Plant Protect. Sci., 2020, 56(3):141-153 | DOI: 10.17221/99/2019-PPS

Characteristics of powdery mildew and its importance for wheat grown in PolandReview

Aleksandra Pietrusińska ORCID...*,1, Anna Tratwal ORCID...2
1 National Centre for Plant Genetic Resources: Polish Genebank, Plant Breeding and Acclimatization Institute - National Research Institute, Radzików, Poland
2 Department of Pests Methods Forecasting and Economy of Plant Control, Institute of Plant Protection - National Research Institute, Poznań, Poland

Powdery mildew of grasses and cereals (Blumeria graminis) is a fungal plant disease which is caused by species of fungi from the Erysiphaceae order. B. graminis is a biotrophic parasite, biologically diverse parasite with a high degree of specialization in certain host species and with numerous physiological breeds adapted to different varieties of a particular host species. In Poland, powdery mildew of cereals and grasses is recorded every year, and its greatest intensity is in south-eastern and south-western regions. The degree of infestation by B. graminis varies every year. This means that the disease occurs every year, in greater or lesser severity. Therefore, it requires monitoring (harmfulness thresholds) and chemical control practically in every vegetation season. Nowadays, an important role is played by immunological breeding. In breeding programs, resistance genes from wild crop forms, primitive and indigenous varieties are an effective tool. The introduction of effective resistance genes into cultivated varieties is a common procedure used in breeding program.The aim of this study was to describe the fungal disease of plants from the group of powdery mildews caused by B. graminis as an overview.

Keywords: Blumeria graminis; cereals; resistance genes; incidence; characteristics; resistance genes

Published: September 30, 2020  Show citation

ACS AIP APA ASA Harvard Chicago Chicago Notes IEEE ISO690 MLA NLM Turabian Vancouver
Pietrusińska A, Tratwal A. Characteristics of powdery mildew and its importance for wheat grown in Poland. Plant Protect. Sci. 2020;56(3):141-153. doi: 10.17221/99/2019-PPS.
Download citation

References

  1. Alam M., Xue F., Wang C., Ji W. (2011): Powdery mildew resistance genes in wheat: identification and genetic analysis. Journal of Molecular Biology, 1: 20-39. Go to original source...
  2. An D., Zheng Q., Zhou Y., Ma P., Lv Z., Li L., Li B., Luo Q., Xu H., Xu Y. (2013): Molecular cytogenetic characterization of a new wheat-rye 4R chromosome translocation line resistance to powdery mildew. Chromsome Research, 21: 419-432. Go to original source... Go to PubMed...
  3. Asad M., Bai B., Lan C., Yan J., Xia X., Zhang Y., He Z. (2013): QTL mapping for adult plant resistance to powdery mildew in Italian wheat cv. Strampelli. Journal of Integrative Agriculture, 5: 756-764. Go to original source...
  4. Bengtsson T., Ahman I., Mannien O., Reitan L., Christerson T., Jensen J., Krusell L., Jahoor A., Orabi J. (2017): A novel QTL for powdery mildew resistance in Nordic spring barley (Hordeum vulgare L. ssp. vulgare) revealed by genomewide association study. Frontiers in Plant Science, 8: 1-11. Go to original source... Go to PubMed...
  5. Bennett F. (1984): Resistance to powdery mildew in wheat: a review of its use in agriculture and breeding programmes. Plant Pathology, 33: 279-300. Go to original source...
  6. Bouguennec A., Trottet M., du Cheyron P., Lonnet P. (2014): Triticale powdery mildew: population characterization and wheat gene efficiency. Communications in Agricultural and Applied Biological Science, 79: 106-21.
  7. Boyd L., Ridout C., O'Sullivan D., Leach J., Leung H. (2012): Plant-pathogen interactions: disease resistance in modern agriculture. Trends in Genetics, 29: 1-8. Go to original source... Go to PubMed...
  8. Braun U., Cook R., Inman A., Shin H. (2002). The taxonomy of the powdery mildew fungi. In: Bélanger R., Bushnell W., Dik A., Carver T.L.W. (eds): The Powdery Mildews: A Comprehensive Treatise. St. Paul, APSPress: 13-15. Go to original source...
