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1997 | 44 | 1 |

Tytuł artykułu

Historia i wykorzystanie w hodowli pszenicy genow karlowatosci pochodzacych od odmiany Norin 10

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Warianty tytułu

Języki publikacji

PL

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EN
The article reviews literature relating to the origin and use of Rht1 and Rht2 dwarfing genes in wheat breeding. Moreover, the article deals with problems encountered by breeders and farmers in breeding, certification of seed and cultivation of wheat with the Rht1 and Rht2 genes.

Wydawca

-

Rocznik

Tom

44

Numer

1

Opis fizyczny

s.63-71,bibliogr.

Twórcy

autor
  • Akademia Rolnicza, Lublin

Bibliografia

  • [1] Alessandroni A., Scalfati M. C. 1973. Early-generation selection for grain yield of dwarf and semidwarf progenies of durum wheat crosses. Proc. 4th Internat. Wheat Genet. Symp. Missouri, Columbia. 475-482.
  • [2] Allan R. E. 1970. Differentiating between two Norin 10/Brevor 14 semidwarf genes in a common genetic background. Seiken Ziho 22: 83-90.
  • [3] Allan R. E. 1975. Relation of Flag Smut Incidence to Semidwarf Growth Habit in Wheat Isolines. Crop Sci. 15: 427-429.
  • [4] Allan R. E. 1980. Influence of Semidwarfism and Genetic Background on Stand Establishment of Wheat. Crop Sci. 20: 634-638.
  • [5] Allan R. E. 1989. Agronomic Comparisons Between Rht1 and Rht2 Semidwarf Genes in Winter Wheat. Crop Sci. 29: 1103-1108.
  • [6] Allan R. E., Vogel O. A., 1963. F₂ Monosomic Analysis of Culm Length in Wheat Crosses Involving Semidwarf Norin 10-Brevor 14 and the Chinese Spring Series. Crop Sci. 3: 538-540.
  • [7] Allan R. E., Vogel O. A., Johnston C. O. 1960. Leaf rust resistance of semidwarf winter wheat selections, its inheritance and association with plant height. Agron. J. 52: 408.
  • [8] Blanco A., Simeone R. 1982. Genetic Control of Gibberellic Acid Insensitivity in Semidwarf Durum wheat (Triticum durum Desf.). Z. Pflanzenzüchtg. 88: 185-190.
  • [9] Börner A., Worland A. J., Plaschke J., Schumann E., Law C. N. 1993. Pleiotropic Effects of Genes for Reduced Height (Rht) and Day-Length Insensitivity (Ppd) on Yield and its Components for Wheat Grown in Middle Europe. Plant Breed. 111: 204-216.
  • [10] Brandle J. E., Knott D. R. 1986. The effect of a gene for semidwarfism (Rht1) on various characters in a spring wheat cross. Can. J. Plant Sci. 66: 529-533.
  • [11] Briggle L. W., Vogel O. A. 1968. Breeding short-stature, disease resistant in the United States. Euphytica Supplement 1: 107-130.
  • [12] Busch R. H., Chamberlain D. D. 1981. Effects of Daylength Response and Semidwarfism on Agronomic Performance of Spring Wheat. Crop Sci. 21 : 57-60.
  • [13] Deckard E. L., Lucken K. A., Joppa L. R., Hammond J. J. 1977. Nitrate Reductase Activity, Nitrogen Distribution, Grain Yield, and Grain Protein of Tall and Semidwarf Near Isogenic Lines of Triticum aestivum and T. turgidum. Crop Sci. 17: 293-296.
  • [14] Feingold S. E., Calderini D. F., Slafer G. A., Andrade F.H. 1990. Grain yield, grain nitrogen concentration and some associated physiological attributes of a semidwarf and tall Argentinian wheat cultivars. Cereal Res. Commun. 18(4): 291-297.
  • [15] Fischer R. A., Quail K. J. 1990. The effect of major dwarfing genes on yield potential in spring wheats. Euphytica 46: 51-56.
  • [16] Gate M. D. 1979. The effects of the Norin 10 dwarfing genes on yield in wheat Procc 5th Internat. Wheat Genet. Symp. New Delhi. 978-987.
  • [17] Gate M. D., Law C. N., Worland A. J. 1975b. The chromosomal location of a major dwarfing gene from Norin 10 in new British semi-dwarf wheats. Heredity 35(3): 417-421.
  • [18] Gate M. D., Marshall G. A. 1976. The chromosomal location of Gail and Rht1 genes for gibberellin insensitivity and semi-dwarfism, in a derivative of Norin 10 wheats. Heredity 37: 283-289.
  • [19] Gale M. D., Youssefian S. 1983. Pleiotropic effects of the Norin 10 dwarfing genes, Rht1 and Rht2, and interactions in response to chlormequat. Procc. of 6th Inetrnat. Wheat Genet. Symp. Kyoto. 271-277.
  • [20] Gate M. D., Youssefian S. 1985. Dwarfing genes in wheat. In: Progress in Plant Breeding. I Ed. G. E. Russell, Butterworths, London. 1-35.
  • [21] Gilliland D. J., Fowler D. B. 1988. Effect of a Rht gene conditioning the semi-dwarf character of winter hardiness in winter wheat (Triticum aestivum L. em Thell). Can. J. Plant Sci. 68: 301-309.
