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SodininkyStĖ ir darŽininkyStĖ 27(3)

SodininkyStĖ ir darŽininkyStĖ 27(3)

SodininkyStĖ ir darŽininkyStĖ 27(3)

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5. Belfanti E., Silfverberg-Dilworth E., Tartarini S., Patocchi A., Barbieri M.,Zhu J., Vinatzer B. A., Gianfranceschi L., Gessler C., Sansavini S. 2004. TheHcrVf2 gene from a wild apple confers scab resistance to a transgenic cultivatedvariety. Proceedings of the National Academy of Sciences of the United Statesof America, 101(3): 886–890.6. Benaouf G., Parisi L. 1998. Characterization of Venturia inaequalis pathogenicityon leaf discs of apple trees. European Journal of Plant Pathology, 104: 785–793.7. Benaouf G., Parisi L. 2000. Genetics of host-pathogen relationships between Venturiainaequalis races 6 and 7 and Malus species. Phytopathology, 90(3): 236–242.8. Bolar J. P., Norelli J. L., Harman G. E., Brown S. K., Aldwinckle H. S. 2001.Synergistic activity of endochitinase and exochitinase from Trichoderma atrov<strong>ir</strong>ide(T. harzianum) against the pathogenic fungus (Venturia inaequalis) in transgenicapple plants. Transgenic Res, 10(6): 533–543.9. Boudichevskaia A., Flachowsky H., Fischer C., Hanke V., Dunemann F. 2004.Development of molecular markers for Vr1, a scab resistance factor fromR1<strong>27</strong>40-7A apple. Acta Horticulture, 663: 171–175.10. Bus V., Ranatunga C., Gardiner S., Bassett H., Rikkerink E. 2000. Marker assistedselection for pest and disease resistance in the New Zealand apple-breedingprogramme. Acta Horticulture, 538: 541–547.11. Bus V. G. M., Laurens F. N. D., Van de Weg W. E., Rusholme R. L.,Rikkerink E. H. A., Gardiner S. E., Bassett H. C. M., Kodde L. P., Plummer K. M.2005 A. The Vh8 locus of a new gene-for-gene interaction between Venturia inaequalisand the wild apple Malus sieversii is closely linked to the Vh2 locus inMalus pumila R1<strong>27</strong>40-7 A. New Phytologist, 166(3): 1 035–1 049.12. Bus V. G. M., Rikkerink E. H. A., Van de Weg W. E., Rusholme R. L.,Gardiner S. E., Bassett H. C. M. , Kodde L. P., Parisi L., Laurens F. N. D.,Meulenbroek E. J., Plummer K. M. 2005b. The Vh2 and Vh4 scab resistancegenes in two differential hosts derived from Russian apple R1<strong>27</strong>40-7A map tothe same linkage group of apple. Molecular Breeding, 15(1): 103–116.13. Calenge F., Faure A., Goerre M., Gebhardt C., Van de Weg W. E., Parisi L.,Durel C. E. 2004. Quantitative trait loci (QTL) analysis reveals both broad-spectrumand isolate-specific QTL for scab resistance in an apple progeny challengedwith eight isolates of Venturia inaequalis. Phytopathology, 94(4): 370–379.14. Cheng F. S., Weeden N. F., Brown S. K., Aldwinckle H. S., Gardiner S. E.,Bus V. G. 1998. Development of a DNA marker for V-m, a gene conferring resistanceto apple scab. Genome, 41(2): 208–214.15. Crandall C. S. 1926. Apple breeding at the University of Illinois. IllinoisAgricultural Experimental Station Bulletin, <strong>27</strong>5: 341–600.16. Crosby J. A., Janick J., Pecknold P. C., Korban S. S., Oconnor P. A., Ries S.M., Goffreda J., Voordeckers A. 1992. Breeding Apples for Scab Resistance –1945–1990. Fruit Varieties Journal, 46(3): 145–166.17. Dayton D. F., Shay J. R., Hough L. F. 1953. Apple scab resistance fromR1<strong>27</strong>40-7A, a Russian apple. Proceedings of American Society of HorticultureScience, 62: 334–340.70

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