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K Järve Department of Plant Genetics, Institute of Experimental Biology Estonian Agricultural University, Harku, Estonia

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I. Jakobson Department of Plant Genetics, Institute of Experimental Biology Estonian Agricultural University, Harku, Estonia

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T. Enno Department of Plant Genetics, Institute of Experimental Biology Estonian Agricultural University, Harku, Estonia

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Timopheevii wheats are discussed as donors for improving the disease resistance of common wheat. Attention is paid to the comparison of the morphological and chromosomal characteristics of Triticum timopheevii and T. militinae, their crossability with T. aestivum and their response to fungal diseases. The possible origin of T. militinae from an introgressive hybridization between T. timopheevii and an unknown species is discussed. Major genes for resistance to various fungal diseases, transferred to common wheat from T. timopheevii, are listed.

  • Skurygina, N. A. 1958: Hybridization of common wheat with Triticum timopheevi Zhuk. Bull. on Appl. Bot., Genet., Breed., 33(1), 134-139 (in Russian).

    'Hybridization of common wheat with Triticum timopheevi Zhuk ' () 33 Bull. on Appl. Bot., Genet., Breed. : 134 -139 .

    • Search Google Scholar
  • Shaider (Enno), T. M. 1989: Variability of meiosis in intra- and interspecific wheat hybrids. D.Sc. Thesis, Institute of Plant Physiology and Genetics, Kiev, 43 p.

  • Navruzbekov, N. A. 1981: Toward the origin of T. militinae Zhuk. et Migusch. p. 121. In: Botanical and genetic resources of Dagestan flora. Makhachkala. (in Russian).

  • Nyquist, N. E. 1963: Inheritance of powdery mildew resistance in hybrids involving a common wheat strain derived from Triticum timopheevii. Crop Sci., 3, 40-43.

    'Inheritance of powdery mildew resistance in hybrids involving a common wheat strain derived from ' () 3 Triticum timopheevii. Crop Sci. : 40 -43 .

    • Search Google Scholar
  • Ozkan, H., Feldman, M. 2001: Genotypic variation in tetraploid wheat affecting homoeologous pairing in hybrids with Aegilops peregrina. Genome, 44, 1000-1006.

    'Genotypic variation in tetraploid wheat affecting homoeologous pairing in hybrids with ' () 44 Aegilops peregrina. Genome : 1000 -1006 .

    • Search Google Scholar
  • Nyquist, N. E. 1962: Differential fertilization in the inheritance of stem rust resistance in hybrids involving a common wheat strain derived from Triticum timopheevii. Genetics, 47, 1109-1124.

    'Differential fertilization in the inheritance of stem rust resistance in hybrids involving a common wheat strain derived from ' () 47 Triticum timopheevii. Genetics : 1109 -1124 .

    • Search Google Scholar
  • Nyquist, N. E. 1957: Monosomic analysis of stem rust resistance of a common strain derived from Triticum timopheevii. Agronomy Journal, 49, 222-223.

    'Monosomic analysis of stem rust resistance of a common strain derived from ' () 49 Triticum timopheevii. Agronomy Journal : 222 -223 .

    • Search Google Scholar
  • Dvorák, J., di Terlizzi, P., Zhang, H. B., Resta, B. 1993: The evolution of polyploid wheats: identification of the A genome donor species. Genome, 36, 21-31.

    'The evolution of polyploid wheats: identification of the A genome donor species ' () 36 Genome : 21 -31 .

    • Search Google Scholar
  • Dyck, P. L. Samborski, D. J. 1968: Host-parasite interactions involving two genes for leaf rust resistance in wheat. pp. 245-250. In: Findlay, K. W., Shepherd, K. W.(eds.), Proc. 3rd Int. Wheat Genet. Symp., Australian Academy of Science, Canberra, Australia.

    , , .

    • Search Google Scholar
  • Dyck, P. L. 1992: Transfer of a gene for stem rust resistance from Triticum araraticum to hexaploid wheat. Genome, 35, 788-792.

    'Transfer of a gene for stem rust resistance from Triticum araraticum to hexaploid wheat ' () 35 Genome : 788 -792 .

    • Search Google Scholar
  • Enno, T., Peusha, H., Timofeyeva, L., Tohver, M., Yakobson, I., Priilinn, O. 1998: Identification of chromosomal translocations in common wheat, derivative of Triticum timopheevii. Acta Agron. Hung., 46, 209-216.

