Skip to main content
Log in

Genomic Research in Eucalyptus

  • Published:
Genetica Aims and scope Submit manuscript

Abstract

Eucalyptus L’Hérit. is a genus comprised of more than 700 species that is of vital importance ecologically to Australia and to the forestry industry world-wide, being grown in plantations for the production of solid wood products as well as pulp for paper. With the sequencing of the genomes of Arabidopsis thaliana and Oryza sativa and the recent completion of the first tree genome sequence, Populus trichocarpa, attention has turned to the current status of genomic research in Eucalyptus. For several eucalypt species, large segregating families have been established, high-resolution genetic maps constructed and large EST databases generated. Collaborative efforts have been initiated for the integration of diverse genomic projects and will provide the framework for future research including exploiting the sequence of the entire eucalypt genome which is currently being sequenced. This review summarises the current position of genomic research in Eucalyptus and discusses the direction of future research.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

Abbreviations

AFLP:

amplified fragment length polymorphism

BAC:

bacterial artificial chromosome

EST:

expressed sequence tag

ITS:

internal transcribed spacer

LD:

linkage disequilibrium

QTL:

quantitative trait loci

RAPD:

randomly amplified polymorphic DNA

RFLP:

restriction fragment length polymorphism

SNP:

single nucleotide polymorphism

SSCP:

single strand conformation polymorphism

SSR:

simple sequence repeat

References

  • H.A. Agrama T.L. George S.F. Salah (2002) ArticleTitleConstruction of a genome map for Eucalyptus camaldulensis DEHN Silvae Genet. 51 IssueID5–6 201–206

    Google Scholar 

  • M.R. Ahuja (2001) ArticleTitleRecent advances in molecular genetics of forest trees Euphytica 121 IssueID2 173–195 Occurrence Handle10.1023/A:1012226319449

    Article  Google Scholar 

  • E. Alves E.D. Velini M.L.B. Trindade A.C. Cataneo C.L. Marino E.S. Mori I.A. Guerrini E.L. Furtado C.F. Wilcken (2005) ArticleTitleEucalyptus ESTs related to genes for oxidative stress J. Environ. Sci. Heal. B 40 IssueID1 151–157

    Google Scholar 

  • Y. Aritome K.I. Baba T. Itoh T. Hibino (1999) ArticleTitlecDNA analysis of the genes increasing their expression on tension wood formation in Eucalyptus camaldulensis L Wood Res. 86 39–40

    Google Scholar 

  • R.C. Barbour B.M. Potts R.E. Vaillancourt (2003) ArticleTitleGene flow between introduced and native Eucalyptus species: exotic hybrids are establishing in the wild Aust. J. Bot. 51 IssueID4 429–439 Occurrence Handle10.1071/BT03016

    Article  Google Scholar 

  • E. Barros S. Verryn M. Hettasch (2002) ArticleTitleIdentification of PCR-based markers linked to wood splitting in Eucalyptus grandis Ann. For. Sci. 59 IssueID5–6 675–678 Occurrence Handle10.1051/forest:2002055

    Article  Google Scholar 

  • M. Baucher C. Halpin M. Petit-Conil W. Boerjan (2003) ArticleTitleLignin: genetic engineering and impact on pulping Crit. Rev. Biochem. Mol. Biol. 38 IssueID4 305–350 Occurrence Handle14551235

    PubMed  Google Scholar 

  • Beavis, W.D., 1998. QTL analyses: power, precision, and accuracy, pp. 145–162 in Molecular Dissection of Complex Traits, edited by H.A. Patterson. CRC Press, Boca Raton, FL.

  • R. Bhoora D.K. Berger M.J. Wingfield B.D. Wingfield (2003) ArticleTitlePCR cloning by genome walking of a complete polygalacturonase-inhibiting protein gene from Eucalyptus grandis S. Afr. J. Sci. 99 IssueID9–10 410–412

    Google Scholar 

  • F. Bogunic E. Muratovic S.C. Brown S. Siljak-Yakovlev (2003) ArticleTitleGenome size and base composition of five Pinus species from the Balkan region Plant Cell Rep. 22 IssueID1 59–63 Occurrence Handle10.1007/s00299-003-0653-2 Occurrence Handle12835994

    Article  PubMed  Google Scholar 

  • V. Boiffin M. Hodges S. Galvez R. Balestrini P. Bonfante P. Gadal F. Martin (1998) ArticleTitleEucalypt NADP-dependent isocitrate dehydrogenase – cDNA cloning and expression in ectomycorrhizae Plant Physiol. 117 IssueID3 939–948 Occurrence Handle10.1104/pp.117.3.939 Occurrence Handle9662536

    Article  PubMed  Google Scholar 

  • Bossinger, G. & M. Leitch, 2000. Isolation of cambium-specific genes from Eucalyptus globulus Labill., pp. 203–207 in Cell and Molecular Biology of Wood Formation, edited by R. Savidge, J. Barnett & R. Napier. BIOS Scientific Ltd, Oxford, UK.

  • G. Bossinger M.A. Leitch (1999) ArticleTitleHEC1, a Knotted1-type homeobox gene from eucalypts and the molecular control of cambial activity J. Exp. Bot. 50 23–24

    Google Scholar 

  • Boudet, A.M., J. Grima-Pettenati, C. Feuillet & D. Goffner, 1993. Cinnamyl alcohol dehydrogenase from Eucalyptus – molecular cloning, expression and gene characterization. J. Cell. Biochem. Suppl: 26.

  • H.D. Bradshaw D. Grattapaglia (1994) ArticleTitleQTL mapping in interspecific hybrids of forest trees For. Genet. 1 IssueID4 191–196

    Google Scholar 

  • E.M. Brill J.M. Watson (2004) ArticleTitleEctopic expression of a Eucalyptus grandis SVP orthologue alters the flowering time of Arabidopsis thaliana Funct. Plant Biol. 31 IssueID3 217–224 Occurrence Handle10.1071/FP03180

    Article  Google Scholar 

  • R.P.V. Brondani C. Brondani D. Grattapaglia (2002) ArticleTitleTowards a genus-wide reference linkage map for Eucalyptus based exclusively on highly informative microsatellite markers Mol. Genet. Genom. 267 IssueID3 338–347 Occurrence Handle10.1007/s00438-002-0665-6

    Article  Google Scholar 

  • R.P.V. Brondani C. Brondani R. Tarchini D. Grattapaglia (1998) ArticleTitleDevelopment, characterization and mapping of microsatellite markers in Eucalyptus grandis and E. urophylla Theor. Appl. Genet. 97 IssueID5–6 816–827 Occurrence Handle10.1007/s001220050961

    Article  Google Scholar 

  • Brondani, R.P.V. & D. Grattapaglia, 1996a. Comparative mapping in Eucalyptus reveals significant RAPD locus linkage and order conservation between trees and greater meiotic recombination in females, Abstract P235, in Plant Genome IV Conference, San Diego, CA, Jan. 14–18.

  • Brondani, R.P.V. & D. Grattapaglia, 1996b. Mapped RAPD markers are transferable among Eucalyptus trees from the same population, Abstract P236, in Plant Genome IV Conference, San Diego, CA, Jan. 14–18.

  • M.I.H. Brooker (2000) ArticleTitleA new classification of the genus Eucalyptus L’Her. (Myrtaceae) Aust. Syst. Bot. 13 79–148 Occurrence Handle10.1071/SB98008

    Article  Google Scholar 

  • A.M. Brunner V.B. Busov S.H. Strauss (2004) ArticleTitlePoplar genome sequence: functional genomics in an ecologically dominant plant species Trends Plant Sci. 9 IssueID1 49–56 Occurrence Handle10.1016/j.tplants.2003.11.006 Occurrence Handle14729219

    Article  PubMed  Google Scholar 

  • Bundock, P.C., 2003. Genome mapping in Eucalyptus globulus. PhD Thesis, University of Tasmania, Hobart, Australia.

