Identification of a major QTL together with several minor additive or epistatic QTLs for resistance to fire blight in apple in two related progenies

Author:

Calenge F.,Drouet D.,Denancé C.,Van de Weg W. E.,Brisset M.-N.,Paulin J.-P.,Durel C.-E.

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Agronomy and Crop Science,General Medicine,Biotechnology

Reference39 articles.

1. Ahmadi N, Albar L, Pressoir G, Pinel A, Fargette D, Ghesquiere A (2001) Genetic basis and mapping of the resistance to rice yellow mottle virus. III. Analysis of QTL efficiency in introgressed progenies confirmed the hypothesis of complementary epistasis between two resistance QTL. Theor Appl Genet 103:1084–1092

2. Alston FH, Phillips KL, Evans KM (2000) A Malus gene list. Acta Hortic 538:561–570

3. Baldi P, Patocchi A, Zini E, Toller C, Velasco R, Komjanc M (2004) Cloning and mapping of resistance gene homologues in apple. Theor Appl Genet 109:231–239

4. Bonn WG, Van der Zwet T (2000) Distribution and economic importance of fire blight. In: Vanneste J-L (ed) Fire blight: the disease and its causative agent: Erwinia amylovora. CAB Int, Wallingford, pp 37–53

5. Calenge F, Faure A, Drouet D, Parisi L, Brisset M-N, Paulin J-P, Van der Linden CG, Van de Weg WE, Schouten H, Lespinasse Y, Durel C-E (2004a) Genomic organization of resistance factors against scab (Venturia inaqualis), powdery mildew (Podosphaera leucotricha) and fire blight (Erwinia amylovora) in apple. In: Tikhonovitch I, Lugtenberg B, Provorov N (eds) Proc 11th Int Congr Mol Plant-Microbe Interact. Biol Plant Microbe Interact 4:35–39

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