    'Identification of chromosomal translocations in common wheat, derivative of ' () 46 Triticum timopheevii. Acta Agron. Hung. : 209 -216 .

    • Search Google Scholar
  • Feldman, M. 1966: Identification of unpaired chromosomes in F1 hybrids involving T. aestivum and T. timopheevii. Can. J. Genet. Cytol., 8, 144-151.

    'Identification of unpaired chromosomes in F1 hybrids involving T. aestivum and ' () 8 T. timopheevii. Can. J. Genet. Cytol. : 144 -151 .

    • Search Google Scholar
  • Feldman, M. 1977: Historical aspects and significance of the discovery of wild wheats. pp. 121-145. In: Stadler Symp. Vol. 9. University of Missouri, Columbia. pp. 9, 121-145.

    Historical aspects and significance of the discovery of wild wheats , () 121 -145 .

    • Search Google Scholar
  • Friebe, B., Jiang, J. M., Raupp, W. J., McIntosh, R. A., Gill, B. S. 1996: Characterization of wheat alien translocations conferring resistance to diseases and pests: current status. Euphytica, 91, 59-87.

    'Characterization of wheat alien translocations conferring resistance to diseases and pests: current status ' () 91 Euphytica : 59 -87 .

    • Search Google Scholar
  • Gill, B. S., Chen, P. D. 1987: Role of cytoplasm-specific introgression in the evolution of polyploid wheats. Proc. Natl. Acad. Sci. U.S.A., 84, 6800-6804.

    'Role of cytoplasm-specific introgression in the evolution of polyploid wheats ' () 84 Proc. Natl. Acad. Sci. U.S.A. : 6800 -6804 .

    • Search Google Scholar
  • Gill, B. S., Sears, R. G. 1988: The current status of chromosome analysis in wheat. pp. 299-321. In: Gustafson, J. P., Appels, R.(eds.), Chromosome Structure and Function. Plenum, New York-London.

    The current status of chromosome analysis in wheat , () 299 -321 .

  • Gill, K. S., Gill, B. S., Snyder, E. B. 1988: Triticum araraticum chromosome substitutions in common wheat Triticum aestivum cv. Wichita. pp. 87-92. In: Miller, T. E., Koebner, R. M. D.(eds.), Proc. 7th Intern. Wheat Genet. Symp. Cambridge, UK

    , , .

    • Search Google Scholar
  • Gyarfas, J. 1968: Transference of disease resistance from Triticum timopheevii to Triticum aestivum. M.Sc. Thesis. University of Sydney, Australia.

  • Badaeva, E. D., Jiang, J., Gill, B. S. 1995a: Detection of intergenomic translocations with centromeric and noncentromeric breakpoints in Triticum araraticum: mechanism of origin and adaptive significance. Genome, 38, 976-981.

    'Detection of intergenomic translocations with centromeric and noncentromeric breakpoints in Triticum araraticum: mechanism of origin and adaptive significance ' () 38 Genome : 976 -981 .

    • Search Google Scholar
  • Badaeva, E. D., Badaev, N. S., Enno, T. M., Zeller, F. J., Peusha, H. O. 1995b: Chromosome substitution in progeny of hybrids Triticum aestivum x Triticum timopheevii, resistant to brown rust and powdery mildew. Russian J. Genetics, 31, 75-77.

    'Chromosome substitution in progeny of hybrids Triticum aestivum x Triticum timopheevii, resistant to brown rust and powdery mildew ' () 31 Russian J. Genetics : 75 -77 .

    • Search Google Scholar
  • Liu, D. J., Liu, J. Y., Tao, W. J., Chen, P. D. 1998: Molecular markers and breeding wheat for powdery mildew resistance. pp. 128-131. In: Slinkard, A. E. (ed.), Proceedings 9th International Wheat Genetics Symposium Vol. 3, University of Saskatchewan.

    , , .

    • Search Google Scholar
  • Liu, J. Y., Tao, W. J., Liu, D. J., Chen, P. D. 2000: Screening and study of RAPD markers tightly linked to wheat powdery mildew resistance gene Pm2. Yi Chuan Xue Bao, 27, 139-145 (in Chinese).

    'Screening and study of RAPD markers tightly linked to wheat powdery mildew resistance gene ' () 27 Pm2. Yi Chuan Xue Bao : 139 -145 .

