yue You, Yuanting Zheng, Jian Wang, Guang Chen, Sujuan Li, Jianfeng Shao, Guoan Qi, Fei Xu, Gangjun Wang, Zhong-Hua Chen & Shengchun Xu. (2020) Molecular evolution and genome-wide analysis of the SBP-box family in cucumber (Cucumis sativas). Plant Growth Regulation 93:2, pages 175-187.
Crossref
Arzu Çelik Oğuz & Aziz Karakaya. (2021) Genetic Diversity of Barley Foliar Fungal Pathogens. Agronomy 11:3, pages 434.
Crossref
Andrii Gorash, Rita Armonienė & Kemal Kazan. (2021) Can effectoromics and loss-of-susceptibility be exploited for improving Fusarium head blight resistance in wheat?. The Crop Journal 9:1, pages 1-16.
Crossref
Isabel M.L. Saur & Ralph Hückelhoven. (2021) Recognition and defence of plant-infecting fungal pathogens. Journal of Plant Physiology 256, pages 153324.
Crossref
Shoaib Liaqat, Muhammad Abu Bakar Saddique, Muhammad Ali Sher & Zulfiqar Ali. 2021. Wild Germplasm for Genetic Improvement in Crop Plants. Wild Germplasm for Genetic Improvement in Crop Plants 101 114 .
Govind Singh Saharan, Naresh K. Mehta & Prabhu Dayal MeenaGovind Singh Saharan, Naresh K. Mehta & Prabhu Dayal Meena. 2021. Genomics of Crucifer’s Host-Resistance. Genomics of Crucifer’s Host-Resistance 195 264 .
Rekha Malik, Pawan Kumar, RPS Verma, Sonia Sheoran, Dinesh Kumar, Lokendra Kumar, Sanjaya Gyawali & G. P. Singh. 2021. Genomic Designing for Biotic Stress Resistant Cereal Crops. Genomic Designing for Biotic Stress Resistant Cereal Crops 177 212 .
Fluturë Novakazi, Lene Krusell, Jens Jensen, Jihad Orabi, Ahmed Jahoor & Therése Bengtsson. (2020) You Had Me at “MAGIC”!: Four Barley MAGIC Populations Reveal Novel Resistance QTL for Powdery Mildew. Genes 11:12, pages 1512.
Crossref
Antonín Dreiseitl. (2020) A novel way to identify specific powdery mildew resistance genes in hybrid barley cultivars. Scientific Reports 10:1.
Crossref
R. A. Abdullaev, B. A. Batasheva, N. V. Alpatieva, M. A. Chumakov, E. E. Radchenko, O. N. Kovaleva & O. V. Yakovleva. (2020) Resistance of barley cultivars approved for use in Russia to harmful organisms and toxic aluminum ions. Proceedings on applied botany, genetics and breeding 181:3, pages 120-127.
Crossref
Antonín Dreiseitl. (2020) Specific Resistance of Barley to Powdery Mildew, Its Use and Beyond: A Concise Critical Review. Genes 11:9, pages 971.
Crossref
Urszula Piechota, Piotr Słowacki & Paweł C. Czembor. (2020) Identification of a novel recessive gene for resistance to powdery mildew ( Blumeria graminis f. sp. hordei ) in barley ( Hordeum vulgare ) . Plant Breeding 139:4, pages 730-742.
Crossref
Diana Saja, Anna Janeczko, Balázs Barna, Andrzej Skoczowski, Michał Dziurka, Andrzej Kornaś & Gábor Gullner. (2020) Powdery Mildew-Induced Hormonal and Photosynthetic Changes in Barley Near Isogenic Lines Carrying Various Resistant Genes. International Journal of Molecular Sciences 21:12, pages 4536.
Crossref
U. Piechota, P. C. Czembor & J. H. Czembor. (2020) Evaluating barley landraces collected in North Africa and the Middle East for powdery mildew infection at seedling and adult plant stages. Cereal Research Communications 48:2, pages 179-185.
Crossref
Katrin Gruner, Tobias Esser, Johanna Acevedo-Garcia, Matthias Freh, Michael Habig, Roxana Strugala, Eva Stukenbrock, Ulrich Schaffrath & Ralph Panstruga. (2020) Evidence for Allele-Specific Levels of Enhanced Susceptibility of Wheat mlo Mutants to the Hemibiotrophic Fungal Pathogen Magnaporthe oryzae pv. Triticum. Genes 11:5, pages 517.
Crossref
Eugeny E. Radchеnko, Renat A. Abdullaev & Irina N. Anisimova. (2020) Genetic diversity of cereal crops for powdery mildew resistance. Ecological genetics 18:1, pages 59-78.
Crossref
Yueqiang LengMingxia ZhaoJason FiedlerAntonín Dreiseitl, Shiaoman ChaoXuehui LiShaobin Zhong. (2020) Molecular Mapping of Loci Conferring Susceptibility to Spot Blotch and Resistance to Powdery Mildew in Barley Using the Sequencing-Based Genotyping Approach. Phytopathology® 110:2, pages 440-446.
Crossref
Sheetal M. Bhosle, Nitinkumar Marathe & Ragiba Makandar. 2020. New Frontiers in Stress Management for Durable Agriculture. New Frontiers in Stress Management for Durable Agriculture 389 425 .
Yingbo Li, Guimei Guo, Longhua Zhou, Yunyun Chen, Yingjie Zong, Jianhua Huang, Ruiju Lu & Chenghong Liu. (2019) Transcriptome Analysis Identifies Candidate Genes and Functional Pathways Controlling the Response of Two Contrasting Barley Varieties to Powdery Mildew Infection. International Journal of Molecular Sciences 21:1, pages 151.
Crossref
Yanling Ma, Miao Liu, Jiri Stiller & Chunji Liu. (2019) A pan-transcriptome analysis shows that disease resistance genes have undergone more selection pressure during barley domestication. BMC Genomics 20:1.
Crossref
Antonín Dreiseitl. (2019) A novel resistance against powdery mildew found in winter barley cultivars. Plant Breeding 138:6, pages 840-845.
Crossref
Emily Meyers, Consuelo Arellano & Christina Cowger. (2019) Sensitivity of the U.S. Blumeria graminis f. sp. tritici Population to Demethylation Inhibitor Fungicides . Plant Disease 103:12, pages 3108-3116.