  • [22] Giura A. 1995. Aneuploids in Romanian wheats carrying Rht1 gene. EWAC Newsletter. Procc. Of the 9th EWAC Conference 1994, Gatersleben- Weringerode. 113-115.
  • [23] Gotoh T. 1977. Semidwarf Norin 10 wheat and its contribution to the progress of wheat breeding. Gamma-field Symp. 16: 85-103.
  • [24] Inagaki M., Tahir M. 1991. Effects of Semi-dwarfing Genes Rht1 and Rht2 on Yield in Doubled Haploid Lines of Wheat. Japan. J. Breed. 41: 163-167.
  • [25] Jošt M., Jošt M. 1989. Pedigrees of 142 Yugoslav winter wheat cultivars released from 1967 till 1986. Podravka 7(1): 19-27.
  • [26] Keyes G., Sorrells M. E. 1989. Rht1 and Rht2 Semidwarf Genes Effect on Hybrid Vigor and Agronomic Traits of Wheat. Crop Sci. 29: 1442-1447.
  • [27] Keyes G., Sorrells M. E. 1990. Mutations blocking sensitivity to gibberellic acid promote ethylene induced male sterility in wheat. Euphytica 48: 129-139.
  • [28] Kihara H. 1983. Origin and History of Daruma - a parental variety of Norin 10. Procc. 6th Interant. Wheat Genet. Symp., Kyoto. 13-19.
  • [29] King I. P., Readers. M., Miller T. E. 1988. Exploitation of the cuckoo chromosome (4S¹ ) of Aegilops sharonensis for eliminating segregation for height in semi-dwarf Rht2 bread wheat cultivars. Procc. 7th Internat. Wheat Genet. Symp. Cambridge. 337-341.
  • [30] Laing D. R., Fischer R. A. 1977. Adaptation of semidwarf wheat cultivars to rainfed conditions. Euphytica 26: 129-139.
  • [31] Law C. N., Snape J. W., Worland A. J. 1978. The genetical relationship between height and yield in wheat. Heredity 40(1): 133-151.
  • [32] Lebsock K. L. 1963. Transfer of Norin 10 genes for dwarfness to durum wheat. Crop Sci. 450-451.
  • [33] McClung A. M., Cantrell R. G., Quick J. S., Gregory R. S. 1986. Influence of the Rht1 Semidwarf Gene on Yield, Yield Components, and Grain Protein in Durum Wheat. Crop Sci. 26: 1095-1099.
  • [34] McIntosh R. A. 1973. A catalogue of gene symbols for wheat. Procc. 4th Internat. Wheat Genet. Symp. Missouri, Columbia. 893-973.
  • [35] McIntosh R. A., Hart G. E., Gale M. D. 1991. Catalogue of genesymbols for wheat 1991 supplement. Cereal Res. Commun. 19(4): 491-508.
  • [36] Merkte O. G., Atkins I.M. 1964. Inheritance of Plant Height and Stern Rust Resistance in Wheat, Triticum aestivum L. Crop Sci. 4: 453-454.
  • [37] Miazga D., Worland A. J., Kowalczyk K. 1993. Plejotropowe efekty genów karłowatości Rht w liniach izogenicznych pszenicy Maris Huntsman i Maris Widgeon. Biul. IHAR. 187: 47-57.
  • [38] Nizam Uddin M., Marshall D. R. 1989. Effects of dwarfing genes on yield and yield components under irrigated and rainfed conditions in wheat (Triticum aestivum L.). Euphytica 42: 127-134.
  • [39] Paquet J. 1968. Effects of a selection for semi-dwarfness on the other characters of bread wheat (autumn sown). Euphytica Supplement 1: 131-142.
  • [40] Pepe J. F., Heiner R. E. 1975. Influence of Two Different Dwarfing Sources on Yield and Protein Percentage in Semidwarf Wheat. CropSci. 15: 637-639.
  • [41] Pinthus M. J., Levy A. A. 1984. Genotypic Effects of Height on Grain Yield of Triticum aestivum L. Spring Wheat. Z. Pflanzenzüchtg. 93: 49-55.
  • [42] Reitz L. P., Salmon S. C. 1968. Origin, History, and Use of Norin 10 Wheat. Crop. Sci. 8: 686-689.
  • [43] Singh R. P., Villareal R. L., Rajaram S., Dei Toro E. 1989. Cataloguing dwarfing genes Rht1 and Rht2 in germplasm used by the bread wheat breeding program at CIMMYT. Cereal Res. Commun. 17(3-4): 273-279.
  • [44] Wattal P. N., Asana R. D. 1974. Responses of tall and dwarf varieties of wheat to light intensity. Indian J. agric. Sci. 44(11): 707-711.
  • [45] Winter S. R., Thompson E. K. 1990. Grazing Winter Wheat: I. Response of Semidwarf Cultivars to Grain and Grazed Production System. Agron. 1. 82: 33-37.
  • [46] Worland A. J. 1987. Co-operative studies on the genetics of height in European wheat varieties. EWAC Newsletter. Hungary. 69-82.
  • [47] Worland A. J., Law C. N. 1985. Aneuploidy in semidwarf wheat varieties. Euphytica 34: 317-327.
  • [48] Worland A. J., Law C. N., Petrović S. 1990. Height reducing genes and their importance to Yugoslavian winter wheat varieties. Savremena Poljoprivreda, Zbornik 38(3-4): 245-257.
  • [49] Vogel O. A. 1964. Registration of Gaines wheat. Crop. Sci. 4: 116-117.
  • [50] Vogel O. A., Craddock J. C. jr., Muir C. E., Everson E. H., Rohde C. R. 1956. Semidwarf Growth Habit in Winter Wheat Improvement For the Pacific Northwest. Agron. J. 48: 76-78.

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Bibliografia

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