    • Search Google Scholar
  • Badaeva, E. D., Prokofieva, Z. D., Bilinskaya, E. N., Obolenkova, L. A., Solomatin, D. A., Zelenin, A. V., Pukhalskyi, V. A. 2000: Cytogenetic analysis on hybrids resistant to yellow rust and powdery mildew obtained by crossing common wheat (Triticum aestivum L., AABBDD) with wheat of the Timopheevi group (AtAtGG). Genetika, 36, 1663-1673 (in Russian).

    'Cytogenetic analysis on hybrids resistant to yellow rust and powdery mildew obtained by crossing common wheat (Triticum aestivum L., AABBDD) with wheat of the Timopheevi group (AtAtGG) ' () 36 Genetika : 1663 -1673 .

    • Search Google Scholar
  • Briggle, L. W. 1966: Transfer of resistance to Erysiphe graminis f. sp. tritici from Khapli emmer and Yuma durum to hexaploid wheat. Crop Science, 6, 459-461.

    'Transfer of resistance to Erysiphe graminis f. sp. tritici from Khapli emmer and Yuma durum to hexaploid wheat ' () 6 Crop Science : 459 -461 .

    • Search Google Scholar
  • Brown-Guedira, G. L., Gill, B. S., Bockus, W. W., Cox, T. S., Hatchett, J. H., Leath, S., Peterson, C. J., Thomas, J. B., Zwer, P. K. 1996: Evaluation of a collection of wild timopheevi wheat for resistance to disease and arthropod pests. Plant Disease, 80, 928-933.

    'Evaluation of a collection of wild timopheevi wheat for resistance to disease and arthropod pests ' () 80 Plant Disease : 928 -933 .

    • Search Google Scholar
  • Chopde, V. P., Deodikar, G. B. 1964: Fertility and chromosome behaviour in hybrids and backcrosses of T. timopheevii with T. dicoccum. Indian J. Genet. Plant Breeding, 24, 9-14.

    'Fertility and chromosome behaviour in hybrids and backcrosses of T. timopheevii with ' () 24 T. dicoccum. Indian J. Genet. Plant Breeding : 9 -14 .

    • Search Google Scholar
  • Dekaprelevich, L. L. 1954: Species, varities and cultivars of Georgian wheats. Proc. Georgian Acad. Sci, 8, 3-61 (in Russian).

    'Species, varities and cultivars of Georgian wheats ' () 8 Proc. Georgian Acad. Sci : 3 -61 .

    • Search Google Scholar
  • Dorofeev, V. F. 1976: Wheats of the World. Kolos, Leningrad. 487 p. (in Russian).

  • Dorofeev, V. F., Filatenko, A. A., Migushova, E. F., Udachin, R. A., Jakubziner, M. M. 1979 Wheat. In: Dorofeev, V. F., Korovina, E. M.(eds.), Flora of Cultivated Plants, Vol. 6: Wheats. Kolos, Leningrad (in Russian).

    Wheat , ().

  • Dvorák, J., McGuire, P. E., Cassidy, B. 1988: Apparent sources of the A genomes of wheats inferred from the polymorphism in abundance and restriction fragment length of repeated nucleotide sequences. Genome, 30, 680-689.

    'Apparent sources of the A genomes of wheats inferred from the polymorphism in abundance and restriction fragment length of repeated nucleotide sequences ' () 30 Genome : 680 -689 .

    • Search Google Scholar
  • Huang, S., Sirikhachornkit, A., Su, X., Faris, J., Gill, B., Haselkorn, R., Gornicki, P. 2002: Genes encoding plastid acetyl-CoA carboxylase and 3-phosphoglycerate kinase of the Triticum/Aegilops complex and the evolutionary history of polyploid wheat. Proc. Natl. Acad. Sci. U.S.A., 99, 8133-8138.

    'Genes encoding plastid acetyl-CoA carboxylase and 3-phosphoglycerate kinase of the Triticum/Aegilops complex and the evolutionary history of polyploid wheat ' () 99 Proc. Natl. Acad. Sci. U.S.A. : 8133 -8138 .

    • Search Google Scholar
  • Jakubziner, M. M. 1969: Immunity of different wheat species. Agricultural Biology, 4, 837-847 (in Russian).