Crossref
Hongpo Wu, Weiwei Zhang, Martin Schuster, Marcin Moch, Reinhard Windoffer, Gero Steinberg, Christopher J Staiger & Ralph Panstruga. (2019) Alloxan disintegrates the plant cytoskeleton and suppresses mlo-mediated powdery mildew resistance. Plant and Cell Physiology.
Crossref
Urszula Piechota, Paweł C. Czembor, Piotr Słowacki & Jerzy H. Czembor. (2019) Identifying a novel powdery mildew resistance gene in a barley landrace from Morocco. Journal of Applied Genetics 60:3-4, pages 243-254.
Crossref
M.I.E. Arabi, E. Al-shehadah & M. Jawhar. (2019) Diallel Analysis of Barley Resistance to Blumeria graminis . Cereal Research Communications 47:3, pages 455-462.
Crossref
Ralph Panstruga & Hannah Kuhn. (2019) Mutual interplay between phytopathogenic powdery mildew fungi and other microorganisms. Molecular Plant Pathology 20:4, pages 463-470.
Crossref
Antonín Dreiseitl. (2018) Great pathotype diversity and reduced virulence complexity in a Central European population of Blumeria graminis f. sp. hordei in 2015–2017. European Journal of Plant Pathology 153:3, pages 801-811.
Crossref
Isabel ML Saur, Saskia Bauer, Barbara Kracher, Xunli Lu, Lamprinos Franzeskakis, Marion C Müller, Björn Sabelleck, Florian Kümmel, Ralph Panstruga, Takaki Maekawa & Paul Schulze-Lefert. (2019) Multiple pairs of allelic MLA immune receptor-powdery mildew AVRA effectors argue for a direct recognition mechanism. eLife 8.
Crossref
Parastoo Hoseinzadeh, Ruonan Zhou, Martin Mascher, Axel Himmelbach, Rients E. Niks, Patrick Schweizer & Nils Stein. (2019) High Resolution Genetic and Physical Mapping of a Major Powdery Mildew Resistance Locus in Barley. Frontiers in Plant Science 10.
Crossref
Takaki Maekawa, Barbara Kracher, Isabel M. L. Saur, Makoto Yoshikawa-Maekawa, Ronny Kellner, Artem Pankin, Maria von Korff & Paul Schulze-Lefert. (2019) Subfamily-Specific Specialization of RGH1/MLA Immune Receptors in Wild Barley. Molecular Plant-Microbe Interactions® 32:1, pages 107-119.
Crossref
Govind Singh Saharan, Naresh K. Mehta & Prabhu Dayal MeenaGovind Singh Saharan, Naresh K. Mehta & Prabhu Dayal Meena. 2019. Powdery Mildew Disease of Crucifers: Biology, Ecology and Disease Management. Powdery Mildew Disease of Crucifers: Biology, Ecology and Disease Management 177 295 .
Antonín Dreiseitl & Marta Zavřelová. (2018) Identification of barley powdery mildew resistances in gene bank accessions and the use of gene diversity for verifying seed purity and authenticity. PLOS ONE 13:12, pages e0208719.
Crossref
Sanjiv Gupta, Elysia Vassos, Beata Sznajder, Rebecca Fox, Kelvin H. P. Khoo, Robert Loughman, Kenneth J. Chalmers & Diane E. Mather. (2018) A locus on barley chromosome 5H affects adult plant resistance to powdery mildew. Molecular Breeding 38:8.
Crossref
SOMYA SHARMA & VIJENDRA K. SHARMA. (2018) Modeling and docking studies in barley. International Journal of Pharma and Bio Sciences 9:3.
Crossref
Parasappa R. Saabale, Sunil C. Dubey, Kumari Priyanka & Tilak R. Sharma. (2018) Analysis of differential transcript expression in chickpea during compatible and incompatible interactions with Fusarium oxysporum f. sp. ciceris Race 4. 3 Biotech 8:2.
Crossref
J. Mitch Elmore, Dragan Perovic, Frank Ordon, Patrick Schweizer & Roger P. Wise. 2018. The Barley Genome. The Barley Genome 233 257 .
Hongpo Wu, Mark Kwaaitaal, Roxana Strugala, Ulrich Schaffrath, Paweł Bednarek & Ralph Panstruga. (2017) Chemical suppressors of mlo-mediated powdery mildew resistance. Bioscience Reports 37:6.
Crossref
Therése Bengtsson, Inger Åhman, Outi Manninen, Lars Reitan, Therese Christerson, Jens Due Jensen, Lene Krusell, Ahmed Jahoor & Jihad Orabi. (2017) A Novel QTL for Powdery Mildew Resistance in Nordic Spring Barley (Hordeum vulgare L. ssp. vulgare) Revealed by Genome-Wide Association Study. Frontiers in Plant Science 8.
Crossref
Aralbek Rsaliyev, Zhazira Pahratdinova & Shynbolat Rsaliyev. (2017) Characterizing the pathotype structure of barley powdery mildew and effectiveness of resistance genes to this pathogen in Kazakhstan. BMC Plant Biology 17:S1.
Crossref
Anna Brugger, Matheus Thomas Kuska & Anne-Katrin Mahlein. (2017) Impact of compatible and incompatible barley—Blumeria graminis f.sp. hordei interactions on chlorophyll fluorescence parameters. Journal of Plant Diseases and Protection.
Crossref
Antonin Dreiseitl. (2017) Heterogeneity of Powdery Mildew Resistance Revealed in Accessions of the ICARDA Wild Barley Collection. Frontiers in Plant Science 8.
Crossref
Stefan Thomas, Mirwaes Wahabzada, Matheus Thomas Kuska, Uwe Rascher & Anne-Katrin Mahlein. (2017) Observation of plant–pathogen interaction by simultaneous hyperspectral imaging reflection and transmission measurements. Functional Plant Biology 44:1, pages 23.
Crossref
Anton�n Dreiseitl. (2017) High diversity of powdery mildew resistance in the ICARDA wild barley collection. Crop and Pasture Science 68:2, pages 134.