  9. Bujak H., Jurkowski A. (2013): Estimation of winter rye (Secale cereal L.) susceptibility to infection by powdery mildew (Blumeria graminis f. sp. secalis). Acta Agrobotanica, 66: 49-54. Go to original source...
  10. Cao X., Luo Y., Zhou Y., Duan X., Cheng D. (2013): Detection of powdery mildew in two winter wheat cultivars using canopy hyperspectral reflectance. Crop Protection, 45: 124-131. Go to original source...
  11. Centrum Doradztwa Rolniczego w Brwinowie (2018): https://cdr.gov.pl/aktualnosci/57-cdr-informuje/2642-relacja-zeszkolenia-rozpoznawanie-agrofagow-w-uprawach-rolniczych?highlight=WyJwcm9naSIsInN6a29kbGl3b1x1MDE1YmNpIiwicHJvZ2kgc3prb2RsaXdvXHUwMTViY2kiXQ== (accessed May 30, 2018).
  12. Chełkowski J., Koczyka G. (2005): Genomika i Bioinformatyka Roślin. Rozprawy i Monografie. Poznań, IGR PAN: 139-157.
  13. Conner R., Kuzyk A., Su H. (2003): Impact of powdery mildew on the yield of soft white spring wheat cultivars. Canadian Journal of Plant Science, 83: 725-728. Go to original source...
  14. Cunfer B.M. (2002): Powdery mildew. Available at http://www.fao.org/3/y4011e0l.htm
  15. Czembor H. (1981): Rasy fizjologiczne mączniaka jęczmienia (Erysiphe graminis DC ex Merat f. sp. hordei) występujące w Polsce w latach 1975-1979. Hodowla Roślin, Aklimatyzacja i Nasiennictwo, 25: 215-225.
  16. Czembor H., Czembor J. (2005): Pathogenicity of barley powdery mildew (Blumeria graminis f. sp. hordei) in Poland in 2001. Biuletyn IHAR, 236: 183-192. Go to original source...
  17. Daamen R. (1989): Assessment of the profile of powdery mildew and its damage function at low disease intensities in field experiments with winter wheat. Netherlands Journal of Plant Pathology, 95: 85-105. Go to original source...
  18. Day P. (1974): Genetics of host-parasite interaction. San Francisco, W.H. Freeman and Company.
  19. Dewey D. (1983): Historical and current taxonomic perspectives of Agropyron, Elymus, and related genera. Crop Science, 23: 637-642. Go to original source...
  20. Dhirhi N., Mehta N., Singh. S (2017): Screening of powdery mildew tolerance in linseed (Linum usitatisimum L.). Journal of Plant Development Sciences, 9: 153-156.
  21. Draz I., Esmail S., Abou-Zeid M., Essa T. (2019): Powdery mildew susceptibility of spring wheat cultivars as a major constraint on grain yield. Annals of Agricultural Sciences, 64: 39-45. Go to original source...
  22. Duan X., Xiang Q., Zhou Y., Sheng B., Zhao Z. (2001): Allelic analysis of powdery mildew resistance genes in four Chinese landraces. Acta Phytopathologica Sinica, 31: 32-35.
  23. Esmail S., Draz I. (2017): Fungal morphogenesis tracking of Blumeria graminis f. sp. tritici on leaf freed of epiculticular wax using scanning electron microscopy. International Journal of Microbiology and Biotechnology, 2: 181-188.
  24. Everts K., Leath S., Finney P. (2001): Impact of powdery mildew and leaf rust on milling and baking quality of soft red winter wheat. Plant Disease, 85: 423-429. Go to original source... Go to PubMed...
  25. Felczak K. (2016): Mączniak prawdziwy zbóż. Available at https://doradca-rolniczy.pl/maczniak-prawdziwy-zboz/
  26. Fiedorow Z., Gołębniak B., Weber Z. (2004): Choroby Roślin Rolniczych. Poznań, AR.
  27. Flor H. (1956): The complementary genetic systems in flax and flax rust. Advances in Genetics, 8: 29-54. Go to original source...
