Warianty tytułu
Języki publikacji
Abstrakty
Twórcy
autor
- Department of Plant Breeding and Biotechnology, Institute of Soil Science and Plant Cultivation – National Research Institute, Czartoryskich 8, 24–100 Pulawy, Poland
autor
Bibliografia
- Berbeć A., 2008. Znaczenie użytkowe i wartość kombinacyjna nowych linii ustalonych i mieszańców tytoniu typu Virginia. Studia i Raporty IUNG-PIB, 13: 51-61.
- Berbeć A., and Trojak-Goluch A., 2004. „Attempts to breed resistance to Chalara elegans into Polish flue-cured tobacco cultivars. PPOST 08. CORESTA Congress 2004 Kyoto, Japan.
- Brown J.S., and Wernsman E.A., 1982. Nature of reduced productivity of anther-derived dihaploid lines of flue-cured tobacco. Crop Sci., 22: 1-5.
- Burk L.G., and Chaplin J.F., 1980. Variation among anther-derived haploids from a multiple disease-resistant tobacco hybrid. Crop Sci., 20: 334-338.
- Czubacka A., and T. Doroszewska, 2004. Obtaining doubled haploid transgenic tobacco lines by the tissue culture method. Biotechnol., 2: 37-45.
- Haji H.M., and Brandle J.E., 2001. Evaluation of host resistance and soil fumigation for the management of black root rot of tobacco in Ontario. Plant Dis., 85: 1145-1148.
- Hamada K., Inoue M., Takanaka A., and Watanabe H., 2001. Potato Virus Y-resistance in the progeny of haploid mutants obtained by the culture of N. tabacum L. anthers exposed to ion beams. Plant Biotechnol., 14: 251-257.
- Julio E., Verrier J-L., and Dorlhac de Borne F., 2006. Development of SCAR markers linked to three disease resistances based on AFLP within Nicotiana tabacum L. Theor. Appl. Genet., 112: 335-346.
- Legg P.D., Litton C.C., and Collins G.B., 1981. Effect of Nicotiana debneyi black root rot resistance factor on agronomic and chemical traits in burley tobacco. Theor. Appl. Genet., 60: 365-368.
- Linsmayer E.M., Skoog F., 1965. Organic growth factor require-ments of tobacco tissue cultures. Physiol. Plantarum, 18: 100-127.
- Lloyd R., 1975.Tissue culture as a means of circumventing lethality in an interspecific Nicotiana hybrid. Tob. Sci., 19: 4-6.
- Samek, D., and Jankowski F., 1987. Studies on the method of evaluating the degree of susceptibility of tobacco varieties to black root rot (Thielaviopsis basicola Ferr.) under greenhouse conditions. Biul. CLPT, 1-4: 91-104.
- Suggs C.W., Beeman J.F. and Splinter W.E., 1960. Physical properties of green Virginia-type tobacco leaves. Part III. Relation of leaf length and width to leaf area. Tob. Sci., 4: 194-197.
- Trojak-Goluch A., and Berbeć A., 2005. Potential of Nicotiana glauca (Grah.) as a source of resistance to black root rot Thielaviopsis basicola (Berk. and Broome) Ferr. in tobacco improvement. Plant Breed., 124: 507-510.
- Walker D. R., and Aycock M. K., 1994. Development of anther-derived dihaploids to combine disease resistance in Maryland tobacco. Crop Sci., 34: 335-338.
- Wilkinson C.A., Rufty R.C., and Shew H.D., 1991. Inheritance of partial resistance to black root rot in burley tobacco. Plant Dis., 75: 889-892.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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