Crossref
Z. W. Zhang, G. J. Ma, J. Zhao, S. G. Markell & L. L. Qi. (2016) Discovery and introgression of the wild sunflower-derived novel downy mildew resistance gene Pl 19 in confection sunflower (Helianthus annuus L.). Theoretical and Applied Genetics 130:1, pages 29-39.
Crossref
Judit KomáromiTünde JankovicsAttila FábiánKatalin PuskásZengyan ZhangMiao ZhangHongjie LiKatalin JägerLászló LángGyula Vida. (2016) Powdery Mildew Resistance in Wheat Cultivar Mv Hombár is Conferred by a New Gene, PmHo . Phytopathology® 106:11, pages 1326-1334.
Crossref
Xunli LuBarbara KracherIsabel M. L. SaurSaskia BauerSimon R. EllwoodRoger WiseTakashi Yaeno, Takaki MaekawaPaul Schulze-Lefert. (2016) Allelic barley MLA immune receptors recognize sequence-unrelated avirulence effectors of the powdery mildew pathogen. Proceedings of the National Academy of Sciences 113:42.
Crossref
A. DREISEITL. (2015) Emerging Blumeria graminis f. sp. hordei pathotypes reveal ‘Psaknon’ resistance in European barley varieties . The Journal of Agricultural Science 154:6, pages 1082-1089.
Crossref
Carlos P. Cantalapiedra, Bruno Contreras‐Moreira, Cristina Silvar, Dragan Perovic, Frank Ordon, María Pilar Gracia, Ernesto Igartua & Ana M. Casas. (2016) A Cluster of Nucleotide‐Binding Site–Leucine‐Rich Repeat Genes Resides in a Barley Powdery Mildew Resistance Quantitative Trait Loci on 7HL. The Plant Genome 9:2.
Crossref
Jinghuan Zhu, Yijun Zhou, Yi Shang, Wei Hua, Junmei Wang, Qiaojun Jia, Mengdao Liu & Jianming Yang. (2016) Genetic evidence of local adaption and long distance migration in Blumeria graminis f. sp. hordei populations from China. Journal of General Plant Pathology 82:2, pages 69-81.
Crossref
Gordana Šurlan-Momirović, Kerstin Flath, Cristina Silvar, Gordana Branković, Doris Kopahnke, Desimir Knežević, Edgar Schliephake, Frank Ordon & Dragan Perović. (2015) Exploring the Serbian GenBank barley (Hordeum vulgare L. subsp. vulgare) collection for powdery mildew resistance. Genetic Resources and Crop Evolution 63:2, pages 275-287.
Crossref
M. B. Uloth, M. P. You & M. J. Barbetti. (2016) Cultivar resistance offers the first opportunity for effective management of the emerging powdery mildew (Erysiphe cruciferarum) threat to oilseed brassicas in Australia. Crop and Pasture Science 67:11, pages 1179.
Crossref
Fei Dai & Guoping Zhang. 2016. Exploration, Identification and Utilization of Barley Germplasm. Exploration, Identification and Utilization of Barley Germplasm 1 26 .
Matheus Kuska, Mirwaes Wahabzada, Marlene Leucker, Heinz-Wilhelm Dehne, Kristian Kersting, Erich-Christian Oerke, Ulrike Steiner & Anne-Katrin Mahlein. (2015) Hyperspectral phenotyping on the microscopic scale: towards automated characterization of plant-pathogen interactions. Plant Methods 11:1.
Crossref
N. Ames, A. Dreiseitl, B. J. Steffenson & G. J. Muehlbauer. (2015) Mining wild barley for powdery mildew resistance. Plant Pathology 64:6, pages 1396-1406.
Crossref
Inese Kokina, Grazina Statkeviciute, Alge Leistrumaite & Isaak Rashal. (2014) The peculiarities of genetic structure of the Blumeria graminis f. sp. hordei population in LithuaniaMiltligės sukėlėjo (Blumeria graminis f. sp. hordei) Lietuvos populiacijos genetinės struktūros ypatybės. Zemdirbyste-Agriculture 101:4, pages 419-424.
Crossref
Dilin Liu, Katja Leib, Puyan Zhao, Karl-Heinz Kogel & Gregor Langen. (2014) Phylogenetic analysis of barley WRKY proteins and characterization of HvWRKY1 and -2 as repressors of the pathogen-inducible gene HvGER4c. Molecular Genetics and Genomics 289:6, pages 1331-1345.
Crossref
Antonín Dreiseitl & Petra Adamcová. (2014) Virulence spectra determination in selected Blumeria graminis f. sp. hordei isolates. Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 58:5, pages 83-90.
Crossref
Veronique Troch, Kris Audenaert, Rebecca A. Wyand, Geert Haesaert, Monica Höfte & James K. M. Brown. (2014) Formae speciales of cereal powdery mildew: close or distant relatives? . Molecular Plant Pathology 15:3, pages 304-314.
Crossref
Alireza Seifi, Dongli Gao, Zheng Zheng, Stefano Pavan, Luigi Faino, Richard G. F. Visser, Anne-Marie A. Wolters & Yuling Bai. (2013) Genetics and molecular mechanisms of resistance to powdery mildews in tomato (Solanum lycopersicum) and its wild relatives. European Journal of Plant Pathology 138:3, pages 641-665.
Crossref
Antonín Dreiseitl. (2013) The Hordeum vulgare subsp. spontaneum–Blumeria graminis f. sp. hordei pathosystem: its position in resistance research and breeding applications. European Journal of Plant Pathology 138:3, pages 561-568.
Crossref
Roger Wise, Priyanka Surana, Greg Fuerst, Ruo Xu, Divya Mistry, Julie Dickerson & Dan Nettleton. (2014) Flor Revisited (Again): eQTL and Mutational Analysis of NB-LRR Mediated Immunity to Powdery Mildew in Barley. Journal of Integrative Agriculture 13:2, pages 237-243.
Crossref
Xing-Quan Zeng, Xiao-Mei Luo, Yu-Lin Wang, Qi-Jun Xu, Li-Jun Bai, Hong-Jun Yuan & Nyima Tashi. (2014) Transcriptome Sequencing in a Tibetan Barley Landrace with High Resistance to Powdery Mildew. The Scientific World Journal 2014, pages 1-9.