  28. Gacek E. (1983): Analiza patogeniczności grzybów porażających jęczmienia. Biuletyn IHAR, 150: 11-15.
  29. Gacek E. (1987): Distribution of barley powdery mildew resistance and virulence in Poland in 1984-1986. In: Wolfe W.S., Limpert E. (eds): Advances in Agricultural Biotechnology. Dordrecht, Martinus Nijhoff Publishers: 93-98.
  30. Gacek E. (1990): Studia nad sposobami wykorzystania odporności genetycznej jęczmienia w zwalczaniu mączniaka prawdziwego (Erysiphe graminis DC f. sp. hordei Marchal). Hodowla Roślin i Nasiennictwo, 34: 3-49.
  31. Gacek E., Biliński Z., Czembor H., Czembor J. (2004): Chorobotwórczość mączniaka prawdziwego jęczmienia (Blumeria graminis f. sp. hordei) w Polsce w latach 1993- 1996. Biuletyn IHAR, 231: 365-376. Go to original source...
  32. Gacek E., Czembor H. (1983): Problem wykorzystania genetycznej odporności w hodowli i uprawie mieszanin zbóż ze szczególnym uwzględnieniem jęczmienia. Biuletyn IHAR, 151: 37-45.
  33. Gacek E., Czembor H. (1984): Prawidłowe wykorzystanie genetycznej odporności jęczmienia na choroby. Zeszyty Problemowe Postępów Nauk Rolniczych, 305: 163-169.
  34. Gacek E., Czembor H. (1988): Analiza ilościowa struktury populacji mączniaka jęczmienia (Erysiphe graminis f. sp. hordei). Biuletyn IHAR, 167: 13-19.
  35. Gacek E., Czembor H. (1993): Evolution of barley powdery mildew population in Poland. Polnohospodarstwo, Bratislava: 39: 373-379.
  36. Gacek E., Czembor H. (1995): Metody badań chorobotwórczości patogenów obligatoryjnych zbóż. Krajowe Sympozjum "Odporność Roślin Na Choroby, Szkodniki i Niesprzyjające Czynniki Środowiska". IHAR Radzików, 169-179.
  37. Gepts P. (2000): A phylogenetic and genomic analysis of crop germplasm: A necessary condition for its rational conservation and utilization. In: Proc Stadler Genetics Symposium PGJ. New York, Plenum: 163-181. Go to original source...
  38. Gepts P., Papa R. (2003): Possible effects of (trans)gene flow from crops on the genetic diversity from landraces and wild relatives. Environmental Biosafety Research, 2: 89-103. Go to original source... Go to PubMed...
  39. Gołębniak B. (1993): Wybrane zagadnienia z biologii i epidemiologii mączniaka prawdziwego zbóż i traw (Erysiphe graminis DC). In: Roczniki AR w Poznaniu, Rozprawy Naukowe, Zeszyt. Poznań, Akademii Rolniczej w Poznaniu.
  40. Górny A. (2004): Zarys Genetyki Zbóż. Tom 1. Jęczmień, pszenica i żyto. Poznań, Instytut Genetyki Roślin PAN: 181-327.
  41. Götz M., Friedrich S., Boyle C. (1996): Development of cleistothecia and early ascospore release of Erysiphe graminis DC. f. sp. tritici in winter wheat in relation to host age and climatic conditions. Journal of Plant Diseases and Protection, 103: 134-141.
  42. Gupta S., D'Antuono M., Bradley J., Li Ch, Loughman R. (2014): Identification and expression of adult plant resistance in barley to powdery mildew (Blumeria graminis f. sp. hordei) in Australia. Euphytica, 203: 595-605. Go to original source...
  43. Hacquard S., Kracher B., Maekawa T., Vernaldi S., SchulzeLefert P., Ver Loren van Themaat E. (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, USA, 110(24): e2219-28. doi:10.1073/pnas.1306807110 Go to original source... Go to PubMed...
  44. Hao Y., Liu A., Wang Y., Feng D., Gao J., Li X., Liu S., Wang H. (2008): Pm23: a new allele of Pm4 located on chromosome 2AL in wheat. Theoretical and Applied Genetics, 117: 1205-1212. Go to original source... Go to PubMed...
