Chapter 14 – Marker-<strong>assisted</strong> <strong>selection</strong> <strong>in</strong> Eucalyptus 279Marcucci-Poltri, S.N., Zelener, N., Rodriguez Traverso, J., Gelid, P. & Hopp, H. 2003. Selection ofa seed orchard of Eucalyptus dunnii based on genetic diversity criteria calculated us<strong>in</strong>g molecular<strong>marker</strong>s. Tree Physiol. 23: 625–32.Marques, C.M., Araujo, J.A., Ferreira, J.G., Whetten, R., O’Malley, D.M., Liu, B.H. & Sederoff,R. 1998. AFLP genetic maps of Eucalyptus globulus and E. tereticornis. Theor. Appl. Genet. 96:727–737.Marques, C.M., Vasquez-Kool, J., Carocha, V.J., Ferreira, J.G., O’Malley, D.M., Liu, B.H. &Sederoff, R. 1999. Genetic dissection of vegetative propagation traits <strong>in</strong> Eucalyptus tereticornis andE. globulus. Theor Appl Genet 99: 936–946.Marques, C.M., Brondani, R.P.V., Grattapaglia, D. & Sederoff, R. 2002. Conservation and syntenyof SSR loci and QTLs for vegetative propagation <strong>in</strong> four Eucalyptus species. Theor. Appl. Genet.105: 474–478.Mart<strong>in</strong>, B. & Quillet, J. 1974. The propogation by cutt<strong>in</strong>gs of forest trees <strong>in</strong> the Congo. Bois et Forêtsdes Tropiques 155: 15–33.Mauricio, R. 2001. Mapp<strong>in</strong>g quantitative trait loci <strong>in</strong> plants: uses and caveats for evolutionary biology.Nature Revs. Genet. 2: 370–381.Missiaggia, A.A., Piacezzi, A.L. & Grattapaglia, D. 2005. Genetic mapp<strong>in</strong>g of Eef1, a major effectQTL for early flower<strong>in</strong>g <strong>in</strong> Eucalyptus grandis. Tree Genet. & Genomes 1: 79–84.Moran, G.F. & Bell, J.C. 1983. Eucalyptus. In S.D. Tanksley & T.J. Orton, eds. Isozymes <strong>in</strong> plantgenetics and breed<strong>in</strong>g, pp. 423–441. Amsterdam, Elsevier.Moran, G., Bell, J.C. & Griff<strong>in</strong>, A.R. 1989. Reduction <strong>in</strong> levels of <strong>in</strong>breed<strong>in</strong>g <strong>in</strong> a seed orchard ofEucalyptus regnans F. Muell, compared with natural populations. Silvae Genet. 38: 32–36.Moran, G.F., Thamarus, K.A., Raymond, C.A., Qiu, D., Uren, T. & Southerton, S.G. 2002.Genomics of Eucalyptus wood traits. Ann. For. Sci. 59: 645–650.Myburg, A.A. 2001. Genetic architecture of hybrid fitness and wood quality traits <strong>in</strong> a wide <strong>in</strong>terspecificcross of Eucalyptus tree species. North Carol<strong>in</strong>a State University, Raleigh, NC (PhD thesis;available at www.lib.ncsu.edu/theses/available/etd-20010723-175234).Myburg, A.A. 2004. The International Eucalyptus Genome Consortium (IEuGC): Opportunities andResources for Collaborative Genome Research <strong>in</strong> Eucalyptus. In B. Li, & S. McKeand, eds. Proc.IUFRO Conf. Forest Genet. & Tree Breed<strong>in</strong>g <strong>in</strong> the Age of Genomics: Progress and Future, pp.154–155. Charleston, SC, USA.Myburg, A.A., Griff<strong>in</strong>, A.R., Sederoff, R.R. & Whetten, R.W. 2003. Comparative genetic l<strong>in</strong>kagemaps of Eucalyptus grandis, Eucalyptus globulus and their F1 hybrid based on a double pseudobackcrossmapp<strong>in</strong>g approach. Theor. Appl. Genet. 107: 1028–42.Myburg, A.A., Potts, B., Marques, C.M., Kirst, M., Gion, J.M., Grattapaglia, D. & Grima-Pettenati, J. 2006. Eucalyptus. In C. Kole, ed. Genome mapp<strong>in</strong>g & molecular breed<strong>in</strong>g <strong>in</strong> plantsvolume 7: forest trees. Heidelberg, Berl<strong>in</strong>, New York and Tokyo, Spr<strong>in</strong>ger (<strong>in</strong> press).Neale, D.B. & Savola<strong>in</strong>en, O. 2004. Association genetics of complex traits <strong>in</strong> conifers. Trends PlantSci. 9: 325–330.Nesbitt, K.A., Potts, B.M., Vaillancourt, R.E., West, A.K. & Reid, J.B. 1995. Partition<strong>in</strong>g and distributionof RAPD variation <strong>in</strong> a forest tree species, Eucalyptus globulus (Myrtaceae). Heredity 74:628–637.Nesbitt, K.A., Potts, B.M., Vaillancourt, R.E. & Reid, J.B. 1997. F<strong>in</strong>gerpr<strong>in</strong>t<strong>in</strong>g and pedigree analysis<strong>in</strong> Eualyptus globulus us<strong>in</strong>g RAPDs. Silvae Genet. 46: 6–11.