Crossref
Patrick Schweizer. 2014. Biotechnological Approaches to Barley Improvement. Biotechnological Approaches to Barley Improvement 197 235 .
Antonín Dreiseitl. (2013) Genes for resistance to powdery mildew in European winter barley cultivars registered in the Czech Republic and Slovakia to 2010. Plant Breeding 132:6, pages 558-562.
Crossref
Shaohui Li, Rui Ji, Robert Dudler, Mingli Yong, Qide Deng, Zhengyi Wang & Dongwei Hu. (2013) Wheat gene TaS3 contributes to powdery mildew susceptibility. Plant Cell Reports 32:12, pages 1891-1901.
Crossref
Xiaohe Song & Zhanao Deng. (2013) Powdery Mildew Resistance in Gerbera: Mode of Inheritance, Quantitative Trait Locus Identification, and Resistance Responses. Journal of the American Society for Horticultural Science 138:6, pages 470-478.
Crossref
A. Dreiseitl, R. A. Fowler & G. J. Platz. (2013) Pathogenicity of Blumeria graminis f. sp. hordei in Australia in 2010 and 2011. Australasian Plant Pathology 42:6, pages 713-721.
Crossref
José Cuenca, Pablo Aleza, Antonio Vicent, Dominique Brunel, Patrick Ollitrault & Luis Navarro. (2013) Genetically Based Location from Triploid Populations and Gene Ontology of a 3.3-Mb Genome Region Linked to Alternaria Brown Spot Resistance in Citrus Reveal Clusters of Resistance Genes. PLoS ONE 8:10, pages e76755.
Crossref
Stéphane Hacquard, Barbara Kracher, Takaki Maekawa, Saskia Vernaldi, Paul Schulze-Lefert & Emiel Ver Loren van Themaat. (2013) Mosaic genome structure of the barley powdery mildew pathogen and conservation of transcriptional programs in divergent hosts. Proceedings of the National Academy of Sciences 110:24.
Crossref
Chiara Biselli, Simona Urso, Gianni Tacconi, Burkhard Steuernagel, Daniela Schulte, Alberto Gianinetti, Paolo Bagnaresi, Nils Stein, Luigi Cattivelli & Giampiero Valè. (2013) Haplotype variability and identification of new functional alleles at the Rdg2a leaf stripe resistance gene locus. Theoretical and Applied Genetics 126:6, pages 1575-1586.
Crossref
Antonín Dreiseitl. (2012) Postulation of genes for resistance to powdery mildew in spring barley cultivars registered in the Czech Republic from 1996 to 2010. Euphytica 191:2, pages 183-189.
Crossref
Gregory L. Berger, Shuyu Liu, Marla D. Hall, Wynse S. Brooks, Shiaoman Chao, Gary J. Muehlbauer, B.-K. Baik, Brian Steffenson & Carl A. Griffey. (2012) Marker-trait associations in Virginia Tech winter barley identified using genome-wide mapping. Theoretical and Applied Genetics 126:3, pages 693-710.
Crossref
Xue Gong, Chengdao Li, Guoping Zhang, Guijun Yan, Reg Lance & Dongfa Sun. 2013. Advance in Barley Sciences. Advance in Barley Sciences 69 86 .
A. Dreiseitl & K. Križanová. (2012) Powdery mildew resistance genes in spring barley cultivars registered in Slovakia from 2000 to 2010. Cereal Research Communications 40:4, pages 494-501.
Crossref
E. F. Boys, S. E. Roques, J. S. West, C. P. Werner, G. J. King, P. S. Dyer & B. D. L. Fitt. (2012) Effects of R gene-mediated resistance in Brassica napus (oilseed rape) on asexual and sexual sporulation of Pyrenopeziza brassicae (light leaf spot). Plant Pathology 61:3, pages 543-554.
Crossref
Lee T. Hickey, Wendy Lawson, Greg J. Platz, Ryan A. Fowler, Vivi Arief, Mark Dieters, Silvia Germán, Susan Fletcher, Robert F. Park, Davinder Singh, Silvia Pereyra & Jerome Franckowiak. (2012) Mapping Quantitative Trait Loci for Partial Resistance to Powdery Mildew in an Australian Barley Population. Crop Science 52:3, pages 1021-1032.
Crossref
CBGOWDA RAYAPURAM, MICHAEL K. JENSEN, FABIAN MAISER, JOHANNA VIKGREN SHANIR, HENRIK HORNSHØJ, JESPER H. RUNG, PER L. GREGERSEN, PATRICK SCHWEIZER, DAVID B. COLLINGE & MICHAEL F. LYNGKJAER. (2012) Regulation of basal resistance by a powdery mildew-induced cysteine-rich receptor-like protein kinase in barley. Molecular Plant Pathology 13:2, pages 135-147.
Crossref
LEI‐YAN YAN, YAN‐FENG CHEN, QIAN‐QIAN YANG & ZHONG‐HUA MA. (2011) Heterologous Expression of the CYP51 Gene of the Obligate Fungus Blumeria graminis in the Necrotrophic Fungus Botrytis cinerea . Journal of Eukaryotic Microbiology 59:1, pages 88-92.
Crossref
Antonín Dreiseitl & Gregory Platz. (2012) Powdery mildew resistance genes in barley varieties grown in Australia. Crop and Pasture Science 63:10, pages 997.
Crossref
Carlotta Balconi, Piergiorgio Stevanato, Mario Motto & Enrico Biancardi. 2012. Crop Production for Agricultural Improvement. Crop Production for Agricultural Improvement 57 114 .
Ralph Hückelhoven & Ralph Panstruga. (2011) Cell biology of the plant–powdery mildew interaction. Current Opinion in Plant Biology 14:6, pages 738-746.
Crossref
Antonín Dreiseitl. (2011) Postulation of resistance genes to barley diseases in heterogeneous varieties. Biologia 66:5, pages 762-767.
Crossref
C. Silvar, A. M. Casas, E. Igartua, L. J. Ponce-Molina, M. P. Gracia, G. Schweizer, M. Herz, K. Flath, R. Waugh, D. Kopahnke & F. Ordon. (2011) Resistance to powdery mildew in Spanish barley landraces is controlled by different sets of quantitative trait loci. Theoretical and Applied Genetics 123:6, pages 1019-1028.