  45. Hao Y., Parks R., Cowger C., Chen Z., Wang Y., Bland D., Johnson J., Murphy J., Guedira M, Brown-Guedira G. (2015): Molecular characterization of a new powdery mildew resistance gene Pm54 in soft red winter wheat. Theoretical and Applied Genetics, 128: 465-476. Go to original source... Go to PubMed...
  46. Harlan J., de Wet J. (1971): Towards a rational classification of cultivated plants. Taxon, 20: 509-517. Go to original source...
  47. He R., Chang Z., Yang Z., Yuan Z., Zhan H., Zhang X., Liu J. (2009): Inheritance and mapping of powdery mildew resistance gene Pm43 introgressed from Thinopyrum intermedium into wheat. Theoretical and Applied Genetics, 118: 1173-1180. Go to original source... Go to PubMed...
  48. Hermansen J., Torp U., Prahm L. (1978): Studies of transport of live spores of cereal mildew and rust fungi across the North Sea. Grana, 17: 41-46. Go to original source...
  49. Hua W, Liu Z, Zhu J, Xie C, Yang T, Zhou Y, Duan X, Sun Q, Liu Z (2009): Identification and genetic mapping of Pm42, a new recessive wheat powdery mildew resistance gene derived from wild emmer (Triticum turgidum var. dicoccoides). Theoretical and Applied Genetics, 119: 223-230. Go to original source... Go to PubMed...
  50. Huang X., Röder M. (2004): Molecular mapping of powdery mildew resistance genes in wheat: A review. Euphytica, 137: 203-223. Go to original source...
  51. Instytut Ochrony Roślin (2008): Avalable at https://www.ior.poznan.pl/plik,263,stan-fitosanitarny-2007.pdf
  52. Jańczak C., Pawlak A. (2006): Występowanie i szkodliwość mącznika prawdziwego (Blumeria graminis) w pszenicy ozimej w latach 2003-2005. Postępy w Ochronie Roślin, 46: 538-542.
  53. Ji X., Xie C., Ni Z., Yang S., Nevo E., Fahima T., Liu Z., Sun Q. (2008): Identification and genetic mapping of a powdery mildew resistance gene in wild emmer (Triticum dicoccoides) accession IW72 from Israel. Euphytica, 159: 385-390. Go to original source...
  54. Kirk P., Cannon P., David J., Stalpers J. (2001): Ainsworth & Bisby's Dictionary of the Fungi. : 9th edition. Wallingford. CABI Publishing
  55. Kochman J., Węgorek W. (1997): Ochrona Roślin. Choroby infekcyjne, 4th Ed. Kraków, Plantpress: 445-447.
  56. Kowalczyk K., Gruszecka D., Nowak M., Leśniowska-Nowak J. (2011): Resistance of Triticale hybrids with Pm4b and Pm6 genes to powdery mildew. Acta Biologica Cracoviensia, Series Botanica, 53: 57-62. Go to original source...
  57. Kowalczyk K., Hsam S., Zeller F. (1998): Identification of powdery mildew resistance genes in common wheat (Triticum aestivum L. em. Thell.). XI. Cultivars grown in Poland. Journal of Applied Genetics, 39: 225-236.
  58. Lackermann K., Conley S., Gaska J., Martinka M., Esker P. (2011): Effect of location, cultivar, and diseases on grain yield of soft red winter wheat in Wisconsin. Plant Disease, 95: 1401-1406. Go to original source... Go to PubMed...
  59. Leath S., Bowen K. (1989): Effects of powdery mildew, triadimenol seedtreatment, and triadimefon foliar sprays on yield of winter wheat in North Carolina. Phytopathology, 79: 152-155. Go to original source...
  60. Leath S., Heun M. (1990): Identification of powdery mildew resistance genes in cultivars of soft red winter wheat. Plant Disease, 74: 747-752. Go to original source...
  61. Legler S., Caffi T., Rossi V. (2012): A nonlinear model for temperature-dependent development of Erysiphe necator chasmothecia on grapevine leaves. Plant Pathology, 61: 96-105. Go to original source...