    'Immunity of different wheat species ' () 4 Agricultural Biology : 837 -847 .

  • Lutz, J., Hsam, S. L. K., Limpert, E., Zeller, F. J. 1994: Powdery mildew resistance in Aegilops tauschii Coss. and synthetic hexaploid wheats. Genetic Resources and Crop Evolution, 41, 151-158.

    'Powdery mildew resistance in Aegilops tauschii Coss. and synthetic hexaploid wheats ' () 41 Genetic Resources and Crop Evolution : 151 -158 .

    • Search Google Scholar
  • Lutz, J., Hsam, S. L. K., Limpert, E., Zeller, F. J. 1995: Chromosomal location of powdery mildew resistance genes in Triticum aestivum L. (common wheat). 2. Genes Pm2 and Pm19 from Aegilops squarrosa L. Heredity, 74, 152-156.

    'Chromosomal location of powdery mildew resistance genes in Triticum aestivum L. (common wheat). 2. Genes Pm2 and Pm19 from Aegilops squarrosa L ' () 74 Heredity : 152 -156 .

    • Search Google Scholar
  • Järve, K., Peusha, H. O., Tsymbalova, J., Tamm, S., Devos, K. M., Enno, T. M. 2000: Chromosomal location of a T. timopheevii-derived powdery mildew resistance gene transferred to common wheat. Genome, 43, 377-381.

    'Chromosomal location of a T. timopheevii-derived powdery mildew resistance gene transferred to common wheat ' () 43 Genome : 377 -381 .

    • Search Google Scholar
  • Jiang, J., Gill, B. S. 1994: Different species-specific chromosome translocations in Triticum timopheevii and T. turgidum support the diphyletic origin of polyploid wheats. Chromosome Research, 2, 59-64.

    'Different species-specific chromosome translocations in Triticum timopheevii and T. turgidum support the diphyletic origin of polyploid wheats ' () 2 Chromosome Research : 59 -64 .

    • Search Google Scholar
  • Jorgensen, J. H., Jensen, C. J. 1973: Gene Pm6 for resistance to powdery mildew in wheat. Euphytica, 22, 4-23.

    'Gene Pm6 for resistance to powdery mildew in wheat ' () 22 Euphytica : 4 -23 .

  • Kawahara, T., Tanaka, M. 1981: Intraspecific differentiations in chromosome structures of the wild tetraploid wheats. Wheat Inf. Serv., 52, 33.

    'Intraspecific differentiations in chromosome structures of the wild tetraploid wheats ' () 52 Wheat Inf. Serv. : 33 .

    • Search Google Scholar
  • Khlestkina, E. K., Salina, E. A. 2001: Genome-specific markers of tetraploid wheats and their putative diploid progenitor species. Plant Breeding, 120, 227-232.

    'Genome-specific markers of tetraploid wheats and their putative diploid progenitor species ' () 120 Plant Breeding : 227 -232 .

    • Search Google Scholar
  • Kobylyanskyi, V. D., Fadeeva, T. S. (eds.) 1986: Genetics of Cultivated Plants. Cereals. Agropromizdat, Leningrad, 264 p. (in Russian).

    Genetics of Cultivated Plants. Cereals , () 264 .

  • Leontjev, F. P. 1980: Cytogenetical studies in interspecific hybrids from crosses of Triticum aestivum x Triticum timopheevii Zhuk. Proc. Acad. Sci. USSR, Siberian Branch, Biology, 2, 82-88 (in Russian).

    'Cytogenetical studies in interspecific hybrids from crosses of Triticum aestivum x Triticum timopheevii Zhuk ' () 2 Proc. Acad. Sci. USSR, Siberian Branch, Biology : 82 -88 .

    • Search Google Scholar
  • McIntosh, R. A., Baker, E. P. 1970: Cytogenetic studies in wheat. IV. Chromosome location and linkage studies involving the Pm2 locus for powdery mildew resistance. Euphytica, 19, 71-77.

    'Cytogenetic studies in wheat. IV. Chromosome location and linkage studies involving the Pm2 locus for powdery mildew resistance ' () 19 Euphytica : 71 -77 .

    • Search Google Scholar
  • McIntosh, R. A., Gyarfas, J. 1971: Triticum timopheevii as a source of resistance to wheat stem rust. Z. Pflanzenzücht., 66, 240-248.