Crossref
Catherine M Withers, Alan P Gay & Luis A J Mur. (2011) Are stomatal responses the key to understanding the cost of fungal disease resistance in plants?. Journal of the Science of Food and Agriculture 91:9, pages 1538-1540.
Crossref
Matthew J. Moscou, Nick Lauter, Rico A. Caldo, Dan Nettleton & Roger P. Wise. (2011) Quantitative and Temporal Definition of the Mla Transcriptional Regulon During Barley–Powdery Mildew Interactions . Molecular Plant-Microbe Interactions® 24:6, pages 694-705.
Crossref
C. Silvar, K. Flath, D. Kopahnke, M. P. Gracia, J. M. Lasa, A. M. Casas, E. Igartua & F. Ordon. (2011) Analysis of powdery mildew resistance in the Spanish barley core collection. Plant Breeding 130:2, pages 195-202.
Crossref
H. B. Li & M. X. Zhou. (2010) Quantitative trait loci controlling barley powdery mildew and scald resistances in two different barley doubled haploid populations. Molecular Breeding 27:4, pages 479-490.
Crossref
Ruth Eichmann & Ralph Hückelhoven. (2011) Pflanzliche Immunität und ihre Anwendung im PflanzenschutzPlant immunity and its application in plant protection. Gesunde Pflanzen 63:1, pages 1-9.
Crossref
Tina Jordan, Sabine Seeholzer, Simon Schwizer, Armin Töller, Imre E. Somssich & Beat Keller. (2011) The wheat Mla homologue TmMla1 exhibits an evolutionarily conserved function against powdery mildew in both wheat and barley . The Plant Journal 65:4, pages 610-621.
Crossref
Tobias Baum, Aura Navarro-Quezada, Wolfgang Knogge, Dimitar Douchkov, Patrick Schweizer & Udo Seiffert. (2011) HyphArea—Automated analysis of spatiotemporal fungal patterns. Journal of Plant Physiology 168:1, pages 72-78.
Crossref
Timothy C. Paulitz & Brian J. Steffenson. 2010. Barley. Barley 307 354 .
Anja Reinstädler, Judith Müller, Jerzy H Czembor, Pietro Piffanelli & Ralph Panstruga. (2010) Novel induced mlo mutant alleles in combination with site-directed mutagenesis reveal functionally important domains in the heptahelical barley Mlo protein. BMC Plant Biology 10:1.
Crossref
Jing-huan ZHU, Jun-mei WANG, Qiao-jun JIA, Jian-ming YANG, Yi-jun ZHOU, Feng LIN, Wei HUA & Yi SHANG. (2010) Pathotypes and Genetic Diversity of Blumeria graminis f. sp. hordei in the Winter Barley Regions in China. Agricultural Sciences in China 9:12, pages 1787-1798.
Crossref
Xiaohua Qi, Qiang Xu, Liping Shen, Mouammar Alfandi, Jingjing Luo & Xuehao Chen. (2010) Identification of differentially expressed genes between powdery mildew resistant near-isogenic line and susceptible line of cucumber by suppression subtractive hybridization. Scientia Horticulturae 126:1, pages 27-32.
Crossref
Sabine Seeholzer, Takashi Tsuchimatsu, Tina Jordan, Stéphane Bieri, Simone Pajonk, Wenxiang Yang, Ahmed Jahoor, Kentaro K. Shimizu, Beat Keller & Paul Schulze-Lefert. (2010) Diversity at the Mla Powdery Mildew Resistance Locus from Cultivated Barley Reveals Sites of Positive Selection . Molecular Plant-Microbe Interactions® 23:4, pages 497-509.
Crossref
Cristina Silvar, Hichem Dhif, Ernesto Igartua, Doris Kopahnke, Maria P. Gracia, José M. Lasa, Frank Ordon & Ana M. Casas. (2009) Identification of quantitative trait loci for resistance to powdery mildew in a Spanish barley landrace. Molecular Breeding 25:4, pages 581-592.
Crossref
K. Teturová, J. Řepková, P. Lízal & A. Dreiseitl. (2010) Mapping of powdery mildew resistance genes in a newly determined accession of Hordeum vulgare ssp. spontaneum . Annals of Applied Biology 156:2, pages 157-165.
Crossref
Elena Prats, Alan P. Gay, Peter C. Roberts, Barry J. Thomas, Ruth Sanderson, Neil Paveley, Michael F. Lyngkjær, Tim L. W. Carver & Luis A. J. Mur. (2010) Blumeria graminis Interactions with Barley Conditioned by Different Single R Genes Demonstrate a Temporal and Spatial Relationship Between Stomatal Dysfunction and Cell Death . Phytopathology® 100:1, pages 21-32.
Crossref
PIERRE J. G. M. DE WIT, RAHIM MEHRABI, HARROLD A. VAN DEN BURG & IOANNIS STERGIOPOULOS. (2009) Fungal effector proteins: past, present and future. Molecular Plant Pathology 10:6, pages 735-747.
Crossref
Soledad Sacristán, Marielle Vigouroux, Carsten Pedersen, Pari Skamnioti, Hans Thordal-Christensen, Cristina Micali, James K. M. Brown & Christopher J. Ridout. (2009) Coevolution between a Family of Parasite Virulence Effectors and a Class of LINE-1 Retrotransposons. PLoS ONE 4:10, pages e7463.
Crossref
Christopher James Ridout. 2005. Encyclopedia of Life Sciences. Encyclopedia of Life Sciences.
Ioannis StergiopoulosPierre J.G.M. de Wit. (2009) Fungal Effector Proteins. Annual Review of Phytopathology 47:1, pages 233-263.
Crossref
Pingsha Hu, Yan Meng & Roger P. Wise. (2009) Functional Contribution of Chorismate Synthase, Anthranilate Synthase, and Chorismate Mutase to Penetration Resistance in Barley–Powdery Mildew Interactions. Molecular Plant-Microbe Interactions® 22:3, pages 311-320.
Crossref
Yan Meng, Matthew J. Moscou & Roger P. Wise. (2009) Blufensin1 Negatively Impacts Basal Defense in Response to Barley Powdery Mildew     . Plant Physiology 149:1, pages 271-285.