  62. Li B., Cao X., Chen L., Zhou Y., Duan X., Luo Y., Fitt B., Xu X., Song Y., Wang B., Cao S. (2013): Application of geographic information systems to identify the over summering regions of Blumeria graminis f. sp. tritici in China. Plant Disease, 97: 1168-1174. Go to original source... Go to PubMed...
  63. Li G., Fang T., Zhang H., Xie Ch., Li H., Yang T., Nevo E., Fahima T., Sun Q., Liu Z. (2009): Molecular identification of a new powdery mildew resistance gene Pm41 on chromosome 3BL derived from wild emmer (Triticum turgidum var. dicoccoides). Theoretical and Applied Genetics, 119: 531-539. Go to original source... Go to PubMed...
  64. Li Y., Shi X., Hu J., Wu P., Qiu D., Qu Y., Xie J., Wu Q., Zhang H., Yang L., Liu H., Zhou Y., Liu Z., Li H. (2020): Identification of a recessive gene PmQ conferring resistance to powdery mildew in wheat landrace Qingxinmai using BSR-Seq Analysis. Plant Disease, 104(3). doi: 10.1094/PDIS-08-19-1745-RE Go to original source... Go to PubMed...
  65. Liu N., Bai G., Lin M., Xu X., Zheng W. (2017): Genome-wide association analysis of powdery mildew resistance in U.S. winter wheat. Scientific Reports, 7: 1-11. Go to original source... Go to PubMed...
  66. Liu Z., Sun Q., Ni Z., Yang T. (1999): Development of SCAR markers linked to the Pm21 gene conferring resistance to powdery mildew in common wheat. Plant Breeding, 118: 215-219. Go to original source...
  67. Luo P., Luo H., Chang Z., Zhang H., Zhang M., Ren Z. (2009): Characterization and chromosomal location of Pm40 in common wheat: a new gene for resistance to powdery mildew derived from Elytrigia intermedium. Theoretical and Applied Genetics, 18: 1059-1064. Go to original source... Go to PubMed...
  68. Ma H., Kong Z., Fu B., Li N., Zhang L., Jia H., Ma Z. (2011): Identification and mapping of a new powdery mildew resistance gene on chromosome 6D of common wheat. Theoretical and Applied Genetics, 123: 1099-1106. Go to original source... Go to PubMed...
  69. Mains E., Dietz S. (1930): Physiologic forms of barley mildew, Erysiphe graminis hordei Marchal. Phytopathology, 20: 229-239.
  70. Mandal M., Fu Y., Zhang S., Ji W. (2015): Proteomic analysis of the defense response of wheat to the powdery mildew fungus, Blumeria graminis f. sp. tritici. Protein Journal, 33: 513-524. Go to original source...
  71. Marschal E. (1902): De la specialization du parasitisme chez l'Eysiphe graminis. Comptes Rendus Academie des Sciences, Paris, 135: 210-212.
  72. McIntosh R., Devos K., Dubkovsky J., Rogers W. (2004): Catalogue of gene symbols for wheat: 2004 Supplement. Available at https://wheat.pw.usda.gov/ggpages/wgc/2004upd.html
  73. Merchan V., Kranz J. (1986): Die Wirkung des Regens auf die Entwicklung des Weizenmehltaus (Erysiphe graminis DC. f. sp. tritici Marchal). Journal of Plant Disease and Protection, 93: 262-270.
  74. Ministerstwo Rolnistwa i Rowvoju Wsi. Available at http://www.minrol.gov.pl/Informacje-branzowe/Produkcjaroslinna/Ochrona-roslin/Integrowana-ochrona-roslin/Metodyki-integrowanej-ochrony-roslin
  75. Moher V., Zeller F., Wenzel G., Hsam S. (2005): Chromosomal location of genes for resistance to powdery mildew in common wheat (Triticum aestivum L. em Thell). 9. Gene MlZec1 from Triticum dicoccoides-derived wheat line Zecoi-1. Euphytica, 142: 161-167. Go to original source...
  76. Morgounov A., Tufan H., Sharma R., Akin B., Akin B., Bagci A., Braun H., Kaya Y., Keser M., Payne T., Sonder K., McIntosh R. (2012): Global incidence of wheat rusts and powdery mildew during 1969-2010 and durability of resistance of winter wheat variety Bezostaya 1. European Journal of Plant Pathology, 132: 323-340. Go to original source...