    'Triticum timopheevii as a source of resistance to wheat stem rust ' () 66 Z. Pflanzenzücht. : 240 -248 .

    • Search Google Scholar
  • McIntosh, R. A., Luig, N. H. 1973: Recombination between genes for reaction to P. graminis at or near the Sr9 locus. pp. 425-432. In: Sears, E. R., Sears, L. M. S.(eds.), Proc. 4th Int. Wheat Genet. Symp., Univ. of Missouri, Columbia, U.S.A.

  • McIntosh, R. A., Wellings, C. R., Park, R. F. 1995: Wheat Rusts: an Atlas of Resistance Genes. CSIRO, Australia.

  • McIntosh, R. A., Hart, G. E., Devos, K. M., Gale, M. D., Rogers, W. J. 1998: Catalogue of Gene Symbols for Wheat. Proc. 9th Int. Wheat Genet. Symp., Vol. 5. Saskatoon, Saskatchewan, Canada.

  • Meyer, H. 1977: Genetic investigations in wheat, Triticum aestivum L. Part 1. Investigations into the localization of mildew-resistant genes using monosomic analysis. Plant Breeding Abstracts, 47(11323), 960.

    'Genetic investigations in wheat, Triticum aestivum L. Part 1. Investigations into the localization of mildew-resistant genes using monosomic analysis ' () 47 Plant Breeding Abstracts : 960 .

    • Search Google Scholar
  • Migushova, E. F. 1975: About the origin of wheat genomes. Bull. on Appl. Bot., Genet., Breed., 55,(3), 16 (in Russian).

    'About the origin of wheat genomes ' () 55 Bull. on Appl. Bot., Genet., Breed. : 16 .

    • Search Google Scholar
  • Naskidashvili, P. P. 1984: Interspecific Hybridization in Wheat. Kolos, Moscow, 255 p. (in Russian).

  • Peusha, H. O., Shnaider (Enno), T. M. 1983: Crossability of common wheat with related species. Proc. Estonian Acad. Sci., Biology, 32, 241-244 (in Russian).

    'Crossability of common wheat with related species ' () 32 Proc. Estonian Acad. Sci., Biology : 241 -244 .

    • Search Google Scholar
  • Peusha, H. O., Stephan, U., Hsam, S. L. K., Felsenstein, F. G., Enno, T. M., Zeller, F. J. 1995: Identification of genes for resistance to powdery mildew in common wheat (Triticum aestivum L.). IV. Breeding lines derived from wide crosses of Russian cultivars with species T. timopheevii Zhuk., T. militinae Zhuk. et Migush., T. dicoccum (Schrank.) Schuebl., Aegilops speltoides Taush. Russian J. Genetics, 31, 1-7.

    'Identification of genes for resistance to powdery mildew in common wheat (Triticum aestivum L.). IV. Breeding lines derived from wide crosses of Russian cultivars with species T. timopheevii Zhuk., T. militinae Zhuk. et Migush., T. dicoccum (Schrank.) Schuebl., Aegilops speltoides Taush ' () 31 Russian J. Genetics : 1 -7 .

    • Search Google Scholar
  • Ma, Z. Q., Sorrells, M. E., Tanksley, S. D. 1994: RFLP markers linked to powdery mildew resistance genes Pm1, Pm2, Pm3 and Pm4a in wheat. Genome, 37, 871-875.

    'RFLP markers linked to powdery mildew resistance genes Pm1, Pm2, Pm3 and Pm4a in wheat ' () 37 Genome : 871 -875 .

    • Search Google Scholar
  • Maan, S. S., Lucken, K. A. 1968: Male sterile durum: Interaction of Triticum boeoticum and T. monococcum cytoplasms and T. durum nucleus. Wheat Inf. Serv., 26, 5.

    'Male sterile durum: Interaction of Triticum boeoticum and T. monococcum cytoplasms and T. durum nucleus ' () 26 Wheat Inf. Serv. : 5 .

    • Search Google Scholar
  • Mann, S. S., McCracken, E. V. 1969: Cytological stability of common wheats with leaf rust resistance derived from Triticum timopheevii Zhuk. Euphytica, 18, 211-216.

    'Cytological stability of common wheats with leaf rust resistance derived from Triticum timopheevii Zhuk ' () 18 Euphytica : 211 -216 .