Crossref
Robert F. Park, Michael Ayliffe, Jeremy J. Burdon & David Guest. 2009. Crop Physiology. Crop Physiology 423 447 .
Roger P. Wise, Nick Lauter, Les Szabo & Patrick Schweizer. 2009. Genetics and Genomics of the Triticeae. Genetics and Genomics of the Triticeae 559 589 .
Seedhabadee Ganeshan, Ravindra N. Chibbar, Lynn S. Dahleen, Janice Tranberg & Peggy G. Lemaux. 2008. Compendium of Transgenic Crop Plants. Compendium of Transgenic Crop Plants 101 138 .
B. Schejbel, L. B. Jensen, T. Asp, Y. Xing & T. Lbberstedt. (2008) Mapping of QTL for resistance to powdery mildew and resistance gene analogues in perennial ryegrass. Plant Breeding 127:4, pages 368-375.
Crossref
David B. Collinge, Michael K. Jensen, Michael F. Lyngkjaer & Jesper Rung. (2008) How can we exploit functional genomics approaches for understanding the nature of plant defences? Barley as a case study. European Journal of Plant Pathology 121:3, pages 257-266.
Crossref
Pari Skamnioti, Carsten Pedersen, Ghias R. Al-Chaarani, Anna Holefors, Hans Thordal-Christensen, James K.M. Brown & Christopher J. Ridout. (2008) Genetics of avirulence genes in Blumeria graminis f.sp. hordei and physical mapping of AVRa22 and AVRa12. Fungal Genetics and Biology 45:3, pages 243-252.
Crossref
Katharina Göllner, Patrick Schweizer, Yuling Bai & Ralph Panstruga. (2008) Natural genetic resources of Arabidopsis thaliana reveal a high prevalence and unexpected phenotypic plasticity of RPW8‐ mediated powdery mildew resistance . New Phytologist 177:3, pages 725-742.
Crossref
Ahmet Zeybek, Şahin Dere, Gülay Gök, Asude Çallak & Mahinur S. Akkaya. (2009) Assessment of powdery mildew (Blumeria graminis f. sp. hordei) resistance genes in Turkish barley varieties. Phytoprotection 89:1, pages 31-36.
Crossref
Cristina Micali, Katharina Göllner, Matt Humphry, Chiara Consonni & Ralph Panstruga. (2008) The Powdery Mildew Disease of Arabidopsis: A Paradigm for the Interaction between Plants and Biotrophic Fungi. The Arabidopsis Book 6, pages e0115.
Crossref
Ruth Eichmann & Ralph Hückelhoven. (2008) Accommodation of powdery mildew fungi in intact plant cells. Journal of Plant Physiology 165:1, pages 5-18.
Crossref
Aurélien Tellier & James K M Brown. (2007) Polymorphism in Multilocus Host–Parasite Coevolutionary Interactions. Genetics 177:3, pages 1777-1790.
Crossref
Salvatore Ceccarelli, Stefania Grando, Flavio Capettini & Michael Baum. 2007. Breeding Major Food Staples. Breeding Major Food Staples 193 225 .
A. Dreiseitl, J. Řepková & P. Lízal. (2007) Genetic analysis of thirteen accessions of Hordeum vulgare ssp. spontaneum resistant to powdery mildew . Cereal Research Communications 35:3, pages 1449-1458.
Crossref
Marco Miklis, Chiara Consonni, Riyaz A. Bhat, Volker Lipka, Paul Schulze-Lefert & Ralph Panstruga. (2007) Barley MLO Modulates Actin-Dependent and Actin-Independent Antifungal Defense Pathways at the Cell Periphery. Plant Physiology 144:2, pages 1132-1143.
Crossref
A. Dreiseitl. (2007) Powdery mildew resistance in winter barley cultivars. Plant Breeding 126:3, pages 268-273.
Crossref
Antonín Dreiseitl & Junmei Wang. (2007) Virulence and diversity of Blumeria graminis f.sp. hordei in East China. European Journal of Plant Pathology 117:4, pages 357-368.
Crossref
Antonín Dreiseitl & Jianming Yang. (2006) Powdery Mildew Resistance in a Collection of Chinese Barley Varieties. Genetic Resources and Crop Evolution 54:2, pages 259-266.
Crossref
MATT HUMPHRY, CHIARA CONSONNI & RALPH PANSTRUGA. (2006) mlo-based powdery mildew immunity: silver bullet or simply non-host resistance?. Molecular Plant Pathology 7:6, pages 605-610.
Crossref
Jana Řepková, Antonín Dreiseitl, Pavel Lízal, Zdeňka Kyjovská, Kateřina Teturová, Radka Psotková & Ahmed Jahoor. (2006) Identification of Resistance Genes Against Powdery Mildew in Four Accessions of Hordeum Vulgare SSP. Spontaneum. Euphytica 151:1, pages 23-30.
Crossref
N. Mejlhede, Z. Kyjovska, G. Backes, K. Burhenne, S. K. Rasmussen & A. Jahoor. (2006) EcoTILLING for the identification of allelic variation in the powdery mildew resistance genes mlo and Mla of barley. Plant Breeding 125:5, pages 461-467.
Crossref
Rico A. Caldo, Dan Nettleton, Jiqing Peng & Roger P. Wise. (2006) Stage-Specific Suppression of Basal Defense Discriminates Barley Plants Containing Fast- and Delayed-Acting Mla Powdery Mildew Resistance Alleles . Molecular Plant-Microbe Interactions® 19:9, pages 939-947.
Crossref
G Tacconi, V Baldassarre, N C Collins, D Bulgarelli, A M Stanca & G Valè. (2006) Haplotype characterization and markers at the barley Mlo powdery mildew resistance locus as tools for marker-assisted selection . Genome 49:8, pages 864-872.
Crossref
Antonín Dreiseitl, Amos Dinoor & Evsey Kosman. (2006) Virulence and Diversity of Blumeria graminis f. sp. hordei in Israel and in the Czech Republic . Plant Disease 90:8, pages 1031-1038.
Crossref
PHILIP J. SWARBRICK, PAUL SCHULZE-LEFERT & JULIE D. SCHOLES. (2006) Metabolic consequences of susceptibility and resistance (race-specific and broad-spectrum) in barley leaves challenged with powdery mildew. Plant, Cell and Environment 29:6, pages 1061-1076.