  • P.C. Bundock M. Hayden R.E. Vaillancourt (2000) ArticleTitleLinkage maps of Eucalyptus globulus using RAPD and microsatellite markers Silvae Genet. 49 IssueID4–5 223–232

    Google Scholar 

  • M. Byrne B. Hines (2004) ArticleTitlePhylogeographical analysis of cpDNA variation in Eucalyptus loxophleba (Myrtaceae) Aust. J. Bot. 52 IssueID4 459–470 Occurrence Handle10.1071/BT03117

    Article  Google Scholar 

  • M. Byrne B. Macdonald (2000) ArticleTitlePhylogeography and conservation of three oil mallee taxa, Eucalyptus kochii ssp kochii, ssp plenissima and E. horistes Aust. J. Bot. 48 IssueID3 305–312 Occurrence Handle10.1071/BT99017

    Article  Google Scholar 

  • M. Byrne M.I. Marquez-Garcia T. Uren D.S. Smith G.F. Moran (1996) ArticleTitleConservation and genetic diversity of microsatellite loci in the genus Eucalyptus Aust. J. Bot. 44 331–341

    Google Scholar 

  • M. Byrne G.F. Moran (1994) ArticleTitlePopulation divergence in the chloroplast genome of Eucalyptus nitens Heredity 73 18–28

    Google Scholar 

  • M. Byrne G.F. Moran W.N. Tibbits (1993) ArticleTitleRestriction map and maternal inheritance of chloroplast DNA in Eucalyptus nitens J. Hered. 84 IssueID3 218–220

    Google Scholar 

  • M. Byrne J.C. Murrell B. Allen G.F. Moran (1995) ArticleTitleAn integrated genetic-linkage map for eucalypts using RFLP, RAPD and isozyme markers Theor. Appl. Genet. 91 IssueID6–7 869–875 Occurrence Handle10.1007/BF00223894

    Article  Google Scholar 

  • M. Byrne J.C. Murrell J.V. Owen P. Kriedemann E.R. Williams G.F. Moran (1997a) ArticleTitleIdentification and mode of action of quantitative trait loci affecting seedling height and leaf area in Eucalyptus nitens Theor. Appl. Genet. 94 IssueID5 674–681 Occurrence Handle10.1007/s001220050465

    Article  Google Scholar 

  • M. Byrne J.C. Murrell J.V. Owen E.R. Williams G.F. Moran (1997b) ArticleTitleMapping of quantitative trait loci influencing frost tolerance in Eucalyptus nitens Theor. Appl. Genet. 95 IssueID5–6 975–979 Occurrence Handle10.1007/s001220050650

    Article  Google Scholar 

  • Campinhos, E.N., F.L. Bertolucci, A.C. Alfenas & D. Grattapaglia, 1996. Stability patterns of height growth QTLs across variable genetic backgrounds in Eucalyptus grandis, Abstract P237, in Plant Genome IV Conference, San Diego, CA, Jan. 14–18.

  • Chaparro, J.X., K.R. Mitchelson, H. Russell, M. Gibbings, G. Smail Y. Li & R. Teasdale, 1997. Genetic mapping and QTL detection in the tropical species Eucalyptus grandis and E. urophylla and their hybrids, Abstract P277, in Plant & Animal Genome V Conference, San Diego, CA, Jan. 12–16.

  • D.M. Chen L.F. Filippis ParticleDe (2001) ArticleTitleDifferentially expressed genes identified during salt adaptation in Eucalyptus microcorys: down-regulation of a cDNA sequence coding for alpha-tubulin J. Plant Physiol. 158 IssueID9 1195–1202 Occurrence Handle10.1078/0176-1617-00240

    Article  Google Scholar 

  • Z. Chen S. Chang C. Ho Y. Chen J. Tsai V.L. Chiang (2001) ArticleTitlePlant production of transgenic Eucalyptus camaldulensis carrying the Populus tremuloides cinnamate 4-hydroxylase gene Taiwan J. For. Sci. 16 IssueID4 249–258

    Google Scholar 

  • P.M. Chimwamurombe A.M. Botha M.J. Wingfield B.D. Wingfield (2001) ArticleTitleMolecular relatedness of the polygalacturonase-inhibiting protein genes in Eucalyptus species Theor. Appl. Genet. 102 IssueID4 645–650 Occurrence Handle10.1007/s001220051692

    Article  Google Scholar 

  • Dale, G.T., K.S. Aitken & J.M. Sasse, 2000. Development of salt-tolerant E. camaldulensis × E. grandis hybrid clones using phenotypic selection and genetic mapping, pp. 227–233, in Proceedings of QFRI/CRC-SPF Symposium “Hybrid breeding and genetics of forest trees”, Noosa, QLD, Apr. 9–14.

  • O.N. Danilevskaya P. Hermon S. Hantke M.G. Muszynski K. Kollipara E.V. Ananiev (2003) ArticleTitleDuplicated fie genes in maize: expression pattern and imprinting suggest distinct functions Plant Cell 15 IssueID2 425–438 Occurrence Handle10.1105/tpc.006759 Occurrence Handle12566582

    Article  PubMed  Google Scholar 

  • L.E. Melis ParticleDe P.H. Whiteman T.W. Stevenson (1999) ArticleTitleIsolation and characterisation of a cDNA clone encoding cinnamyl alcohol dehydrogenase in Eucalyptus globulus Labill Plant Sci. 143 IssueID2 173–182 Occurrence Handle10.1016/S0168-9452(99)00044-8

    Article  Google Scholar 

  • V. Decroocq X.M. Zhu M. Kauffman J. Kyozuka W.J. Peacock E.S. Dennis D.J. Llewellyn (1999) ArticleTitleA TM3-like MADS-box gene from Eucalyptus expressed in both vegetative and reproductive tissues Gene 228 IssueID1–2 155–160 Occurrence Handle10.1016/S0378-1119(98)00613-1 Occurrence Handle10072768

    Article  PubMed  Google Scholar 

  • E.C. Diaz F. Martin D. Tagu (1996) ArticleTitleEucalypt alpha-tubulin: cDNA cloning and increased level of transcripts in ectomycorrhizal root system Plant Mol. Biol. 31 IssueID4 905–910 Occurrence Handle10.1007/BF00019477 Occurrence Handle8806420

    Article  PubMed  Google Scholar 

  • Domingues, D.S., S.M.M. Leite, V.E. Coscrato, A.P.C. Farro, I.G. Maia, E.D. Velini, E.L. Furtado, C.F. Wilcken, I.A. Guerrini, E.S. Mori, L.E.A. Camargo & C.L. Marino, 2004. ESTs related to phloem retranslocation of boron in Eucalyptus, Abstract P47, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • R.W. Doughty (2000) The Eucalyptus: a natural and commercial history of the gum tree John Hopkins University Press Baltimore, MD

    Google Scholar 

  • S. Draghici P. Khatri A. Shah M.A. Tainsky (2003) ArticleTitleAssessing the functional bias of commercial microarrays using the onto-compare database Biotechniques Suppl 55–61 Occurrence Handle12664686

    PubMed  Google Scholar 

  • D.J. Duggan M. Bittner Y.D. Chen P. Meltzer J.M. Trent (1999) ArticleTitleExpression profiling using cDNA microarrays Nature Genet. 21 IssueIDSuppl. S 10–14 Occurrence Handle10.1038/4434 Occurrence Handle9915494

    Article  PubMed  Google Scholar 

  • S. Duplessis P.E. Courty D. Tagu F. Martin (2005) ArticleTitleTranscript patterns associated with ectomycorrhiza development in Eucalyptus globulus and Pisolithus microcarpus New Phytol. 165 IssueID2 599–611 Occurrence Handle10.1111/j.1469-8137.2004.01248.x Occurrence Handle15720670

    Article  PubMed  Google Scholar 

  • M.B. Eisen P.T. Spellman P.O. Brown D. Botstein (1998) ArticleTitleCluster analysis and display of genome-wide expression patterns Proc. Natl. Acad. Sci. USA 95 IssueID25 14863–14868 Occurrence Handle10.1073/pnas.95.25.14863 Occurrence Handle9843981

    Article  PubMed  Google Scholar 

  • K. Elridge J. Davidson C. Harwood G. Wyk Particlevan (1993) Eucalypt Domestication and Breeding Clarendon Press Oxford, UK

    Google Scholar 

  • D.J. Fairbairn W.H. Liu D.P. Schachtman S. Gomez-Gallego S.R. Day R.D. Teasdale (2000) ArticleTitleCharacterisation of two distinct HKT1-like potassium transporters from Eucalyptus camaldulensis Plant Mol. Biol. 43 IssueID4 515–525 Occurrence Handle10.1023/A:1006496402463 Occurrence Handle11052203

    Article  PubMed  Google Scholar 

  • Faridah, E., 2004. Molecular and physiological studies of salt tolerance in eucalypts. PhD Thesis, University of Melbourne, Melbourne, Australia.