  77. Mucha S. (2018): Integrowana ochrona roślin. MRiRW. Avalilable at https://www.gov.pl/web/rolnictwo/integrowanaochrona-roslin (accessed April 5, 2018).
  78. Niewoehner A.S., Leath S. (1998): Virulence of Blumeria graminis f. sp. tritici on winter wheat in the Eastern United States. Plant Disease, 82: 64-68. Go to original source... Go to PubMed...
  79. Okoń S., Ociepa T. (2017): Virulence structure of the Blumeria graminis DC.f. sp. avenae populations occurring in Poland across 2010-2013. European Journal of Plant Pathology, 149: 711-718. Go to original source...
  80. Oku T., Yamashita S., Doi Y., Nishihara N. (1985): Host range and forma specialis of cocksfoot powdery mildew (Erysiphe graminis DC) found in Japan. Annals of the Phytopathological Society of Japan, 51: 613-615. Go to original source...
  81. Packa D., Kuraczyk A., Tworkowski J. (2018): Available at http://www.uwm.edu.pl/eurequa/pl/I.3.htm
  82. Paillard S., Goldringer I., Enjalbert J., Trottet M., David J., de Vallavieille-Pope C., Brabant P. (2000): Evolution of resistance against powdery mildew in winter wheat populations conducted under dynamic management. II. Adult plant resistance. Theoretical and Applied Genetics, 101: 457-462. Go to original source...
  83. Peng F., Song N., Shen H., Wu H., Dong H., Zhang J., Li Y., Peng H., Ni Z., Liu Z., Yang T., Li B., Xie C., Sun Q. (2014): Molecular mapping of a recessive powdery mildew resistance gene in spelt wheat cultivar Hubel. Molecular Breeding, 34: 491-500. Go to original source...
  84. Piarulli L., Agata G., Giacomo M., Signorile M., Pasquini M., Blanco A., Simeone R. (2012): Molecular identification of a new powdery mildew resistance gene on chromosome 2BS from Triticum turgidum ssp. Dicoccum. Plant Science, 196: 101-106. Go to original source... Go to PubMed...
  85. Pietrusińska A., Czembor H. (2017): Pyramiding of resistance genes (Pm21 + Pm34) of powdery mildew of cereale and grasses (Blumeria graminis f. sp. tritici). Progress in Plant Protection, 57: 41-46.
  86. Pietrusińska A., Czembor J. (2015): Gene pyramiding - a tool commonly used in breeding programs. Biuletyn IHAR, 278: 3-16. Go to original source...
  87. Pietrusińska A., Żurek M., Mańkowski D. (2019): The search for sources of biotic stress resistance in old varieties and landraces of wheat and triticale. Biuletyn IHAR, 287: 25-28. Go to original source...
  88. Pietrusińska A., Żurek M., Piechota U., Słowacki P., Smolińska K. (2018): Searching for diseases resistance sources in old cultivars, landraces and wild relatives of cereals. A review. Agronomy Science, 73: 45-60. Go to original source...
  89. Platforma Sygnalizacji Agrofagów (2018): Available at https://www.agrofagi.com.pl/ (accessed May 14, 2018).
  90. Qiu Y., Zhou R., Kong X., Zhang S., Jia J. (2005): Microsatellite mapping of a Triticum urartu Tum. derived powdery mildew resistance gene transferred to common wheat (Triticum aestivum L.). Theoretical and Applied Genetics, 111: 1524-1531. Go to original source... Go to PubMed...
  91. Riar A., Kaur S., Dhaliwal H., Singh K., Chhuneja P. (2012): Introgression of a leaf rust resistance gene from Aegilops caudata to bread wheat. Journal of Genetics, 91: 155-161. Go to original source... Go to PubMed...
  92. Ribeiro do Vale F., Parlevliet J., Zambolim L. (2001): Concepts in plant disease resistance. Fitopatologia Brasileira, 26: 577-589. Go to original source...
  93. Rubiales D., Niks R. (2000): Combination of mechanisms of resistance to rust fungi as a strategy to increase durability. Options Mediterraneenes Series A, 40: 333-339.