Crossref
J Z Li, X Q Huang, F Heinrichs, M W Ganal & M S Röder. (2006) Analysis of QTLs for yield components, agronomic traits, and disease resistance in an advanced backcross population of spring barley. Genome 49:5, pages 454-466.
Crossref
Zifu Yan, Oene Dolstra, Theo W. Prins, Piet Stam & Peter B. Visser. (2006) Assessment of Partial Resistance to Powdery Mildew (Podosphaera pannosa) in a Tetraploid Rose Population Using a Spore-suspension Inoculation Method. European Journal of Plant Pathology 114:3, pages 301-308.
Crossref
S. J. Yun, L. Gyenis, P. M. Hayes, I. Matus, K. P. Smith, B. J. Steffenson & G. J. Muehlbauer. (2005) Quantitative Trait Loci for Multiple Disease Resistance in Wild Barley. Crop Science 45:6, pages 2563-2572.
Crossref
Payorm Srichumpa, Susanne Brunner, Beat Keller & Nabila Yahiaoui. (2005) Allelic Series of Four Powdery Mildew Resistance Genes at the Pm3 Locus in Hexaploid Bread Wheat . Plant Physiology 139:2, pages 885-895.
Crossref
M. von Korff, H. Wang, J. Léon & K. Pillen. (2005) AB-QTL analysis in spring barley. I. Detection of resistance genes against powdery mildew, leaf rust and scald introgressed from wild barley. Theoretical and Applied Genetics 111:3, pages 583-590.
Crossref
A Dreiseitl. (2005) Resistance To Powdery Mildew In Selected Czech Winter Barley Breeding Lines. Czech Journal of Genetics and Plant Breeding 41:2, pages 45-50.
Crossref
A. L. Li, M. L. Wang, R. H. Zhou, X. Y. Kong, N. X. Huo, W. S. Wang & J. Z. Jia. (2005) Comparative analysis of early H2O2 accumulation in compatible and incompatible wheat-powdery mildew interactions. Plant Pathology 54:3, pages 308-316.
Crossref
A. Urbanietz & F. Dunemann. (2005) Isolation, identification and molecular characterization of physiological races of apple powdery mildew (Podosphaera leucotricha). Plant Pathology 54:2, pages 125-133.
Crossref
Ralph Hückelhoven. (2005) Powdery mildew susceptibility and biotrophic infection strategies. FEMS Microbiology Letters 245:1, pages 9-17.
Crossref
Carin Jansen, Michael Korell, Christina Eckey, Dagmar Biedenkopf & Karl-Heinz Kogel. (2005) Identification and transcriptional analysis of powdery mildew-induced barley genes. Plant Science 168:2, pages 373-380.
Crossref
Antonín Dreiseitl. (2004) Virulence frequencies to powdery mildew resistance genes of winter barley cultivars. Plant Protection Science 40:4, pages 135-140.
Crossref
MARCO TRUJILLO, MARCUS TROEGER, RIENTS E. NIKS, KARL-HEINZ KOGEL & RALPH HUCKELHOVEN. (2004) Mechanistic and genetic overlap of barley host and non-host resistance to Blumeria graminis. Molecular Plant Pathology 5:5, pages 389-396.
Crossref
Rico A. Caldo, Dan Nettleton & Roger P. Wise. (2004) Interaction-Dependent Gene Expression in Mla -Specified Response to Barley Powdery Mildew[W] . The Plant Cell 16:9, pages 2514-2528.
Crossref
Pietro Piffanelli, Luke Ramsay, Robbie Waugh, Abdellah Benabdelmouna, Angélique D'Hont, Karin Hollricher, Jørgen Helms Jørgensen, Paul Schulze-Lefert & Ralph Panstruga. (2004) A barley cultivation-associated polymorphism conveys resistance to powdery mildew. Nature 430:7002, pages 887-891.
Crossref
Ruth Eichmann, Holger Schultheiss, Karl-Heinz Kogel & Ralph Hückelhoven. (2004) The Barley Apoptosis Suppressor Homologue Bax Inhibitor-1 Compromises Nonhost Penetration Resistance of Barley to the Inappropriate Pathogen Blumeria graminis f. sp. tritici . Molecular Plant-Microbe Interactions® 17:5, pages 484-490.
Crossref
Christina Eckey, Michael Korell, Katja Leib, Dagmar Biedenkopf, Carin Jansen, Gregor Langen & Karl-Heinz Kogel. (2004) Identification of powdery mildew-induced barley genes by cDNA-AFLP: functional assessment of an early expressed MAP kinase. Plant Molecular Biology 55:1, pages 1-15.
Crossref
Dennis A. Halterman & Roger P. Wise. (2004) A single-amino acid substitution in the sixth leucine-rich repeat of barley MLA6 and MLA13 alleviates dependence on RAR1 for disease resistance signaling. The Plant Journal 38:2, pages 215-226.
Crossref
Hubert H. Felle, Almut Herrmann, Stefan Hanstein, Ralph Hückelhoven & Karl-Heinz Kogel. (2004) Apoplastic pH Signaling in Barley Leaves Attacked by the Powdery Mildew Fungus Blumeria graminis f. sp. hordei . Molecular Plant-Microbe Interactions® 17:1, pages 118-123.
Crossref
Holger Schultheiss, Cornelia Dechert, Karl-Heinz Kogel & Ralph Hückelhoven. (2003) Functional analysis of barley RAC/ROP G-protein family members in susceptibility to the powdery mildew fungus. The Plant Journal 36:5, pages 589-601.
Crossref
J. L. Molina-Cano, J. P. Simiand, A. Sopena, A. M. Pérez-Vendrell, S. Dorsch, D. Rubiales, J. S. Swanston & A. Jahoor. (2003) Mildew-resistant mutants induced in North American two- and six-rowed malting barley cultivars. Theoretical and Applied Genetics 107:7, pages 1278-1287.
Crossref
W.M Kruger, L.J Szabo & R.J Zeyen. (2003) Transcription of the defense response genes chitinase IIb, PAL and peroxidase is induced by the barley powdery mildew fungus and is only indirectly modulated by R genes. Physiological and Molecular Plant Pathology 63:3, pages 167-178.