  • C. Feuillet A.M. Boudet J. Grima-Pettenati (1993) ArticleTitleNucleotide sequence of a cDNA encoding cinnamyl alcohol dehydrogenase from Eucalyptus Plant Physiol. 103 IssueID4 1447–1447 Occurrence Handle10.1104/pp.103.4.1447 Occurrence Handle8290634

    Article  PubMed  Google Scholar 

  • J.S. Freeman H.D. Jackson D.A. Steane G.E. McKinnon G.W. Dutkowski B.M. Potts R.E. Vaillancourt (2001) ArticleTitleChloroplast DNA phylogeography of Eucalyptus globulus Aust. J. Bot. 49 IssueID5 585–596 Occurrence Handle10.1071/BT00094

    Article  Google Scholar 

  • Freeman, J.S., A.W. Milgate, R.E. Vaillancourt, C.L. Mohammed & B.M. Potts, 2003. Genetic control of resistance to Mycosphaerella leaf disease in Eucalyptus globulus, p. 155, in 19th Genetics Congress, Melbourne, Australia, Jul. 6–11.

  • Fullard K.J. & G. Moran, 2003. Identification of frost tolerance genes in a Eucalyptus hybrid cross, Abstract S6.18, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • Furtado E.L., D.D. Rosa, K. Zamprogno, C.L. Marino, E.S. Mori, I.A. Guerrini, C.F. Wilcken, I.G. Maia, E. Velini & L.E.A. Camargo, 2004. Pathogenesis related proteins in Eucalyptus genome, Abstract P49, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • S.M. Gan J.S. Shi M. Li K.M. Wu J.Y. Wu J.Y. Bai (2003) ArticleTitleModerate-density molecular maps of Eucalyptus urophylla S. T. Blake and E. tereticornis Smith genomes based on RAPD markers Genetica 118 IssueID1 59–67 Occurrence Handle10.1023/A:1022966018079 Occurrence Handle12733665

    Article  PubMed  Google Scholar 

  • J.M. Gion (2000) ArticleTitleMapping eligible genes in Eucalyptus Bois For. Trop. 266 61–65

    Google Scholar 

  • Gion, J.M., C. Boudet, J. Grima-Pettenati, F.H. Pichavant, C. Plomion, H. Bailleres & D. Verhaegen, 2001. A candidate genes approach identifies CCR, PAL and C4H as loci for syringyl/guaiacyl ratio in a interspecific hybrid between E. urophylla and E. grandis, in IUFRO International Symposium, Valdivia, Chile, Sep. 10–15.

  • J.M. Gion P. Rech J. Grima-Pettenati D. Verhaegen C. Plomion (2000) ArticleTitleMapping candidate genes in Eucalyptus with emphasis on lignification genes Mol. Breed. 6 IssueID5 441–449 Occurrence Handle10.1023/A:1026552515218

    Article  Google Scholar 

  • J.C. Glaubitz L.C. Emebiri G.F. Moran (2001) ArticleTitleDinucleotide microsatellites from Eucalyptus sieberi: inheritance, diversity, and improved scoring of single-base differences Genome 44 IssueID6 1041–1045 Occurrence Handle10.1139/gen-44-6-1041 Occurrence Handle11768207

    Article  PubMed  Google Scholar 

  • S.A. Goff D. Ricke T.H. Lan G. Presting R.L. Wang M. Dunn J. Glazebrook A. Sessions P. Oeller H. Varma D. Hadley D. Hutchinson C. Martin F. Katagiri B.M. Lange T. Moughamer Y. Xia P. Budworth J.P. Zhong T. Miguel U. Paszkowski S.P. Zhang M. Colbert W.L. Sun L.L. Chen B. Cooper S. Park T.C. Wood L. Mao P. Quail R. Wing R. Dean Y.S. Yu A. Zharkikh R. Shen S. Sahasrabudhe A. Thomas R. Cannings A. Gutin D. Pruss J. Reid S. Tavtigian J. Mitchell G. Eldredge T. Scholl R.M. Miller S. Bhatnagar N. Adey T. Rubano N. Tusneem R. Robinson J. Feldhaus T. Macalma A. Oliphant S. Briggs (2002) ArticleTitleA draft sequence of the rice genome (Oryza sativa L ssp japonica) Science 296 IssueID5565 92–100 Occurrence Handle10.1126/science.1068275 Occurrence Handle11935018

    Article  PubMed  Google Scholar 

  • Goffner, D., J. Grima-Pettenati, C. Feuillet & A.M. Boudet, 1995. Cinnamoyl-CoA reductase and cinnamyl alcohol dehydrogenase: characterization at the biochemical and molecular level of two enzymes involved in lignin synthesis, in Polyphenols 94: 17th International Conference, Palma de Mallorca, Spain, 23–27 May 1994, edited by Institut National de la Recherche Agronomique, Paris, France.

  • D. Goffner J. Doorsselaere ParticleVan N. Yahiaoui J. Samaj J. Grima-Pettenati A.M. Boudet (1998) ArticleTitleA novel aromatic alcohol dehydrogenase in higher plants: molecular cloning and expression Plant Mol. Biol. 36 IssueID5 755–765 Occurrence Handle10.1023/A:1005991932652 Occurrence Handle9526508

    Article  PubMed  Google Scholar 

  • E.R. Gonzalez A. Andrade Particlede A.L. Bertolo G.C. Lacerda R.T. Carneiro V.A.P. Defavari M.T.V. Labate C.A. Labate (2002) ArticleTitleProduction of transgenic Eucalyptus grandis × E. urophylla using the sonication-assisted Agrobacterium transformation (SAAT) system Funct. Plant Biol. 29 IssueID1 97–102 Occurrence Handle10.1071/PP01142

    Article  Google Scholar 

  • Grattapaglia, D., 2002. Integrating genomic biotechnologies into genetic improvement of Eucalyptus, pp. 101–122, in Socioeconomia, Patologia, Tecnologia y Sostenibilidade del Eucalipto. edited by Universidad de Vigo, Graficas Diumaro.

  • Grattapaglia, D., 2003. Eucalyptus globulus: key resource for Eucalyptus genomics research, in Proceedings of the IUFRO Symposium “Simposio Iberoamericano de Eucalyptus globulus”, Montevideo, Uruguay, Oct. 30–31.

  • D. Grattapaglia F.L. Bertolucci R.R. Sederoff (1995) ArticleTitleGenetic-mapping of QTLs controlling vegetative propagation in Eucalyptus grandis and E. urophylla using a pseudo-testcross strategy and RAPD markers Theor. Appl. Genet. 90 IssueID7–8 933–947 Occurrence Handle10.1007/BF00222906

    Article  Google Scholar 

  • D. Grattapaglia F.L.G. Bertolucci R. Penchel R.R. Sederoff (1996) ArticleTitleGenetic mapping of quantitative trait loci controlling growth and wood quality traits in Eucalyptus grandis using a maternal half-sib family and RAPD markers Genetics 144 IssueID3 1205–1214 Occurrence Handle8913761

    PubMed  Google Scholar 

  • D. Grattapaglia H.D. Bradshaw (1994) ArticleTitleNuclear DNA content of commercially important Eucalyptus species and hybrids Can. J. For. Res. 24 1074–1078

    Google Scholar 

  • D. Grattapaglia R. Sederoff (1994) ArticleTitleGenetic-linkage maps of Eucalyptus grandis and Eucalyptus urophylla using a pseudo-testcross mapping strategy and RAPD markers Genetics 137 IssueID4 1121–1137 Occurrence Handle7982566

    PubMed  Google Scholar 

  • A.R. Griffin I.P. Burgess L. Wolf (1988) ArticleTitlePatterns of natural and manipulated hybridization in the genus Eucalyptus L’Herit.: a review Aust. J. Bot. 36 41–66

    Google Scholar 

  • J. Grima-Pettenati C. Feuillet D. Goffner G. Borderies A.M. Boudet (1993) ArticleTitleMolecular cloning and expression of a Eucalyptus gunnii cDNA clone encoding cinnamyl alcohol dehydrogenase Plant Mol. Biol. 21 IssueID6 1085–1095 Occurrence Handle10.1007/BF00023605 Occurrence Handle8490129

