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marker-assisted selection in wheat - ictsd

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Chapter 3 – Molecular <strong>marker</strong>s for use <strong>in</strong> plant molecular breed<strong>in</strong>g and germplasm evaluation 49Yoshimura, S., Yamanouchi, U., Katayose, Y., Toki, S., Wang, Z.X., Kono, I., Kurata, N., Yano, M.,Iwata, N. & Sasaki, T. 1998. Expression of Xa1, a bacterial blight-resistance <strong>in</strong> rice, is <strong>in</strong>duced by bacterial<strong>in</strong>oculation. Proc. Nat. Acad. Sci. USA 95: 1663–1668.Zane, L., Bargelloni, L. & Atarnello, T.P. 2002. Strategies for microsatellite isolation: a review. Mol.Ecol. 11: 1–16.Zhao, X. & Kochert, G. 1993. Phylogenetic distribution and genetic mapp<strong>in</strong>g of a (GGC)nmicrosatellite from rice (Oryza sativa L.). Plant Mol. Biol. 21: 607–614.Zhang, L.Y., Bernard, M., Leroy, P., Feuillet, C. & Sourdille, P. 2005. High transferability of bread<strong>wheat</strong> EST-derived SSRs to other cereals. Theor. Appl. Genet. 111: 677–687.Zheng, H.G., Babu, R.C., Pathan, M.S., Ali, L., Huang, N., Courtois, B. & Nguyen, H.T. 2000.Quantitative trait loci for root-penetration ability and root thickness <strong>in</strong> rice: comparison of geneticbackgrounds. Genome 43: 53–61.Zietkietkiewicz, E.A.R., Rafalski, A. & Labuda, D. 1994. Genome f<strong>in</strong>gerpr<strong>in</strong>t<strong>in</strong>g by simple sequencerepeat (SSR)-anchored polymerase cha<strong>in</strong> reaction amplification. Genomics 20: 176–183.

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