    • Search Google Scholar
  • Maestra, B., Naranjo, T. 1999: Structural chromosome differentiation between Triticum timopheevii T. turgidum and T. aestivum. Theor. Appl. Genet., 98, 744-750.

    'Structural chromosome differentiation between Triticum timopheevii T. turgidum and ' () 98 T. aestivum. Theor. Appl. Genet. : 744 -750 .

    • Search Google Scholar
  • Martinez, M., Naranjo, T., Cuadrado, C., Romero, C. 1996: Synaptic behaviour of the tetraploid wheat Triticum timopheevii. Theor. Appl. Genet., 93, 1139-1144.

    'Synaptic behaviour of the tetraploid wheat ' () 93 Triticum timopheevii. Theor. Appl. Genet. : 1139 -1144 .

    • Search Google Scholar
  • McIntosh, R. A. 1983: Genetic and cytogenetic studies involving Lr18 resistance to Puccinia recondita. pp. 777-783. In: Sakamoto, S. (ed.), Proc. 6th Int. Wheat Genet. Symp., Kyoto, Japan.

    , , .

    • Search Google Scholar
  • McIntosh, R. A. 1991: Alien sources of disease resistance in bread wheat. pp. 320-322. In: Sasakuma, T., Kinoshita, T.(eds.), Proc. of Dr. H. Kihara Memorial Int. Symp. on Cytoplasmic Engineering in Wheat. Nuclear and Organellar Genomes of Wheat Species, Kihara Memorial Yokohama Foundation for the Advancement of Life Science, Yokohama, Japan.

    , , .

  • Peusha, H. O., Enno, T. M., Priilinn, O. 1996: Genetic analysis of disease resistance in wheat hybrids, derivatives of Triticum timopheevii and T. militinae. Acta Agron. Hung., 44, 237-244.

    'Genetic analysis of disease resistance in wheat hybrids, derivatives of Triticum timopheevii and ' () 44 T. militinae. Acta Agron. Hung. : 237 -244 .

    • Search Google Scholar
  • Pridham, J. T. 1939: A successful cross between Triticum vulgare and Triticum timopheevii. J. Aust. Inst. Sci., 5, 160-161.

    'A successful cross between Triticum vulgare and ' () 5 Triticum timopheevii. J. Aust. Inst. Sci. : 160 -161 .

    • Search Google Scholar
  • Badaeva, E. D., Shkutina, F. M., Bogdevich, J. N., Badaev, N. S. 1986: Comparative study of Triticum aestivum and Triticum timopheevii genomes using C-banding technique. Plant Syst. Evol., 154, 183-194.

    'Comparative study of Triticum aestivum and Triticum timopheevii genomes using C-banding technique ' () 154 Plant Syst. Evol. : 183 -194 .

    • Search Google Scholar
  • Badaeva, E. D., Boguslavskyi, R. L., Badaev, N. S. 1988: Cytogenetical investigation of cereals. Tetraploid wheats of Zanduri group. Genetika, 24, 1411-1418 (in Russian).

    'Cytogenetical investigation of cereals. Tetraploid wheats of Zanduri group ' () 24 Genetika : 1411 -1418 .

    • Search Google Scholar
  • Badaeva, E. D., Budashkina, E. B., Badaev, N. S., Kalinina, N. P., Shkutina, F. M. 1991: General features of chromosome substitutions in Triticum aestivum x T. timopheevii hybrids. Theor. Appl. Genet., 82, 227-232.

    'General features of chromosome substitutions in Triticum aestivum x T. timopheevii hybrids ' () 82 Theor. Appl. Genet. : 227 -232 .

    • Search Google Scholar
  • Tsunewaki, K., Ogihara, Y. 1983: The molecular basis of genetic diversity among cytoplasms of Triticum and Aegilops. II. On the origin of polyploid wheat cytoplasms as suggested by chloroplast DNA restriction fragment patterns. Genetics, 104, 155-171.

    'The molecular basis of genetic diversity among cytoplasms of Triticum and Aegilops. II. On the origin of polyploid wheat cytoplasms as suggested by chloroplast DNA restriction fragment patterns ' () 104 Genetics : 155 -171 .

    • Search Google Scholar
  • Tsunewaki, K. 1996: Plasmon analysis as the counterpart of genome analysis. pp. 271-300. In: Jauhar, P. (ed.), Methods of Genome Analysis in Plants. CRC Press, Boca Raton, Fl.