    Article  PubMed  Google Scholar 

  • J. Grima-Pettenati D. Goffner (1999) ArticleTitleLignin genetic engineering revisited Plant Sci. 145 IssueID2 51–65 Occurrence Handle10.1016/S0168-9452(99)00051-5

    Article  Google Scholar 

  • Guerrini, I.A., R.M. Trigueiro, R.M. Leite, E.S. Mori, E.D. Velini, E.L. Furtado, C.F. Wilcken, C.L. Marino, I.G. Maia & L.E.A. Camargo, 2004. Data mining of eucalypt ESTs related with 9-cis-epoxicarotenoide dioxigenase of ABA biosynthesis, Abstract P44, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • R.L. Harcourt J. Kyozuka R.B. Floyd K.S. Bateman H. Tanaka V. Decroocq D.J. Llewellyn X. Zhu W.J. Peacock E.S. Dennis (2000) ArticleTitleInsect- and herbicide-resistant transgenic eucalypts Mol. Breed. 6 IssueID3 307–315 Occurrence Handle10.1023/A:1009676214328

    Article  Google Scholar 

  • F. Hatey G. Tosser-Klopp C. Clouscard-Martinato P. Mulsant F. Gasser (1998) ArticleTitleExpressed sequence tags for genes: a review Genet. Sel. Evol. 30 IssueID6 521–541

    Google Scholar 

  • S. Hawkins A. Boudet J. Grima-Pettenati (2003) ArticleTitleCharacterisation of caffeic acid O-methyltransferase and cinnamyl alcohol dehydrogenase gene expression patterns by in situ hybridisation in Eucalyptus gunnii Hook plantlets Plant Sci. 164 IssueID2 165–173 Occurrence Handle10.1016/S0168-9452(02)00361-8

    Article  Google Scholar 

  • S. Hawkins D. Goffner A.M. Boudet (1994) ArticleTitleCinnamyl alcohol dehydrogenase polymorphism and its potential role in the control of lignin heterogeneity Acta Hortic. 381 280–286

    Google Scholar 

  • S.W. Hawkins A.M. Boudet (1994) ArticleTitlePurification and characterization of cinnamyl alcohol dehydrogenase isoforms from the periderm of Eucalyptus gunnii Hook Plant Physiol. 104 IssueID1 75–84 Occurrence Handle12232063

    PubMed  Google Scholar 

  • T. Hibino J.Q. Chen D. Shibata T. Higuchi (1994) ArticleTitleNucleotide sequence of a Eucalyptus botryoides gene encoding cinnamyl alcohol dehydrogenase Plant Physiol. 104 IssueID1 305–306 Occurrence Handle10.1104/pp.104.1.305 Occurrence Handle7906894

    Article  PubMed  Google Scholar 

  • Hibino, T., J. Koshiyama, K. Kondo, K. Doi, N. Ishige, T. Asada, S. Sukeno & K. Yamaguchi-Shinozaki, 2002. Evaluation of transgenic eucalypts with improved DREB1A genes and study on the stress resistant mechanism in Eucalyptus camaldulensis, Abstract P763, in Plant, Animal & Microbe Genomes X Conference, San Diego, CA, Jan. 12–16.

  • C. Ho Y. Chen Z. Chen (2002) ArticleTitlecDNA cloning and sequence analysis of 5-hydroxyconiferaldehyde O-methyltransferase from Eucalyptus camaldulensis Taiwan J. For. Sci. 17 IssueID4 429–438

    Google Scholar 

  • C.K. Ho S.H. Chang J.Y. Tsay C.J. Tsai V.L. Chiang Z.Z. Chen (1998) ArticleTitleAgrobacterium tumefaciens-mediated transformation of Eucalyptus camaldulensis and production of transgenic plants Plant Cell Rep. 17 IssueID9 675–680 Occurrence Handle10.1007/s002990050464

    Article  Google Scholar 

  • Ishige, N., K. Kondo, A. Furujyo & T. Hibino, 2004. Genetic improvement for environmental stress resistance in Eucalyptus, Abstract P110, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • H.D. Jackson D.A. Steane B.M. Potts R.E. Vaillancourt (1999) ArticleTitleChloroplast DNA evidence for reticulate evolution in Eucalyptus (Myrtaceae) Mol. Ecol. 8 IssueID5 739–751 Occurrence Handle10.1046/j.1365-294X.1999.00614.x

    Article  Google Scholar 

  • M.E. Jones R.L. Stokoe M.J. Cross L.J. Scott T.L. Maguire M. Shepherd (2001) ArticleTitleIsolation of microsatellite loci from spotted gum (Corymbia variegata), and cross-species amplification in Corymbia and Eucalyptus Mol. Ecol. Notes 1 IssueID4 276–278

    Google Scholar 

  • D.T. Junghans A.C. Alfenas S.H. Brommonschenkel S. Oda E.J. Mello D. Grattapaglia (2003) ArticleTitleResistance to rust (Puccinia psidii Winter) in Eucalyptus: mode of inheritance and mapping of a major gene with RAPD markers Theor. Appl. Genet. 108 IssueID1 175–180 Occurrence Handle10.1007/s00122-003-1415-9 Occurrence Handle14504745

    Article  PubMed  Google Scholar 

  • T. Jun-ichiro B. Kei’ichi H. Takashi I. Takao (1997) ArticleTitleMolecular cloning of cDNAs of the genes expressed in differentiating xylem of tension wood formation in Eucalyptus camaldulensis L Wood Res. 84 31–33

    Google Scholar 

  • Kawaoka, A., K. Nanto, K. Sugita, S. Endo, K. Yamada-Watanabe, E. Matsunaga & H. Ebinuma, 2003. Production and analysis of lignin-modified transgenic Eucalyptus, Abstract S10.6, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • Keane, P.J., G.A. Kile, F.D. Podger & B.N. Brown, 2000. Diseases and pathogens of eucalypts. CSIRO, Melbourne, Australia.

  • Keller, G., N. Ladouce, C. Teulières & C. Marque, 2004. Expression profiles of 3000 Eucalyptus cDNAs under cold, osmotic or salt stress, p. 411, in Proceedings of IUFRO Conference “Eucalyptus in a changing world ”, edited by N.M.G. Borralho, J.S. Pereira, C. Marques, J. Coutinho, M. Madeira & M. Tome, Aveiro, Portugal, Oct. 11–15.

  • Kirst, M., 2003. Transcription regulation and plant diversity. PhD Thesis, North Carolina State University, Raleigh, NC.

  • Kirst, M., V. Carocha, C.M. Marques, L. van Zyl, A. Myburg & R. Sederoff, 2002. Individual genotypes of eucalypts show striking variation in xylem gene expression, Abstract P548, in Plant, Animal & Microbe Genomes X Conference, San Diego, CA, Jan. 12–16.

  • M. Kirst A.A. Myburg J.P.G. Leon ParticleDe M.E. Kirst J. Scott R. Sederoff (2004) ArticleTitleCoordinated genetic regulation of growth and lignin revealed by quantitative trait locus analysis of cDNA microarray data in an interspecific backcross of Eucalyptus Plant Physiol. 135 IssueID4 2368–2378 Occurrence Handle10.1104/pp.103.037960 Occurrence Handle15299141

    Article  PubMed  Google Scholar 

  • Kondo, K., A. Furujyo, N. Ishige, M. Kasuga, K. Shinozaki, K. Yamaguchi-Shinozaki & T. Hibino, 2003. Analysis of the stress response genes in Eucalyptus and effect of introducing several stress tolerance-giving genes into Eucalyptus – A development situation and a practical possibility of an environmental stress resistant tree, Abstract P826, in Plant & Animal Genomes XI Conference, San Diego, CA, Jan. 11–15.