Crossref
V. Ivandic, W. T. B. Thomas, E. Nevo, Z. Zhang & B. P. Forster. (2008) Associations of simple sequence repeats with quantitative trait variation including biotic and abiotic stress tolerance in Hordeum spontaneum. Plant Breeding 122:4, pages 300-304.
Crossref
M. Linde & Th. Debener. (2003) Isolation and identification of eight races of powdery mildew of roses (Podosphaera pannosa) (Wallr.: Fr.) de Bary and the genetic analysis of the resistance gene Rpp1. Theoretical and Applied Genetics 107:2, pages 256-262.
Crossref
Ralph Hückelhoven, Cornelia Dechert & Karl-Heinz Kogel. (2003) Overexpression of barley BAX inhibitor 1 induces breakdown of mlo -mediated penetration resistance to Blumeria graminis . Proceedings of the National Academy of Sciences 100:9, pages 5555-5560.
Crossref
Ralph Hückelhoven & Karl-Heinz Kogel. (2003) Reactive oxygen intermediates in plant-microbe interactions: Who is who in powdery mildew resistance?. Planta 216:6, pages 891-902.
Crossref
Dennis A. Halterman, Fusheng Wei & Roger P. Wise. (2003) Powdery Mildew-Induced Mla mRNAs Are Alternatively Spliced and Contain Multiple Upstream Open Reading Frames . Plant Physiology 131:2, pages 558-567.
Crossref
Jens Weibull, Ursula Walther, Kazuhiro Sato, Antje Habekuß, Doris Kopahnke & Gerhard Proeseler. 2003. Diversity in Barley - Hordeum vulgare. Diversity in Barley - Hordeum vulgare 143 178 .
J.H. Czembor, H.J. Czembor & M. Mackey. (2002) Genetic diversity of barley landraces from Near East, North Africa and Southern Europe in relation to resistance to powdery mildew. Plant Protection Science 38:SI 2 - 6th Conf EFPP, pages 558-560.
Crossref
Ralph Panstruga & Paul Schulze-Lefert. (2002) Live and let live: insights into powdery mildew disease and resistance. Molecular Plant Pathology 3:6, pages 495-502.
Crossref
Fusheng Wei, Rod A. Wing & Roger P. Wise. (2002) Genome Dynamics and Evolution of the Mla (Powdery Mildew) Resistance Locus in Barley[W] . The Plant Cell 14:8, pages 1903-1917.
Crossref
Kirsten Annette Nielsen, Carl Erik Olsen, Katrine Pontoppidan & Birger Lindberg Møller. (2002) Leucine-Derived Cyano Glucosides in Barley. Plant Physiology 129:3, pages 1066-1075.
Crossref
Jagdish Kumar, Patrick Schäfer, Ralph Hückelhoven, Gregor Langen, Helmut Baltruschat, Elke Stein, Subramaniam Nagarajan & Karl-Heinz Kogel. (2002) Bipolaris sorokiniana , a cereal pathogen of global concern: cytological and molecular approaches towards better control‡ . Molecular Plant Pathology 3:4, pages 185-195.
Crossref
W.M Kruger, T.L.W Carver & R.J Zeyen. (2002) Effects of inhibiting phenolic biosynthesis on penetration resistance of barley isolines containing seven powdery mildew resistance genes or alleles. Physiological and Molecular Plant Pathology 61:1, pages 41-51.
Crossref
Holger Schultheiss, Cornelia Dechert, Karl-Heinz Kogel & Ralph Hückelhoven. (2002) A Small GTP-Binding Host Protein Is Required for Entry of Powdery Mildew Fungus into Epidermal Cells of Barley. Plant Physiology 128:4, pages 1447-1454.
Crossref
Carsten Pedersen, Søren W. Rasmussen & Henriette Giese. (2002) A Genetic Map of Blumeria graminis Based on Functional Genes, Avirulence Genes, and Molecular Markers. Fungal Genetics and Biology 35:3, pages 235-246.
Crossref
Monica Båga, Ravindra Chibbar & Seedhabadee Ganeshan. 2002. Transgenic Plants and Crops. Transgenic Plants and Crops.
C. L. Schiff, I. W. Wilson & S. C. Somerville. (2001) Polygenic powdery mildew disease resistance in Arabidopsis thaliana : quantitative trait analysis of the accession Warschau‐1 . Plant Pathology 50:6, pages 690-701.
Crossref
A. Dreiseitl & P. Svačina. (2001) Registration of ‘Heris’ Barley. Crop Science 41:6, pages 1992-1993.
Crossref
F. Sacco, E. Y. Suárez, H. A. Saione & B. E. Tanos. (2008) Dosage Effect of Lr3 Gene in the Triticum aestivum–Puccinia recondita Specific Interaction . Journal of Phytopathology 149:10, pages 583-588.
Crossref
Jerzy H. Czembor & Henryk J. Czembor. (2001) Inheritance of Resistance to Powdery Mildew (Blumeria graminis f.sp. hordei) in Selections from Moroccan Landraces of Barley. Cereal Research Communications 29:3-4, pages 281-288.
Crossref
Stephen W. Thomas, Søren W. Rasmussen, Mikkel A. Glaring, Jacques A. Rouster, Solveig K. Christiansen & Richard P. Oliver. (2001) Gene Identification in the Obligate Fungal Pathogen Blumeria graminis by Expressed Sequence Tag Analysis. Fungal Genetics and Biology 33:3, pages 195-211.
Crossref
Ralph Hückelhoven, Cornelia Dechert & Karl-Heinz Kogel. (2001) Non-host resistance of barley is associated with a hydrogen peroxide burst at sites of attempted penetration by wheat powdery mildew fungus. Molecular Plant Pathology 2:4, pages 199-205.
Crossref
Dennis Halterman, Fasong Zhou, Fusheng Wei, Roger P. Wise & Paul Schulze‐Lefert. (2001) The MLA6 coiled‐coil, NBS‐LRR protein confers AvrMla6 ‐dependent resistance specificity to Blumeria graminis f. sp. hordei in barley and wheat . The Plant Journal 25:3, pages 335-348.
Crossref

Displaying 200 of 231 citing articles. Use the download link below to view the full list of citing articles.

Download full citations list

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.