    Plasmon analysis as the counterpart of genome analysis , () 271 -300 .

  • Wang, X. Y., Qi, Z. J., Ma. Z. Q., Chen, P. D., Lii, D. J. 2000: Identification of PARD markers tightly linked to wheat powdery mildew resistance gene Pm6.1. Yi Chauan Xue Bao, 27, 1072-1079 (in Chinese).

    'Identification of PARD markers tightly linked to wheat powdery mildew resistance gene ' () 27 Pm6.1. Yi Chauan Xue Bao : 1072 -1079 .

    • Search Google Scholar
  • Watson, I. A., Luig, N. H. 1958: A steinwedel x Triticum timopheevi. derivative. Agron. J., 50, 644.

    'A steinwedel x Triticum timopheevi. derivative ' () 50 Agron. J. : 644 .

  • Zhukovsky, P. M., Migushova, E. F. 1969: A highly immune endemic gene pool for breedings of resistant cultivars of common wheat via distant hybridization. Proc. Agr. Sci., 2, 9-20.

    'A highly immune endemic gene pool for breedings of resistant cultivars of common wheat via distant hybridization ' () 2 Proc. Agr. Sci. : 9 -20 .

    • Search Google Scholar
  • Rodriguez, S., Maestra, B., Perera, E., Diez, M., Naranjo, T. 2000: Pairing affinities of the B-and G-genome chromosomes of polyploid wheats with those of Aegilops speltoides. Genome, 43, 814-819.

    'Pairing affinities of the B-and G-genome chromosomes of polyploid wheats with those of ' () 43 Aegilops speltoides. Genome : 814 -819 .

    • Search Google Scholar
  • Shands, R. G. 1941: Disease resistance of Triticum timopheevii transferred to common winter wheat. Amer. Soc. Agron. Jour., 33, 709-712.

    'Disease resistance of Triticum timopheevii transferred to common winter wheat ' () 33 Amer. Soc. Agron. Jour. : 709 -712 .

    • Search Google Scholar
  • Sharma, H. C. 1995: How wide can a wide cross be? Euphytica, 82, 43-64.

    'How wide can a wide cross be? ' () 82 Euphytica : 43 -64 .

  • Shkutina, F. M., Kalinina, N. P., Usova, T. K. 1988: The role of Triticum aestivum L. variations in the level of introgression of allogenic genetic material into its genome and in the rate of stabilization of the hybrid form. Genetika (Moscow), 24, 98-109 (in Russian).

    'The role of Triticum aestivum L. variations in the level of introgression of allogenic genetic material into its genome and in the rate of stabilization of the hybrid form ' () 24 Genetika (Moscow) : 98 -109 .

    • Search Google Scholar
  • Allard, R. W. 1949: A cytogenetic study dealing with the transfer of genes from Triticum timopheevii to common wheat by backcrossing. Journal of Agricultural Research, 78, 33-64.

    'A cytogenetic study dealing with the transfer of genes from Triticum timopheevii to common wheat by backcrossing ' () 78 Journal of Agricultural Research : 33 -64 .

    • Search Google Scholar
  • Allard, R. W., Shands, R. G. 1954: Inheritance of resistance to stem rust and powdery mildew in cytologically stable spring wheats derived from Triticum timopheevii. Phytopathology, 44, 266-274.

    'Inheritance of resistance to stem rust and powdery mildew in cytologically stable spring wheats derived from ' () 44 Triticum timopheevii. Phytopathology : 266 -274 .

    • Search Google Scholar
  • Atkins, R. E. 1967: Inheritance of reaction to race 15B of wheat stem rust in derivatives of Frontana and Triticum timopheevii Zhuk. Iowa State J. Sci., 41, 305-311.

    'Inheritance of reaction to race 15B of wheat stem rust in derivatives of Frontana and Triticum timopheevii Zhuk ' () 41 Iowa State J. Sci. : 305 -311 .

    • Search Google Scholar
  • Wilson, J. A., Ross, W. M. 1962: Male-sterility interaction of the Triticum aestivum nucleus and Triticum timopheevi cytoplasm. Wheat Inf. Serv., 14, 29-30.

    'Male-sterility interaction of the Triticum aestivum nucleus and Triticum timopheevi cytoplasm ' () 14 Wheat Inf. Serv. : 29 -30 .