  • K. Kondo J. Koshiyama K. Doi N. Ishige S. Sukeno T. Hibino M. Kasuga K. Shinozaki (2002) ArticleTitleAnalysis of the stress response genes in Eucalyptus and effect of introducing a stress tolerance-giving gene (rd29A-DREB1A) into Eucalyptus Plant Cell Physiol. 43 S113

    Google Scholar 

  • J. Kyozuka R. Harcourt W.J. Peacock E.S. Dennis (1997) ArticleTitleEucalyptus has functional equivalents of the Arabidopsis AP1 gene Plant Mol. Biol. 35 IssueID5 573–584 Occurrence Handle10.1023/A:1005885808652 Occurrence Handle9349279

    Article  PubMed  Google Scholar 

  • E. Lacombe S. Hawkins J. Doorsselaere ParticleVan J. Piquemal D. Goffner O. Poeydomenge A.M. Boudet J. Grima-Pettenati (1997) ArticleTitleCinnamoyl CoA reductase, the first committed enzyme of the lignin branch biosynthetic pathway: cloning, expression and phylogenetic relationships Plant J. 11 IssueID3 429–441 Occurrence Handle10.1046/j.1365-313X.1997.11030429.x Occurrence Handle9107033

    Article  PubMed  Google Scholar 

  • E. Lacombe J. Doorsselaere ParticleVan W. Boerjan A.M. Boudet J. Grima-Pettenati (2000) ArticleTitleCharacterization of cis-elements required for vascular expression of the cinnamoyl CoA reductase gene and for protein–DNA complex formation Plant J. 23 IssueID5 663–676 Occurrence Handle10.1046/j.1365-313x.2000.00838.x Occurrence Handle10972892

    Article  PubMed  Google Scholar 

  • V. Lauvergeat P. Rech A. Jauneau C. Guez P. Coutos-Thevenot J. Grima-Pettenati (2002) ArticleTitleThe vascular expression pattern directed by the Eucalyptus gunnii cinnamyl alcohol dehydrogenase EgCAD2 promoter is conserved among woody and herbaceous plant species Plant Mol. Biol. 50 IssueID3 497–509 Occurrence Handle10.1023/A:1019817913604 Occurrence Handle12369625

    Article  PubMed  Google Scholar 

  • Li, Y., J. Botero, H. Duong, B. Clarke, R. Zwart & R. Teasdale, 1999. Genetic mapping of salt tolerant eucalypt hybrids, Abstract P168, in Plant & Animal Genome VII Conference, San Diego, CA, Jan. 17–21.

  • Llewellyn, D.J., 2000. Herbicide tolerant forest trees, pp. 439–466, in Molecular Biology of Woody Plants, edited by S.M. Jain & S.C. Minocha. Kluwer Academic Publishers, Dordrecht, Netherlands.

  • Marque, C., W. El Kayal, C. Debayles, G. Keller & C. Teulières, 2003. Sucrose export defective gene isolated from Eucalyptus: a new gene involved in frost tolerance, Abstract S1.9, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • C.M. Marques J.A. Araujo J.G. Ferreira R. Whetten D.M. O’Malley B.H. Liu R. Sederoff (1998) ArticleTitleAFLP genetic maps of Eucalyptus globulus and E. tereticornis Theor. Appl. Genet. 96 IssueID6–7 727–737 Occurrence Handle10.1007/s001220050795

    Article  Google Scholar 

  • C.M. Marques R.P.V. Brondani D. Grattapaglia R. Sederoff (2002) ArticleTitleConservation and synteny of SSR loci and QTLs for vegetative propagation in four Eucalyptus species Theor. Appl. Genet. 105 IssueID2–3 474–478 Occurrence Handle10.1007/s00122-002-0899-z Occurrence Handle12582553

    Article  PubMed  Google Scholar 

  • C.M. Marques J. Vasquez-Kool V.J. Carocha J.G. Ferreira D.M. O’Malley B.H. Liu R. Sederoff (1999) ArticleTitleGenetic dissection of vegetative propagation traits in Eucalyptus tereticornis and E. globulus Theor. Appl. Genet. 99 IssueID6 936–946 Occurrence Handle10.1007/s001220051400

    Article  Google Scholar 

  • Marques, C.M.P., V.J. Carocha, A.M. Sousa, J.A. Araujo, J.C. Rodrigues, M.M. Ribeiro, L. Sanchez-Rodriguez & N. Borallho, 2003. Eucalyptus marker assisted breeding @ RAIZ, Abstract S6.16, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • J.H. McKie R. Jaouhari K.T. Douglas D. Goffner C. Feuillet J. Grima-Pettenati A.M. Boudet M. Baltas L. Gorrichon (1993) ArticleTitleA molecular model for cinnamyl alcohol dehydrogenase, a plant aromatic alcohol dehydrogenase involved in lignification Biochim. Biophys. Acta 1202 IssueID1 61–69 Occurrence Handle8373826

    PubMed  Google Scholar 

  • G.E. McKinnon D.A. Steane B.M. Potts R.E. Vaillancourt (1999) ArticleTitleIncongruence between chloroplast and species phylogenies in Eucalyptus subgenus Monocalyptus (Myrtaceae) Am. J. Bot. 86 IssueID7 1038–1046 Occurrence Handle10406727

    PubMed  Google Scholar 

  • G.E. McKinnon R.E. Vaillancourt H.D. Jackson B.M. Potts (2001a) ArticleTitleChloroplast sharing in the Tasmanian eucalypts Evolution 55 IssueID4 703–711

    Google Scholar 

  • G.E. McKinnon R.E. Vaillancourt D.A. Steane B.M. Potts (2004) ArticleTitleThe rare silver gum, Eucalyptus cordata, is leaving its trace in the organellar gene pool of Eucalyptus globulus Mol. Ecol. 13 3751–3762 Occurrence Handle10.1111/j.1365-294X.2004.02364.x Occurrence Handle15548288

    Article  PubMed  Google Scholar 

  • G.E. McKinnon R.E. Vaillancourt P.A. Tilyard B.M. Potts (2001b) ArticleTitleMaternal inheritance of the chloroplast genome in Eucalyptus globulus and interspecific hybrids Genome 44 IssueID5 831–835 Occurrence Handle10.1139/gen-44-5-831

    Article  Google Scholar 

  • Milgate, A.W., R.E. Vaillancourt, C. Mohammed, M. Powell & B.M. Potts, in press. Genetic structure of a Mycosphaerella cryptica population. Australas. Plant Path.

  • Missiaggia, M., A. Piacezzi & D. Grattapaglia, 2002. A major effect QTL for early flowering in Eucalyptus mapped by selective genotyping of microsatellite markers detected in fluorescent multiplexes, in Proceedings of the 48th Brazilian Congress of Genetics, Aguas de Lindoir, Sept. 17–20.

  • Mitchelson, K.R., J.X. Chaparro, H. Duong, J.-S. Yi, M.E. Jones, J. Botero & R. Teasdale, 1997. Use of BSA for detailed genetic mapping in Eucalyptus globulus, Abstract P285, in Plant & Animal Genome V Conference, San Diego, CA, Jan. 12–16.

  • K.R. Mitchelson J. Drenth H. Duong J.X. Chaparro (1999) ArticleTitleDirect sequencing of RAPD fragments using 3′-extended oligonucleotide primers and dye terminator cycle-sequencing Nucl. Acids Res. 27 IssueID19 e28 Occurrence Handle10.1093/nar/27.19.e28 Occurrence Handle10481040

    Article  PubMed  Google Scholar 

  • M. Moralejo F. Rochange A.M. Boudet C. Teulières (1998) ArticleTitleGeneration of transgenic Eucalyptus globulus plantlets through Agrobacterium tumefaciens mediated transformation Aust. J. Plant Physiol. 25 IssueID2 207–212

    Google Scholar 

  • Mori, E.S., L. Zimback, M.L.T. Moraes, D.D. Rosa, E.D. Velini, I.A. Guerrini, C.L. Marino, E.L. Furtado, C.F. Wilcken, I.G. Maia & L.E.A. Camargo, 2004. Researching eucalypt expressed sequence tags of FORESTs database for plant growth hormone genes, Abstract P50, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • K.V. Mullins D.J. Llewellyn V.J. Hartney S. Strauss E.S. Dennis (1997) ArticleTitleRegeneration and transformation of Eucalyptus camaldulensis Plant Cell Rep. 16 IssueID11 787–791 Occurrence Handle10.1007/s002990050321

    Article  Google Scholar 

  • A.A. Myburg A.R. Griffin R.R. Sederoff R.W. Whetten (2003) ArticleTitleComparative genetic linkage maps of Eucalyptus grandis, Eucalyptus globulus and their F1 hybrid based on a double pseudo-backcross mapping approach Theor. Appl. Genet. 107 IssueID6 1028–1042 Occurrence Handle10.1007/s00122-003-1347-4 Occurrence Handle12838392

