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marker-assisted selection in wheat - ictsd

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Chapter 9 – Molecular <strong>marker</strong>-<strong>assisted</strong> <strong>selection</strong> for resistance to pathogens <strong>in</strong> tomato 163plant disease resistance genes and lies embedded with<strong>in</strong> the tomato Pto k<strong>in</strong>ase gene cluster. Cell86: 123–133.Sandbr<strong>in</strong>k, J.M., van-Ooijen, J.W., Purimahua, C.C., Vriel<strong>in</strong>k, M., Verkerk, R., Zabel, P. &L<strong>in</strong>dhout, P. 1995. Localization of genes for bacterial canker resistance <strong>in</strong> Lycopersicon peruvianumus<strong>in</strong>g RFLPs. Theor. Appl. Genet. 90: 444–450.Sarfatti, M., Abu-Abied, M., Katan, J. & Zamir, D. 1991. RFLP mapp<strong>in</strong>g of I1, a new locus <strong>in</strong>tomato conferr<strong>in</strong>g resistance to Fusarium oxysporum f. sp. lycopersici race 1. Theor. Appl. Genet.80: 22–26.Scott, J.W. 2005. Perspectives on tomato disease resistance breed<strong>in</strong>g: past, present, and future. ActaHort. 695: 217–224.Sobir, Ohmori T., Murata, M. & Motoyoshi, F. 2000. Molecular characterization of the SCAR <strong>marker</strong>stightly l<strong>in</strong>ked to the Tm-2 locus of the genus Lycopersicon. Theor. Appl. Genet. 101: 64–69.Stamova, B.S. & Chetelat, R.T. 2000. Inheritance and genetic mapp<strong>in</strong>g of cucumber mosaic virusresistance <strong>in</strong>trogressed from Lycopersicon chilense <strong>in</strong>to tomato. Theor. Appl. Genet. 101: 527–537.Stevens, M.R., Lamb, E.M. & Rhoads, D.D. 1995. Mapp<strong>in</strong>g the Sw-5 locus for tomato spotted wildvirus resistance <strong>in</strong> tomatoes us<strong>in</strong>g RAPD and RFLP analyses. Theor. Appl. Genet. 90: 451–456.Tanksley, S.D. & Costello, W. 1991. The size of L. pennellii chromosome 7 segment conta<strong>in</strong><strong>in</strong>g the I-3gene <strong>in</strong> tomato breed<strong>in</strong>g l<strong>in</strong>es measured by RFLP prob<strong>in</strong>g. Rep. Tomato Genet. Coop. 41: 60.Tanksley, S.D., Young, N.D., Paterson, A.H. & Bonierbale, M.W. 1989. RFLP mapp<strong>in</strong>g <strong>in</strong> plantbreed<strong>in</strong>g: new tools for an old science. BioTech. 7: 257–264.Thoquet, P., Olivier, J., Sperisen, C., Rogowsky, P., Laterrot, H. & Grimsley, N.H. 1996.Quantitative trait loci determ<strong>in</strong><strong>in</strong>g resistance to bacterial wilt <strong>in</strong> tomato cultivar Hawaii 7996. Mol.Plant-Microbe Interact. 9: 826–836.Vakalounakis, D.J., Laterrot, H., Moretti, A., Ligoxigakis, E.K. & Smardas, K. 1997. L<strong>in</strong>kagebetween Fr-1 (Fusarium oxysporum f.sp. radici-lycopersicy resistance) and Tm-2 (tobacco mosaicvirus resistance-2) loci <strong>in</strong> tomato (Lycopersicon esculentum). Ann. Appl. Biol. 130: 319–323.van der Biezen, E.A., Glagotlkaya, T. & Overdu<strong>in</strong>, B. 1995. Inheritance and genetic mapp<strong>in</strong>g ofresistance to Alternaria alternata f. sp. lycopersici <strong>in</strong> Lycopersicon pennellii. Mol. Gen. Genet. 247:453–461.van Heusden, A.W., Koornneef, M., Voorrips, R.E., Bruggemann, W., Pet, G., Vriel<strong>in</strong>k-vanG<strong>in</strong>kel, R., Chen, X. & L<strong>in</strong>dhout, P. 1999. Three QTLs from Lycopersicon peruvianum confer ahigh level of resistance to Clavibacter michiganensis subsp. michiganensis. Theor. Appl. Genet. 99:1068–1074.Varshney, R.K., Graner, A. & Sorrells, M.E. 2005. Genomics-<strong>assisted</strong> breed<strong>in</strong>g for crop improvement.Trends Plant Sci. 10: 621–630.Williamson, V.M., Ho, J-Y., Wu, F.F., Miller, N. & Kaloshian, I. 1994. A PCR-based <strong>marker</strong> tightlyl<strong>in</strong>ked to the nematode resistance, Mi, <strong>in</strong> tomato. Theor. Appl. Genet. 87: 757–763.Yaghoobi, J., Kaloshian, I., Wen, Y. & Willimson, V.M. 1995. Mapp<strong>in</strong>g of a new nematode resistancelocus <strong>in</strong> Lycopersicon peruvianum. Theor. Appl. Genet. 91: 457–464.Yang, W., Bai, X., Kabelka, E., Eaton, C., Kamoun, S., van der Knapp, E. & Francis, D. 2004.Discovery of s<strong>in</strong>gle nucleotide polymorphisms <strong>in</strong> Lycopersicon esculetum by computer aided analysisof expressed sequence tags. Mol. Breed. 14: 21–34.Young, N.D. & Tanksley, S.D. 1988. Use of isogenic l<strong>in</strong>es and simultaneous prob<strong>in</strong>g to identify DNA<strong>marker</strong>s tightly l<strong>in</strong>ked to the Tm-2 gene <strong>in</strong> tomato. Genetics 120: 579–589.

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