280Marker-<strong>assisted</strong> <strong>selection</strong> – Current status and future perspectives <strong>in</strong> crops, livestock, forestry and fishOttewell, K.M., Donnellan, S.C., Moran, G.F. & Paton, D.C. 2005. Multiplexed microsatellite<strong>marker</strong>s for the genetic analysis of Eucalyptus leucoxylon, Myrtaceae and their utility for ecologicaland breed<strong>in</strong>g studies <strong>in</strong> other Eucalyptus species. J. Hered. 96: 445–451.Paterson, A.H., Lander, E.S., Hewitt, J.D., Peterson, S., L<strong>in</strong>coln, S.E. & Tanksley, S.D. 1988.Resolution of quantitative traits <strong>in</strong>to Mendelian factors by us<strong>in</strong>g a complete l<strong>in</strong>kage map of restrictionfragment length polymorphisms. Nature 335: 721–726.Poke, F.S., Vaillancourt, R.E., Potts, B.M. & Reid, J.B. 2005. Genomic research <strong>in</strong> Eucalyptus.Genetica 125: 79–101.Potts, B.M. 2004. Genetic improvement of eucalypts, pp 1480–1490. In J. Burley, J. Evans, & J.A.Youngquist, eds. Encyclopedia of forest science. Oxford, UK, Elsevier Science.Potts, B.M. & Dungey, H.S. 2004. Hybridisation of Eucalyptus: key issues for breeders and geneticists.New Forests 27: 115–138.Potts, B.M., Vaillancourt, R.E., Jordan, G.J., Dutkowski, G.W., Costa e Silva, J., McK<strong>in</strong>non, G.E.,Steane, D.A., Volker, P.W., Lopez, G.A., Apiolaza, L.A., Li, Y., Marques, C. & Borralho, N.M.G.2004. Exploration of the Eucalyptus globulus gene pool. In M. Tomé ed. Eucalyptus <strong>in</strong> a chang<strong>in</strong>gworld, pp. 46–61. Aveiro, Portugal, Instituto Investigação de Floresta e Papel (RAIZ).Pryor, L.D. 1976. The biology of eucalypts. London, Edward Arnold.Pryor, L.D. & Johnson, L.A.S. 1971. A classification of the eucalypts. Canberra, Australian NationalUniversity Press.Rezende, G.D.S.P., Bertolucci, F.L.G. & Ramalho, M.A.P. 1994. Eficiência da seleção precoce narecomendação de clones de eucalipto avaliados no norte do Espírito Santo e sul da Bahia. Cerne1: 45–50.Ribeiro, V.J., Bertolucci, F.L.G. & Grattapaglia, D. 1997. RAPD <strong>marker</strong> - guided mat<strong>in</strong>gs <strong>in</strong> a reciprocalrecurrent <strong>selection</strong> program of Eucalyptus. Proc. Internat. IUFRO Conf. Eucalyptus Genet.& Silvicult., pp. 156–160. Salvador, Brazil.Sanchez, J.R. 2002. Panel de tecnologia, pasta y papel. In Graficas Diumaró, ed. Socioeconomia, patologia,tecnologia y sostenibilidade del eucalipto, pp. 187–192. Brazil, Universidad de Vigo.Schimleck, L.R., Michell, A.J. & V<strong>in</strong>den, P. 1996. Eucalypt wood classification by NIR spectroscopyand pr<strong>in</strong>cipal components analysis. Appita J. 49: 319–324.Shepherd, M., Chaparro, J.X. & Teasdale, R. 1999. Genetic mapp<strong>in</strong>g of monoterpene composition<strong>in</strong> an <strong>in</strong>terspecific eucalypt hybrid. Theor. Appl. Genet. 99: 1207–1215.Shepherd, M. & Jones, M. 2005. Molecular <strong>marker</strong>s <strong>in</strong> tree improvement: Characterisation and use<strong>in</strong> Eucalyptus,. In H. Lörz & G. Wenzel, eds. Molecular <strong>marker</strong> systems <strong>in</strong> plant breed<strong>in</strong>g and cropimprovement, pp 399–409. Heidelberg, Germany, Spr<strong>in</strong>ger-Verlag.Steane, D.A., Jones, R.C. & Vaillancourt, R.E. 2005. A set of chloroplast microsatellite primers forEucalyptus, Myrtaceae. Mol. Ecol. Notes 5: 538–541.Steane, D.A., Vaillancourt, R.E., Russell, J., Powell, W., Marshall, D. & Potts, B.M. 2001.Development and characterization microsatellite loci <strong>in</strong> Eucalyptus globulus (Myrtacea). SilvaeGenet. 50: 89.Strauss, S.H., Lande, R. & Namkoong, G. 1992. Obstacles to molecular-<strong>marker</strong>-aided <strong>selection</strong> <strong>in</strong>forest trees. Can. J. For. Res. 22: 1050–1061.Stuber, C.W., Moll, R.H., Goodman, M.M., Schaffer, H.E. & Weir, B.S. 1980. Allozyme frequencychanges associated with <strong>selection</strong> for <strong>in</strong>creased gra<strong>in</strong> yield <strong>in</strong> maize. Genetics 95: 225–236.Tanksley, S.D. 1993. Mapp<strong>in</strong>g polygenes. Ann. Rev. Genet. 27: 205–233.
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iiiContentsAcknowledgementsForeword
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Section v - marker-assisted selecti
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viiForewordSince almost the beginni
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ixAbbreviations and acronymsAATFAB-
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xiFIVIMSFNPFSCFSILGABIGASGCAGCPGDPG
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xiiiOBMOECDOIEOPVPAGEPBRsPCRPGRFAPI
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xvContributorsAmalia BaroneProfesso
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xviiElcio Perpétuo GuimarãesSenio
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xixAndrea SonninoSenior Agricultura
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Chapter 1Marker-assisted selection
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This book provides a comprehensive