    Article  PubMed  Google Scholar 

  • A.A. Myburg C. Vogl A.R. Griffin R.R. Sederoff R.W. Whetten (2004) ArticleTitleGenetics of postzygotic isolation in Eucalyptus: whole-genome analysis of barriers to introgression in a wide interspecific cross of Eucalyptus grandis and E. globulus Genetics 166 IssueID3 1405–1418 Occurrence Handle10.1534/genetics.166.3.1405 Occurrence Handle15082559

    Article  PubMed  Google Scholar 

  • U. Nehls T. Beguiristain F. Ditengou F. Lapeyrie F. Martin (1998) ArticleTitleThe expression of a symbiosis-regulated gene in eucalypt roots is regulated by auxins and hypaphorine, the tryptophan betaine of the ectomycorrhizal basidiomycete Pisolithus tinctorius Planta 207 IssueID2 296–302 Occurrence Handle10.1007/s004250050486 Occurrence Handle9951730

    Article  PubMed  Google Scholar 

  • Nogueira, L.M., S. Oda, E. Mello & C.L. Marino, 2004. RAPD and SCAR markers used for tagging gene responsible for seedling anomaly in Eucalyptus grandis, pp. 416–417, in Proceedings of IUFRO Conference “Eucalyptus in a Changing World”, edited by N.M.G. Borralho, J.S. Pereira, C. Marques, J. Coutinho, M. Madeira & M. Tome, Aveiro, Portugal, Oct. 11–15.

  • Paux E., C. Foucard, N. Ladouce, P. Sivadon, J. Grima-Pettenati, C. Marques, V. Carocha, N. Borallho, R. Astorga, G. Toval Hernandez, J.M. Gion & P. Vigneron, 2003. Functional genomics of wood formation in Eucalyptus, Abstract S6.3, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • E. Paux M. Tamasloukht N. Ladouce P. Sivadon J. Grima-Pettenati (2004) ArticleTitleIdentification of genes preferentially expressed during wood formation in Eucalyptus Plant Mol. Biol. 55 IssueID2 263–280 Occurrence Handle10.1007/s11103-004-0621-4 Occurrence Handle15604680

    Article  PubMed  Google Scholar 

  • Pelosi A., 2002. Molecular and genetic studies into the formation of lateral roots in Eucalyptus and Arabidopsis. PhD Thesis, Monash University, Melbourne, Australia.

  • G. Pinto J. Loureiro T. Lopes C. Santos (2004) ArticleTitleAnalysis of the genetic stability of Eucalyptus globulus Labill. somatic embryos by flow cytometry Theor. Appl. Genet. 109 580–587 Occurrence Handle10.1007/s00122-004-1655-3 Occurrence Handle15085264

    Article  PubMed  Google Scholar 

  • J. Piquemal C. Lapierre K. Myton A. O’Connell W. Schuch J. Grima-Pettenati A.M. Boudet (1998) ArticleTitleDown-regulation of cinnamoyl-CoA reductase induces significant changes of lignin profiles in transgenic tobacco plants Plant J. 13 IssueID1 71–83 Occurrence Handle10.1046/j.1365-313X.1998.00014.x

    Article  Google Scholar 

  • C. Plomion G. Leprovost A. Stokes (2001) ArticleTitleWood formation in trees Plant Physiol. 127 1513–1523 Occurrence Handle10.1104/pp.127.4.1513 Occurrence Handle11743096

    Article  PubMed  Google Scholar 

  • C. Plomion C. Pionneau H. Bailleres (2003) ArticleTitleAnalysis of protein expression along the normal to tension wood gradient in Eucalyptus gunnii Holzforschung 57 IssueID4 353–358 Occurrence Handle10.1515/HF.2003.053

    Article  Google Scholar 

  • O. Poeydomenge A.M. Boudet J. Grima-Pettenati (1994) ArticleTitleA cDNA encoding S-adenosyl-L-methionine:caffeic acid 3-O-methyltransferase from Eucalyptus Plant Physiol. 105 IssueID2 749–750 Occurrence Handle10.1104/pp.105.2.749 Occurrence Handle8066135

    Article  PubMed  Google Scholar 

  • O. Poeydomenge M. Marolda A.M. Boudet J. Grima-Pettenati (1995) ArticleTitleNucleotide sequence of a cDNA encoding mitochondrial malate dehydrogenase from Eucalyptus Plant Physiol. 107 IssueID4 1455–1456 Occurrence Handle10.1104/pp.107.4.1455 Occurrence Handle7770532

    Article  PubMed  Google Scholar 

  • F.S. Poke R.E. Vaillancourt R.C. Elliott J.B. Reid (2003) ArticleTitleSequence variation in two lignin biosynthesis genes, cinnamoyl CoA reductase (CCR) and cinnamyl alcohol dehydrogenase 2 (CAD2) Mol. Breed. 12 IssueID2 107–118 Occurrence Handle10.1023/A:1026006828721

    Article  Google Scholar 

  • Potts, B.M., 2004. Genetic improvement of eucalypts, pp. 104–114, in Encyclopedia of Forest Sciences, edited by Elsevier, Oxford, UK.

  • B.M. Potts R.C. Barbour A. Hingston R.E. Vaillancourt (2003) ArticleTitleTurner Review No. 6: Genetic pollution of native eucalypt gene pools – identifying the risks Aust. J. Bot 51 1–25 Occurrence Handle10.1071/BT02035

    Article  Google Scholar 

  • Potts, B.M., R.C. Barbour & A.B. Hingston, 2001. Genetic pollution from farm forestry using eucalypt species and hybrids. Rural Industries Research and Development Corporation, Barton, ACT.

  • B.M. Potts H.S. Dungey (2004) ArticleTitleInterspecific hybridization of eucalypts: key issues for breeders and geneticists New For. 27 115–138

    Google Scholar 

  • Potts, B.M. & R.J.E. Wiltshire, 1997. Eucalypt genetics and genecology, pp. 56–91 in Eucalypt ecology: individuals to ecosystems, edited by J.E. Williams & J.C.Z. Woinarski. University Press, Cambridge, UK.

  • J.A. Rafalski (2002) ArticleTitleNovel genetic mapping tools in plants: SNPs and LD-based approaches Plant Sci. 162 IssueID3 329–333 Occurrence Handle10.1016/S0168-9452(01)00587-8

    Article  Google Scholar 

  • Ranik M., N. Creux & A.A. Myburg, 2004. Transcriptome analysis of xylogenesis in Eucalyptus using cDNA-AFLP and Li-Cor automated DNA analysers, Abstract P610, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • M.M. Sale B.M. Potts A.K. West J.B. Reid (1996) ArticleTitleRelationships within Eucalyptus (Myrtaceae) using PCR-amplification and southern hybridisation of chloroplast DNA Aust. Syst. Bot. 9 IssueID3 273–282 Occurrence Handle10.1071/SB9960273

    Article  Google Scholar 

  • Sato, S., K. Horikiri, K. Miyashita, N. Ishige, T. Hibino & T. Kawazu, 2001. Analysis of wood development with a genomic approach: Eucalyptus ESTs and TAC genomic library, Abstract P_01_59, in Plant & Animal Genome IX Conference, San Diego, CA, Jan. 13–17.

  • Sawbridge, T.I., J. Drenth, M. Anderson, J. Hallinan, B. Norris & R. Teasdale, 1999. Applications of EST sequencing in a forestry biotech company, Abstract P512, in Plant & Animal Genome VII Conference, San Diego, CA, Jan. 17–21.

  • Shani, Z., M. Dekel, B. Cohen, N. Barimboim, N. Kolosovski, A. Safranuvitch, O. Cohen & O. Shoseyov, 2003. Cell wall modification for the enhancement of commercial Eucalyptus species, Abstract S10.26, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • Z. Shao W. Chen H. Luo X. Ye J. Zhang (2002) ArticleTitleStudies on the introduction of the cecropin D gene into Eucalyptus urophylla to breed the resistant varieties to Pseudomonas solanacearum Sci. Silvae Sin. 38 IssueID2 92–97

    Google Scholar 

  • Shepherd, M., J. Chaparro, G. Dale, L. Jefferson, H. Duong, H. Vogel, J. Walsh, M. Gibbings & R. Teasdale, 1995. Mapping insect resistance and essential oil traits in a tropical Eucalyptus hybrid, pp. 420–423, in CRCTHF IUFRO Conference “Eucalypt plantations: Improving fibre yield and quality”, Hobart, Tasmania, Australia, Feb. 19–24.

