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1997 | 38 | 1 |

Tytuł artykułu

Characterization of the suppressor gene of powdery mildew resistance gene Pm8 in common wheat [Triticum aestivum L.] cv. Regina

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The Czech winter wheat cv. Regina which does not possess specific genes for powdery mildew resistance except Pm5 was crossed with the cvs. Florida, Tjelvar, Agra, Olymp and Sabina, all possessing T1BL-1RS and the dominant suppressor SuPm8, with Riebesel 47/51 possessing substitution 1R-1B and SuPm8 and with the T1BL-1RS cvs. Sparta, Iris, Mona without SuPm8. Powdery mildew isolates avirulent on Pm8 and virulent on other Pm genes were used in the trials. Tests for resistance were carried out either on seedlings at the first leaf stage or on detached leaves cultured on benzimidazolagar. No segregation for resistant plants in F₂ of all crosses of the cv. Regina with cultivars possessing T1BL-1RS and SuPm8 indicates that Regina has SuPm8. The segregation ratio 3 resistant: 13 susceptible in the F₂ population of crosses between the cv. Regina and cultivars possessing T1BL-1RS and no SuPm8 also confirms the presence of SuPm8 in the cv. Regina. The obtained results also indicate that expression of Pm2 and Pm4b is not affected by SuPm8 and that SuPm8 does not affect stem rust resistance gene Sr31 located on 1RS segment.

Wydawca

-

Rocznik

Tom

38

Numer

1

Opis fizyczny

p.11-17

Twórcy

autor
  • Research Institute of Crop Production, Drnovska 507, Cz-161 06 Praha 6-Ruzyne, Czech Republic
autor
  • Research Institute of Crop Production, Drnovska 507, Cz-161 06 Praha 6-Ruzyne, Czech Republic
autor
  • Institute of Agronomy and Plant Breeding, Technical University Munchen, Freising-Weihenstephan, Germany

Bibliografia

  • Bai D., Knott D.R. (1992). Suppression of rust resistance in bread wheat (Triticum aestivum L.) by D-genome chromosomes. Genome 35: 276-282.
  • Bartoš P. (1993). Chromosome 1R of rye in wheat breeding. Plant Breed. Abstr. 63: 1203-1211.
  • Bartoš P., Stuchlíková E., Neuhäuslová Z. (1990). Genetika rezistence československých odrůd pšenice s translokací 1BL/1RS ke rzi travní (Puccinia graminis Pers. subsp. graminis). Genet. Šlecht. 26 (1): 23-30.
  • Friebe B., Heun M., Bushuk W. (1989). Cytological characterization, powdery mildew resistance and storage protein composition of tetraploid and hexaploid 1BL/1RS wheat-rye translocation lines. Theor. Appl. Genet. 78: 425-432
  • Hanušová R. (1992). Powdery mildew resistance of wheat cultivars with 1B/1R translocation/substitution. Proc. 8th Europ. Medit. Cereal Rusts Mildew Conf., Vortr. Pflanzenzücht. 24: 237-238.
  • Hanušová R., Hsam S.L.K., Bartoš P., Zeller F.J. (1996). Suppression of powdery mildew resistance gene Pm8 in (Triticum aestivum L.) common wheat cultivars carrying wheat-rye translocation T1BL-1RS. Heredity 77 383-387.
  • Jorgensen J.H. (1996). Effect of three suppressors on the expression of powdery mildew resistance genes in barley. Genome 39(3): 492-498.
  • Kerber E.R. (1983). Suppression of rust resistance in amphiploids of Triticum. Proc. 6th Int. Wheat Genet. Symp., Kyoto, Japan: 813-817.
  • Kerber E.R., Aung T. (1995). Confirmation of a nonsuppressor mutation of stem rust resistance in Canthatch common wheat. Crop Sci. 25: 743-744.
  • Kerber E.R., Green G.J. (1980). Suppression of stem rust resistance in hexaploid wheat cv. Canthatch by chromosome 7DL. Can. J. Bot. 58: 1347-1350
  • Košner J., Bartoš P. (1983a). Analýza dědičnosti rezistence pšenice odrůdy Slavia ke rzi travní rase 11. Genet. Šlecht. 19(1): 1-12.
  • Košner J., Bartoš P. (1983b). Analýza dědičnosti rezistence pšenice odrůdy Slavia ke rzi travní rase 21. Genet. Šlecht. 19(2): 87-94.
  • Lutz J., Limpert E., Bartoš P., Zeller F.J. (1992). Identification of powdery mildew resistance genes in common wheat (Triticum aestivum L.) I. Czechoslovakian cultivars. Plant Breed. 108: 33-39.
  • Ren S.X., McIntosh R.A., Lu Z.J. (1996). Genetic suppression of the cereal rye derived gene Pm8 for resistance to powdery mildew in wheat. Euphytica (in press).
  • Singh N.K., Shepherd K.W., McIntosh R.A. (1990). Linkage mapping of genes for resistance fo leaf, stem and stripe rusts and ω-secalins on the short arm of rye chromosome 1R. Thcor. App. Genet. 80: 609-616.
  • Villareal R.L., Mujeeb-Kazi A., Rajaram S., Del Toro E. (1991). The effects of chromosome 1B/1R translocation on the yield potential of certain spring wheats (Triticum aestivum L.). Plant Breed. 106: 77-81.
  • Villareal R.L., Del Toro E., Mujeeb-Kazi A., Rajaram S. (1995). The 1BL/1RS chromosome translocation effect on yield characteristics in a Triticum aestivum L. cvs. Plant Breed. 114(6): 497-500.
  • Zeller F.J., Günzel G., Fischbeck G., Gerstenkorn P., Weipert D., (1982). Veränderungen der Backeigenschaften des Weizens durch die Weizen-Roggcn-Chromosomentranslokation 1B/1R. Getreide Mehl Brot 36: 141-143.
  • Zeller F.J., Hsam S.L.K. (1996). Chromosomal location of a gene suppressing powdery mildew resistance genes Pm8 and Pml7 in common wheat (Triticum aestivum L. em. Thell.). Theor. Appl. Genet. 93: 38-40.
  • Zeller F.J., Lutz J., Remlein E.I., Limpert E., Koenig J. (1993). Identification of powdery mildew resistance genes in common wheat (Triticum aestivum L.). II. French cultivars. Agronomie 13: 201-207.

Typ dokumentu

Bibliografia

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