  94. Saari E., Prescott J. (1975): Scale for appraising the foliar intensity of wheat diseases. Plant Disease Management Reports, 59: 377-380.
  95. Saari E.,Wilcoxson R. (1974): Plant disease situation of highyielding dwarf wheats in Asia and Africa. Annual Review of Phytopathology, 12: 49-68. Go to original source...
  96. Saidou M., Wang Ch., Alam A., Chen Ch., Ji W. (2016): Genetic analysis of powdery mildew resistance gene using SSR markers in common wheat originated from wild emmer (Triticum dicooccoides Thell). Turkish Journal of Field Crops, 21: 10-15. Go to original source...
  97. Scott P., Johnson R., Wolfe M., Lowe H., Bennett F. (1980): Host-specificity in cereal parasites in relation to their control. Applied Biology, 5: 349-393.
  98. Shi W., Gong S., Zeng F., Xue M., Yang L., Yu D. (2016): Sexual reproduction and detection of mating-type of Blumeria graminis f. sp. tritici populations. Acta Phytopathologica Sinica, 46: 645-652.
  99. Singh D., Sharma A., Sharma I., Singh D., Rana S., Upadhyay S., Singh K., Kumar J., Srivastava K., Bhardwaj S., Prashar M., Gangwar O., Jain S., Pant S., Brahma R., Kumar J., Singh K., Devlash R., Prasad A., Dodan D. (2016): Identification of resistance sources against powdery mildew (Blumeria graminis) of wheat. Indian Phytopathology, 69: 413-415.
  100. Singrün Ch., Hsam S., Zeller F., Wenzel G. (2004): Localization of a novel recessive powdery mildew resistance gene from common wheat line RD30 in the terminal region of chromosome 7AL. Theoretical and Applied Genetics, 109: 210-214. Go to original source... Go to PubMed...
  101. Sun H., Hu J., Song W., Qiu D., Cui L., Wu P., Zhang H., Liu H., Yang L., Qu Y., Li T., Li T., Cheng W., Zhou Y., Liu Z., Li J., Li H. (2018): Pm61: a recessive gene for resistance to powdery mildew in wheat landrace Xuxusanyuehuang identified by comparative genomics analysis. Theoretical and Applied Genetics, 131: 2085-2097. Go to original source... Go to PubMed...
  102. Sun X., Liu D., Zhang H., Huo N., Zhou R., Jia J. (2006): Identification and mapping of two new genes conferring resistance to powdery mildew from Aegilops tauschii (Coss.) Schmal. Journal of Integrative Plant Biology, 48: 1204-1209. Go to original source...
  103. Tan Ch., Li G., Cowger Ch., Carver B., Xu X. (2018): Characterization of Pm59, a novel powdery mildew resistance gene in Afghanistan wheat landrace PI 181356. Theoretical and Applied Genetics, 131: 1145-1152. Go to original source... Go to PubMed...
  104. Tomkowiak A., Kurasiak-Popowska D., Grynia J., Nawracała J., Mikołajczyk S., Weigt D., Niemann J., Kiel A. (2017): Evaluation of the usefulness of molecular markers Xgwm205, Xcfd81, Whs350 for the identification of resistance gene Pm2 to powdery mildew (Blumeria graminis f. sp. tritici) in wheat cultivars of different origins. Progress in Plant Protection, 57: 146-152. Go to original source...
  105. Tratwal A., Bocianowski J. (2014): Blumeria graminis f. sp. hordei virulence frequency and the powdery mildew incidence on spring barley in the Wielkopolska province. Journal of Plant Protection Research, 54: 28-35. Go to original source...
  106. Tratwal A., Jakubowska M. (2004): Ocena przydatności systemów wspomagania decyzji o ochronie pszenicy ozimej przed mączniakiem prawdziwym na terenie Wielkopolski. Postępy w Ochronie Roślin, 44: 1169-1172.
  107. Troch V., Audenaert K., Bekaert B., Höfte M., Haesaert G. (2012): Phylogeography and virulence structure of the powdery mildew population on its 'new' host triticale. BMC Evolutionary Biology, 12: 76. doi:10.1186/1471-2148-12-76 Go to original source... Go to PubMed...