  • M. Shepherd J.X. Chaparro R. Teasdale (1999) ArticleTitleGenetic mapping of monoterpene composition in an interspecific eucalypt hybrid Theor. Appl. Genet. 99 IssueID7–8 1207–1215 Occurrence Handle10.1007/s001220051326

    Article  Google Scholar 

  • Shepherd, M. & M.E. Jones, 2005. Molecular markers in tree improvement: characterisation and use in Eucalyptus, pp. 399–409, in Molecular marker systems in plant breeding and crop improvement, edited by H. Lorz & G. Wenzel. Springer-Verlag, Heidelberg, Germany.

  • Song, Y. & C.A. Cullis, 1992. RFLP and RAPD mapping of Eucalyptus globulus, in Plant Genome I Conference, San Diego, CA, Nov.

  • S.G. Southerton H. Marshall A. Mouradov R.D. Teasdale (1998a) ArticleTitleEucalypt MADS-box genes expressed in developing flowers Plant Physiol. 118 IssueID2 365–372 Occurrence Handle10.1104/pp.118.2.365

    Article  Google Scholar 

  • S.G. Southerton S.H. Strauss M.R. Olive E.S. Dennis (1993) ArticleTitleCloning of the floral homeotic gene homolog of Leafy Floricaula in Eucalyptus globulus J. Cell. Biochem. Suppl. 17B 24

    Google Scholar 

  • S.G. Southerton S.H. Strauss M.R. Olive R.L. Harcourt V. Decroocq X.M. Zhu D.J. Llewellyn W.J. Peacock E.S. Dennis (1998b) ArticleTitleEucalyptus has a functional equivalent of the Arabidopsis floral meristem identity gene LEAFY Plant Mol. Biol. 37 IssueID6 897–910 Occurrence Handle10.1023/A:1006056014079

    Article  Google Scholar 

  • N. Sreenivasulu P.B.K. Kishor R.K. Varshney L. Altschmied (2002) ArticleTitleMining functional information from cereal genomes – the utility of expressed sequence tags Curr. Sci. 83 IssueID8 965–973

    Google Scholar 

  • Steane, D.A., in press. Complete nucleotide sequence of the chloroplast genome from the Tasmanian blue gum, Eucalyptus globulus. DNA Res.

  • D.A. Steane M. Byrne R.E. Vaillancourt M. Potts (1998) ArticleTitleChloroplast DNA polymorphism signals complex interspecific interactions in Eucalyptus (Myrtaceae) Aust. Syst. Bot. 11 IssueID1 25–40 Occurrence Handle10.1071/SB96028

    Article  Google Scholar 

  • D.A. Steane G.E. McKinnon R.E. Vaillancourt B.M. Potts (1999) ArticleTitleITS sequence data resolve higher level relationships among the eucalypts Mol. Phylogenet. Evol. 12 IssueID2 215–223 Occurrence Handle10.1006/mpev.1999.0612 Occurrence Handle10381324

    Article  PubMed  Google Scholar 

  • D.A. Steane D. Nicolle G.E. McKinnon R.E. Vaillancourt B.M. Potts (2002) ArticleTitleHigher-level relationships among the eucalypts are resolved by ITS-sequence data Aust. Syst. Bot. 15 IssueID1 49–62 Occurrence Handle10.1071/SB00039

    Article  Google Scholar 

  • D.A. Steane R.E. Vaillancourt J. Russell W. Powell D. Marshall B.M. Potts (2001) ArticleTitleDevelopment and characterisation of microsatellite loci in Eucalyptus globulus (Myrtaceae) Silvae Genet. 50 IssueID2 89–91

    Google Scholar 

  • D.A. Steane A.K. West B.M. Potts J.R. Ovenden J.B. Reid (1991) ArticleTitleRestriction fragment length polymorphisms in chloroplast DNA from 6 species of Eucalyptus Aust. J. Bot. 39 IssueID5 399–414

    Google Scholar 

  • B. Stirling Z.K. Yang L.E. Gunter G.A. Tuskan H.D. Bradshaw (2003) ArticleTitleComparative sequence analysis between orthologous regions of the Arabidopsis and Populus genomes reveals substantial synteny and microcollinearity Can. J. For. Res. 33 IssueID11 2245–2251 Occurrence Handle10.1139/x03-155

    Article  Google Scholar 

  • R.L. Stokoe M. Shepherd D.J. Lee D.G. Nikles R.J. Henry (2001) ArticleTitleNatural inter-subgeneric hybridization between Eucalyptus acmenoides Schauer and Eucalyptus cloeziana F. Muell (Myrtaceae) in southeast Queensland Ann. Bot. 88 IssueID4 563–570 Occurrence Handle10.1006/anbo.2001.1507

    Article  Google Scholar 

  • Strabala, T., 2004. Expressed sequence tag databases from forestry tree species, in Molecular Genetics and Breeding of Forest Trees, edited by S. Kumar and M. Fladung. The Haworth Press, Inc., Binghamton, NY.

  • D. Tagu F. Martin (1995) ArticleTitleExpressed sequence tags of randomly selected cDNA clones from Eucalyptus globulus-Pisolithus tinctorius ectomycorrhiza Mol. Plant-Microbe Interact. 8 IssueID5 781–783 Occurrence Handle7579623

    PubMed  Google Scholar 

  • K. Thamarus K. Groom A. Bradley C.A. Raymond L.R. Schimleck E.R. Williams G.F. Moran (2004) ArticleTitleIdentification of quantitative trait loci for wood and fibre properties in two full-sib pedigrees of Eucalyptus globulus Theor. Appl. Genet. 109 IssueID4 856–864 Occurrence Handle10.1007/s00122-004-1699-4 Occurrence Handle15133606

    Article  PubMed  Google Scholar 

  • K.A. Thamarus K. Groom J. Murrell M. Byrne G.F. Moran (2002) ArticleTitleA genetic linkage map for Eucalyptus globulus with candidate loci for wood, fibre, and floral traits Theor. Appl. Genet. 104 IssueID2–3 379–387 Occurrence Handle10.1007/s001220100717 Occurrence Handle12582710

    Article  PubMed  Google Scholar 

  • InstitutionalAuthorNameThe Arabidopsis Genome Initiative (2000) ArticleTitleAnalysis of the genome sequence of the flowering plant Arabidopsis thaliana Nature 408 796–815

    Google Scholar 

  • M.A. Thomas R. Klaper (2004) ArticleTitleGenomics for the ecological toolbox Trends Ecol. Evol. 19 IssueID8 439–445 Occurrence Handle10.1016/j.tree.2004.06.010

    Article  Google Scholar 

  • V. Tournier S. Grat C. Marque W. El Kayal R. Penchel G. Andrade Particlede A.M. Boudet C. Teulières (2003) ArticleTitleAn efficient procedure to stably introduce genes into an economically important pulp tree (Eucalyptus grandis × Eucalyptus urophylla) Transgenic Res. 12 IssueID4 403–411 Occurrence Handle10.1023/A:1024217910354 Occurrence Handle12885162

    Article  PubMed  Google Scholar 

  • Trigueiro, R.M., I.A. Guerrini, R.M. Leite, I.G. Maia, C.L. Marino, E.S. Mori, E.D. Velini, L.E.A. Camargo, E.L. Furtado & C.F. Wilcken, 2004. Identification of eucalypt ESTs involved in proline production, Abstract P45, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • J.W. Turnbull (1999) ArticleTitleEucalypt plantations New For. 17 IssueID1–3 37–52

    Google Scholar 

  • G.A. Tuskan S.P. DiFazio T. Teichmann (2004) ArticleTitlePoplar genomics is getting popular: the impact of the poplar genome project on tree research Plant Biol. 6 IssueID1 2–4 Occurrence Handle10.1055/s-2003-44715 Occurrence Handle15095128

