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marker-assisted selection in wheat

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Chapter 9 – Molecular <strong>marker</strong>-<strong>assisted</strong> <strong>selection</strong> for resistance to pathogens <strong>in</strong> tomato 161Doganlar, S., Dodson, J., Gabor, B., Beck-Bunn, T., Crossman, C. & Tanksley, S.D. 1998 Molecularmapp<strong>in</strong>g of the py-1 gene for resistance to corky root rot (Pyranochaeta lycopersici) <strong>in</strong> tomato.Theor. Appl. Genet. 97: 784–788.Fazio, G., Stevens, M.R., & Scott, J.W. 1999. Identification of RAPD <strong>marker</strong>s l<strong>in</strong>ked to fusariumcrown and root rot resistance (Frl) <strong>in</strong> tomato. Euphytica 105: 205–210.Folkertsma, R.T., Spassova, M.I., Pr<strong>in</strong>s, M., Stevens, M.R., Hille, J. & Goldbach, R.W. 1999.Construction of a bacterial artificial chromosome (BAC) library of Lycopersicon esculentum cv.Stevens and its application to physically map the Sw5 locus. Mol. Breed. 5: 197–207.Foolad, M.R. & Sharma, A. 2005. Molecular <strong>marker</strong>s as <strong>selection</strong> tools <strong>in</strong> tomato breed<strong>in</strong>g. ActaHort. 695: 225–240.Foolad, M.R., Zhang, L.P., Khan, A.A., N<strong>in</strong>o-Liu, D. & L<strong>in</strong>, G.Y. 2002. Identification of QTLs forearly blight (Alternaria solani) resistance <strong>in</strong> tomato us<strong>in</strong>g backcross populations of a Lycopersiconesculentum x L. hirsutum cross. Theor. Appl. Genet. 104: 945–958.Ganal, M.W., Simon, R., Brommonschenkel, S., Arndt, M., Tanksley, S.D. & Kumar, A. 1995.Genetic mapp<strong>in</strong>g of a wide spectrum nematode resistance gene (Hero) aga<strong>in</strong>st Globodera rostochiensis<strong>in</strong> tomato. Mol. Plant-Microbe Interact. 8: 886–891.Gardner, R.G. & Shoemaker, P.B. 1999. “Mounta<strong>in</strong> Supreme” early blight-resistant hybrid tomatoand its parents NC EBR-3 and NC EBR-4 tomato breed<strong>in</strong>g l<strong>in</strong>es. Hort. Sci. 34: 745–746.Griffiths, P.D. & Scott, J.W. 2001. Inheritance and l<strong>in</strong>kage of tomato mottle virus resistance genesderived from Lycopersicon chilense accession LA 1932. J. Am. Soc. Hort. Sci. 126: 462–467.Grube, R.C., Radwanski, E.R. & Jahn, M. 2000. Comparative genetics of disease resistance with<strong>in</strong>the Solanaceae Genetics 155: 873–887.Hanson, P.M., Bernacchi, D., Green, S., Tanksley, S.D. & Muniy-Appa, V. 2000. Mapp<strong>in</strong>g a wildtomato <strong>in</strong>trogression associated with tomato leaf curl virus resistance <strong>in</strong> a cultivated tomato l<strong>in</strong>e. J.Am. Soc. Hort. Sci. 125: 15–20.Huang, C.C., van de Putte, P.M., Haanstra-van der Meer, J.G., Mejer-Dekens, F. & L<strong>in</strong>dhout, P.2000. Characterization and mapp<strong>in</strong>g of resistance to Oidium lycopersicum <strong>in</strong> two Lycopersiconhirsutum accessions: evidence for close l<strong>in</strong>kage of two Ol-genes on chromosome 6. Heredity 85:511–520.Hulbert, S.H., Webb, C.A., Smith, S.M. & Sun, Q. 2001. Resistance gene complexes: evolution andutilization. Ann. Rev. Phytopathol. 39: 285–312.Jones, D.A., Dick<strong>in</strong>son, M.J., Bal<strong>in</strong>t-Kurt, P.J., Dixon, M.S. & Jones, J.D.G. 1993. Two complexresistance loci revealed <strong>in</strong> tomato by classical and RFLP mapp<strong>in</strong>g of Cf-2, Cf-4, Cf-5, and Cf-9genes for resistance to Cladosporium fulvum. Mol. Plant-Microbe Interact. 6: 348–357.Kabelka, E., Franch<strong>in</strong>o, B. & Francio, D.M. 2002. Two loci from Lycopersicon hirsutum LA407confer resistance to stra<strong>in</strong>s of Clavibacter michiganense subsp. michiganensis. Phytopath. 92:504–510.Kawchuck, L.M., Hachey, J. & Lynch, D.R. 1998. Development of sequence characterized DNA<strong>marker</strong>s l<strong>in</strong>ked to a dom<strong>in</strong>ant Verticillium wilt resistance gene <strong>in</strong> tomato. Genome 41: 91–95.Kawchuk, L.M., Hachey, J., Lynch, D.R., Kulcsar, F., van Rooijen, G., Waterer, D.R., Robertson,A., Kokko, E., Byers, R., Howar, R.J., Fischer, R. & Prufer, D. 2001. Tomato Ve disease resistancegenes encode cell surface-like receptors. Proc. Nat. Acad. Sci. USA 98: 6511–6515.Konieczyn, A. & Ausubel, F.M. 1993. A procedure for mapp<strong>in</strong>g Arabidopsis mutations us<strong>in</strong>g codom<strong>in</strong>antecotype-specific PCR-based <strong>marker</strong>s. Plant J. 4: 403–410.

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