  108. Troch V., Audenaert K., Wyand R., Haesaert G., Höfte M., Brown J. (2014): Formae speciales of cereal powdery mildew: close or distant relatives? Molecular Plant Pathology, 15: 304-314. Go to original source... Go to PubMed...
  109. Tyrka M., Chełkowski J. (2003): Enhancing the resistance of triticale by using genes from wheat and rye. Journal of Applied Genetics, 45: 283-295.
  110. Ullah K., Li N., Shen T., Wang P., Tang W., Ma S., Zhang Z., Jia H., Kong Z., Ma Z. (2018): Fine mapping of powdery mildew resistance gene Pm4e in bread wheat (Triticum aestivum L.). Planta, 248: 1319-1328. Go to original source... Go to PubMed...
  111. Walczak F., Gałęzewski M., Jakubowska M., Skorupska A., Tratwal A., Wojtowicz A., Złotowski J. (2009): Zespół Zakładu Metod Prognozowania i Rejestracji Agrofagów oraz Zakład Badania Gryzoni Polnych IOR w Poznaniu. Available at http://www.ior.poznan.pl/aktualizacja/data/pliki/263_Stan_fitosanitarny_2007.pdf
  112. Walker A., Bouguennec A., Confais J., Morgant G., Leroux P. (2011): Evidence of host-range expansion from new powdery mildew (Blumeria graminis) infections of triticale (× Triticosecale) in France. The Plant Pathology Journal, 60: 207-220. Go to original source...
  113. Wang Z., Li H., Zhang D., Guo L., Chen J., Chen Y., Wu Q., Xie J., Zhang Y., Sun Q., Dvorak J., Luo M., Liu Z. (2015): Genetic and physical mapping of powdery mildew resistance gene MlHLT in Chinese wheat landrace Hulutou. Theoretical and Applied Genetics, 128: 365-373. Go to original source... Go to PubMed...
  114. Wicker T., Oberhaensli S., Parlange F., Buchmann J., Shatalina M., Roffler S., Ben-David R., Doležel J., Šimkova H., SchulzeLefert P., Spanu P., Bruggmann R., Amselem J., Quesneville H., Ver Loren van Themaat E., Paape T., Shimizu K., Keller B. (2013): The wheat powdery mildew genome shows the unique evolution of an obligate biotroph. Nature Genetics, 45: 1092-1096. Go to original source... Go to PubMed...
  115. Wiese M. (1987): Compendium of Wheat Diseases. 2nd Ed., St. Paul, APS Press.
  116. Wójtowicz A., Wójtowicz M., Ratajkiewicz H., Pasternak M. (2017): Prognoza zmian czasu inkubacji sprawcy rdzy brunatnej pszenicy w reakcji na przewidywane ocieplenie klimatu. Fragmenta Agronomica, 34: 197-207.
  117. Wolfe M., Schwarzbach E. (1975): The use of virulence analysis in cereal mildews. Phytopathologische Zeit, 82: 297-307. Go to original source...
  118. Yang L., Zhang X., Zhang X., Wang J., Luo M., Yang M., Wang H., Xiang L., Zeng F., Yu D., Fu D., Rosewarne G. (2017): Identification and evaluation of resistance to powdery mildew and yellow rust in a wheat mapping population. PLoS ONE 12(5): e0177905. doi:10.1371/journal.pone.0177905 Go to original source... Go to PubMed...
  119. Yao G., Zhang J., Yang L., Xu H., Jiang Y., Xiong L., Zhang C., Zhang Z., Ma Z., Sorrells M. (2007): Genetic mapping of two powdery mildew resistance genes in einkorn (Triticum monococcum L.) accessions. Theoretical and Applied Genetics, 114: 351-358. Go to original source... Go to PubMed...
  120. Zadoks J. (1967): International dispersal of funöi. Netherlands Journal of Plant Pathology, 73: 61-80. Go to original source...
  121. Zeller F., Lutz J., Reimlein E., Limpert E., Koening J. (1993): Identification of powdery mildew resistance genes in common wheat (Triticum aestivum L.) II. French cultivars. Agronomie, 13: 201-207. Go to original source...

This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.