    Article  PubMed  Google Scholar 

  • F. Udovicic P.Y. Ladiges (2000) ArticleTitleInformativeness of nuclear and chloroplast DNA regions and the phylogeny of the eucalypts and related genera (Myrtaceae) Kew Bull. 55 633–645

    Google Scholar 

  • F. Udovicic G.I. McFadden P.Y. Ladiges (1995) ArticleTitlePhylogeny of Eucalyptus and Angophora based on 5S rDNA spacer sequence data Mol. Phylogenet. Evol. 4 IssueID3 247–256 Occurrence Handle10.1006/mpev.1995.1023 Occurrence Handle8845962

    Article  PubMed  Google Scholar 

  • R.E. Vaillancourt H.D. Jackson (2000) ArticleTitleA chloroplast DNA hypervariable region in eucalypts Theor. Appl. Genet. 101 IssueID3 473–477 Occurrence Handle10.1007/s001220051505

    Article  Google Scholar 

  • R.E. Vaillancourt A. Petty G.E. McKinnon (2004) ArticleTitleMaternal inheritance of mitochondria in Eucalyptus globulus J. Hered. 95 353–355 Occurrence Handle10.1093/jhered/esh051 Occurrence Handle15247316

    Article  PubMed  Google Scholar 

  • Vaillancourt, R.E., B.M. Potts, A. Manson, J.B. Reid, 1994. Detection of QTLs in a Eucalyptus gunnii × E. globulus F2 using a RAPD linkage map, pp. 63–70, in Proceedings of the International Wood Biotechnology Symposium, edited by N. Morohoshi, Tokyo, Japan.

  • L. Valerio D. Carter J.C. Rodrigues V. Tournier J. Gominho C. Marque A.M. Boudet M. Maunders H. Pereira C. Teulières (2003) ArticleTitleDown regulation of cinnamyl alcohol dehydrogenase, a lignification enzyme, in Eucalyptus camaldulensis Mol. Breed. 12 IssueID2 157–167 Occurrence Handle10.1023/A:1026070725107

    Article  Google Scholar 

  • M.A. Nest ParticleVan Der E.T. Steenkamp B.D. Wingfield M.J. Wingfield (2000) ArticleTitleDevelopment of simple sequence repeat (SSR) markers in Eucalyptus from amplified inter-simple sequence repeats (ISSR) Plant Breed. 119 IssueID5 433–436 Occurrence Handle10.1046/j.1439-0523.2000.00515.x

    Article  Google Scholar 

  • Velini, E.D., M.L.B. Trindade, E. Alves, C.L. Marino, E.S. Mori, I.A. Guerrini, E.L. Furtado, C.F. Wilcken & I.G. Maia, 2004. ESTs of Eucalyptus related with resistance of herbicide inhibitors of ALS (acetolactate synthase) and EPSPS (5-enolpyrovylshikimic acid-3-phosphate) enzymes, Abstract P48, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • D. Verhaegen C. Plomion (1996) ArticleTitleGenetic mapping in Eucalyptus urophylla and Eucalyptus grandis using RAPD markers Genome 39 IssueID6 1051–1061

    Google Scholar 

  • D. Verhaegen C. Plomion J.M. Gion M. Poitel P. Costa A. Kremer (1997) ArticleTitleQuantitative trait dissection analysis in Eucalyptus using RAPD markers.1. Detection of QTL in interspecific hybrid progeny, stability of QTL expression across different ages Theor. Appl. Genet. 95 IssueID4 597–608 Occurrence Handle10.1007/s001220050601

    Article  Google Scholar 

  • C. Voiblet S. Duplessis N. Encelot F. Martin (2001) ArticleTitleIdentification of symbiosis-regulated genes in Eucalyptus globulus-Pisolithus tinctorius ectomycorrhiza by differential hybridization of arrayed cDNAs Plant J. 25 IssueID2 181–191 Occurrence Handle10.1046/j.1365-313x.2001.00953.x Occurrence Handle11169194

    Article  PubMed  Google Scholar 

  • J.M. Watson E.M. Brill (2004) ArticleTitleEucalyptus grandis has at least two functional SOC1-like floral activator genes Funct. Plant Biol. 31 IssueID3 225–234 Occurrence Handle10.1071/FP03181

    Article  Google Scholar 

  • S. Whittock D.A. Steane R.E. Vaillancourt B.M. Potts (2003) ArticleTitleMolecular evidence shows that the tropical boxes (Eucalyptus subgenus Minutifructus) are over-ranked Trans. R. Soc. S. Aust. 127 27–32

    Google Scholar 

  • Wilcken, C.F., D.C. Firmino, D.D. Rosa, E.A. Correa, E.L. Furtado, E.D. Velini, E.S. Mori, I.A. Guerrini, C.L. Marino & L.E.A. Camargo, 2004. DOXP/MEP pathway enzymes genes annotated in Eucalyptus expressed sequence tags of FORESTs database, Abstract P46, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

  • Williams, J.E. & J.C.Z. Woinarski, 1997. Eucalypt Ecology: Individuals to Ecosystems. Cambridge University Press, Cambridge, UK.

  • Yamada-Watanabe, K., A. Kawaoka, E. Matsunaga, K. Nanto, K. Sugita, S. Endo, H. Ebinuma & N. Murata, 2003. Molecular breeding of Eucalyptus – Analysis of salt stress tolerance of transgenic Eucalyptus camaldulensis that overexpress choline oxidase gene (cod A), Abstract S7.9, in Proceedings of “IUFRO Tree Biotechnology 2003”, Umeå, Sweden, Jun. 7–12.

  • J. Yu S.N. Hu J. Wang G.K.S. Wong S.G. Li B. Liu Y.J. Deng L. Dai Y. Zhou X.Q. Zhang M.L. Cao J. Liu J.D. Sun J.B. Tang Y.J. Chen X.B. Huang W. Lin C. Ye W. Tong L.J. Cong J.N. Geng Y.J. Han L. Li W. Li G.Q. Hu X.G. Huang W.J. Li J. Li Z.W. Liu J.P. Liu Q.H. Qi J.S. Liu T. Li X.G. Wang H. Lu T.T. Wu M. Zhu P.X. Ni H. Han W. Dong X.Y. Ren X.L. Feng P. Cui X.R. Li H. Wang X. Xu W.X. Zhai Z. Xu J.S. Zhang S.J. He J.G. Zhang J.C. Xu K.L. Zhang X.W. Zheng J.H. Dong W.Y. Zeng L. Tao J. Ye J. Tan X.D. Ren X.W. Chen J. He D.F. Liu W. Tian C.G. Tian H.G. Xia Q.Y. Bao G. Li H. Gao T. Cao W.M. Zhao P. Li W. Chen X.D. Wang Y. Zhang J.F. Hu S. Liu J. Yang G.Y. Zhang Y.Q. Xiong Z.J. Li L. Mao C.S. Zhou Z. Zhu R.S. Chen B.L. Hao W.M. Zheng S.Y. Chen W. Guo G.J. Li S.Q. Liu M. Tao L.H. Zhu L.P. Yuan H.M. Yang (2002) ArticleTitleA draft sequence of the rice genome (Oryza sativa L. ssp. indica Science 296 IssueID5565 79–92 Occurrence Handle11935017

    PubMed  Google Scholar 

  • M. Zik V.F. Irish (2003) ArticleTitleFlower development: Initiation, differentiation, and diversification Annu. Rev. Cell Dev. Biol. 19 119–140 Occurrence Handle10.1146/annurev.cellbio.19.111301.134635 Occurrence Handle14570566

    Article  PubMed  Google Scholar 

  • Zimback,L., E.S. Mori, M.L.T. Moraes, D.D. Rosa, E.L. Furtado, C.L. Marino, C.F. Wilcken, E.D. Velini, I.A. Guerrini, I.G. Maia & L.E.A. Camargo, 2004. Data mining of Eucalyptus ESTs involved in the mechanisms non hormonal growth genes, Abstract P52, in Plant & Animal Genomes XII Conference, San Diego, CA, Jan. 10–14.

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Fiona S. Poke.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Poke, F.S., Vaillancourt, R.E., Potts, B.M. et al. Genomic Research in Eucalyptus. Genetica 125, 79–101 (2005). https://doi.org/10.1007/s10709-005-5082-4

Download citation

  • Received:

  • Accepted:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s10709-005-5082-4

Keywords

Navigation