    • Search Google Scholar
  • Yamamori, M. 1994: An N-band marker for gene Lr18 for resistance to leaf rust in wheat. Theor. Appl. Genet., 89, 643-646.

    'An N-band marker for gene Lr18 for resistance to leaf rust in wheat ' () 89 Theor. Appl. Genet. : 643 -646 .

    • Search Google Scholar
  • Zhukovsky, P. M. 1928: A new species of wheat. Bull on Appl. Bot., Genet., Breed., 19, 59-66 (in Russian).

    'A new species of wheat ' () 19 Bull on Appl. Bot., Genet., Breed. : 59 -66 .

  • Zhukovsky, P. M. 1971: Cultivated plants and their wild relatives. Systematics, geography, cytogenetics, immunity, origin and use. Kolos, Leningrad, 121 p. (in Russian)

  • Shanider (Enno), T. M. 1986: Meiosis in pentaploid and tetraploid interspecies wheat hybrids F1. Cytology and Genetics (Kiev), 20, 327-330 (in Russian).

    'Meiosis in pentaploid and tetraploid interspecies wheat hybrids F1 ' () 20 Cytology and Genetics (Kiev) : 327 -330 .

    • Search Google Scholar
  • Shaider (Enno), T. M. 1988: Behaviour of meiosis in wheat wide hybrids, obtained using a ph mutant. Cytology and Genetics (Kiev), 22, 18-22 (in Russian).

    'Behaviour of meiosis in wheat wide hybrids, obtained using a ph mutant ' () 22 Cytology and Genetics (Kiev) : 18 -22 .

    • Search Google Scholar
  • Skurygina, N. A. 1984: Highly effective genes for resistance to populations of brown rust and powdery mildew in lines of common wheat derived from T. timopheevii Zhuk., and their identification. Bull. on Appl. Bot. Genet. Breed., 85, 5-13 (in Russian).

    'Highly effective genes for resistance to populations of brown rust and powdery mildew in lines of common wheat derived from T. timopheevii Zhuk., and their identification ' () 85 Bull. on Appl. Bot. Genet. Breed. : 5 -13 .

    • Search Google Scholar
  • Tao, W., Liu, D., Liu, J., Feng, Y., Chen, P. 2000: Genetic mapping of the powdery mildew resistance gene Pm6 in wheat by RFLP analysis. Theor. Appl. Genet., 100, 564-568.

    'Genetic mapping of the powdery mildew resistance gene Pm6 in wheat by RFLP analysis ' () 100 Theor. Appl. Genet. : 564 -568 .

    • Search Google Scholar
  • Tavrin, E. V. 1963: Comparative study of wheat species of Zanduri as a component for crossing with bread and durum wheat. Ph.D. Thesis. Vavilov Institute of Plant Industry, Russian Agricultural Academy (in Russian).

  • Badaeva, E. D., Badaev, N. S., Gill, B. S., Filatenko, A. A. 1994a: Intraspecific karyotype divergence in Triticum araraticum (Poaceae). Plant Syst. Evol., 192, 117-145.

    'Intraspecific karyotype divergence in ' () 192 Triticum araraticum (Poaceae). Plant Syst. Evol. : 117 -145 .

    • Search Google Scholar
  • Badaeva, E. D., Filatenko, A. A., Badaev, N. S. 1994b: Cytogenetic investigation of Triticum timopheevi (Zhuk.) Zhuk. and related species using the C-banding technique. Theor. Appl. Genet., 89, 622-628.

    'Cytogenetic investigation of Triticum timopheevi (Zhuk.) Zhuk. and related species using the C-banding technique ' () 89 Theor. Appl. Genet. : 622 -628 .

    • Search Google Scholar
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Acta Agronomica Hungarica
Language English
Russian
German
French
Size  
Year of
Foundation
1950
Publication
Programme
ceased
Volumes
per Year
 
Issues
per Year
 
Founder Magyar Tudományos Akadémia   
Founder's
Address
H-1051 Budapest, Hungary, Széchenyi István tér 9.
Publisher Akadémiai Kiadó
Publisher's
Address
H-1117 Budapest, Hungary 1516 Budapest, PO Box 245.
Responsible
Publisher
Chief Executive Officer, Akadémiai Kiadó
ISSN 0238-0161 (Print)
ISSN 1588-2527 (Online)

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