Artículo

Acuña, C.V.; Fernandez, P.; Villalba, P.V.; García, M.N.; Hopp, H.E.; Marcucci Poltri, S.N. "Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus" (2012) Tree Genetics and Genomes. 8(2):289-301
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Abstract:

Eucalyptus globulus is the most commonly planted hardwood species for pulpwood in temperate regions. We aimed to develop and characterize functional molecular markers for population genetic analyses and molecular breeding in this model tree species. Public expressed sequence tag (EST) databases were screened for nonredundant sequences to predict putative gene functions and to discover simple sequence repeats (EST-SSRs), which were then validated in E. globulus and six other Eucalyptus species. A total of 4,924 nonredundant sequences were identified from 12,690 updated E. globulus ESTs. Approximately 19. 3% (952) were unigenes and contained 1,140 EST-SSR markers, which were mainly trimeric (58. 6%). A set of 979 primers for putative SSR markers was designed after bioinformatic analysis. The predicted functions of these ESTs containing SSR were classified according to their gene ontology (GO) categories (biological process, molecular function, and cellular component). GO categories were assigned to 226 ESTs (30. 2%). Most ESTs containing SSR (78. 7%) had significant matches (E ≤ 10 -5) with the nonredundant protein database using BLASTX. From a set of 56 random primer pairs, 37 could be validated in eight E. globulus genotypes and were also tested for cross-transferability to other six Eucalyptus species (Eucalyptus grandis, Eucalyptus saligna, Eucalyptus dunnii, Eucalyptus viminalis, Eucalyptus camaldulensis, Eucalyptus tereticornis). Seventeen polymorphic EST-SSR markers for E. globulus were evaluated in 60 unrelated trees, being representative of the species' natural distribution. As a result, six highly informative markers were proposed for genetic diversity analyses, fingerprinting, and comparative population studies, between different species of E. globulus. © 2011 Springer-Verlag.

Registro:

Documento: Artículo
Título:Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus
Autor:Acuña, C.V.; Fernandez, P.; Villalba, P.V.; García, M.N.; Hopp, H.E.; Marcucci Poltri, S.N.
Filiación:Instituto de Biotecnología, CICVyA, Instituto Nacional de Tecnología Agropecuaria (INTA Castelar), CC 25, Castelar B1712WAA, Argentina
Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina
Palabras clave:EST-SSR; Eucalyptus globulus; Functional diversity; Polymorphism; Transferability; Eucalyptus; Eucalyptus camaldulensis; Eucalyptus dunnii; Eucalyptus globulus; Eucalyptus grandis; Eucalyptus saligna; Eucalyptus tereticornis; Eucalyptus viminalis
Año:2012
Volumen:8
Número:2
Página de inicio:289
Página de fin:301
DOI: http://dx.doi.org/10.1007/s11295-011-0440-0
Título revista:Tree Genetics and Genomes
Título revista abreviado:Tree Genet. Genomes
ISSN:16142942
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_16142942_v8_n2_p289_Acuna

Referencias:

  • Ashburner, M., Ball, C.A., Blake, J.A., Botstein, D., Butler, H., Gene ontology: tool for the unification of biology. The Gene Ontology Consortium (2000) Nat Genet, 25, pp. 25-29. , doi:10.1038/75556
  • Bossinger, G., Leitch, M., Isolation of cambium-specific genes from Eucalyptus globulus Labill (2000) Cell and Molecular Biology of Wood Formation, pp. 203-207. , R. Savidge, J. Barnett, and R. Napier (Eds.), Oxford, UK: BIOS Scientific
  • Botstein, D., White, R.L., Skolnick, M., Davis, R.W., Construction of genetic linkage map in man using restriction length polymorphisms (1980) Am J Hum Genet, 32, pp. 314-331
  • Brondani, R.P., Williams, E.R., Brondani, C., Grattapaglia, D., A microsatellite-based consensus linkage map for species of Eucalyptus and a novel set of 230 microsatellite markers for the genus (2006) BMC Plant Biol, 6, p. 20. , doi:10.1186/1471-2229-6-20
  • Bundock, P.C., Potts, B.M., Vaillancourt, R.E., Detection and stability of quantitative trait loci (QTL) in Eucalyptus globulus (2008) Tree Genet Genome, 4, pp. 85-95. , doi:10.1007/s11295-007-0090-4
  • Byrne, M., Marquezgarcia, M., Uren, T., Smith, D., Moran, G., Conservation and genetic diversity of microsatellite loci in the genus Eucalyptus (1996) Aust J Bot, 44, pp. 331-341. , doi:10.1071/BT9960331
  • Ceresini, P.C., Silva, C.L.S.P., Missio, R.F., Souza, E.C., Fischer, C.N., Satellyptus: analysis and database of microsatellites from ESTs of Eucalyptus (2005) Genet Mol Biol, 28, pp. 589-600. , doi:10.1590/S1415-47572005000400014
  • Cho, Y.G., Ishii, T., Temnykh, S., Chen, X., Lipovich, L., Diversity of microsatellites derived from genomic libraries and GenBank sequences in rice (Oryza sativa L.) (2000) Theor Appl Genet, 100, pp. 713-722. , doi:10.1007/s001220051343
  • Chybicki, I.J., Burczyk, J., Simultaneous estimation of null alleles and inbreeding coefficients (2009) J Hered, 100, pp. 106-113. , doi:10.1093/jhered/esn088
  • Conesa, A., Götz, S., García-Gómez, J.M., Terol, J., Talón, M., Robles, M., Blast2GO: a universal tool for annotation, visualization and analysis in functional genomics research (2005) Bioinformatics, 21, pp. 3674-3676. , doi:10.1093/bioinformatics/bti610
  • Cordeiro, G.M., Casu, R., McIntyre, C.L., Manners, J.M., Henry, R.J., Microsatellite markers from sugarcane (Saccharum spp.) ESTs cross transferable to erianthus and sorghum (2001) Plant Sci, 160, pp. 1115-1123. , doi:10.1016/S0168-9452(01)00365
  • Dauchot, N., Mingeot, D., Purnelle, B., Muys, C., Watillon, B., Boutry, M., van Cutsem, P., Construction of 12 EST libraries and characterization of a 12,226 EST dataset for chicory (Cichorium intybus) root, leaves and nodules in the context of carbohydrate metabolism investigation (2009) BMC Plant Biol, 9, p. 14
  • Dutkowski, G.W., Potts, B.M., Geographic patterns of genetic variation in Eucalyptus globulus ssp. globulus and a revised racial classification (1999) Aust J Bot, 47, pp. 237-263. , doi:10.1071/BT97114
  • Faria, D.A., Mamani, E.M.C., Pappas, M.R., Pappas Jr., G.J., Grattapaglia, D., A selected set of EST-derived microsatellites, polymorphic and transferable across 6 species of Eucalyptus (2010) J Hered, 101, pp. 512-520. , doi:10.1093/jhered/esq024
  • Faria, D.A., Mamani, E.M.C., Pappas, G.J., Grattapaglia, D., Genotyping systems for Eucalyptus based on tetra-, penta-, and hexanucleotide repeat EST microsatellites and their use for individual fingerprinting and assignment tests (2011) Tree Genet Genome, 7, pp. 63-77. , doi: 10. 1007/s11295-010-0315-9
  • Fernandez-Silva, I., Eduardo, I., Blanca, J., Esteras, C., Picó, B., Bin mapping of genomic and EST-derived SSRs in melon (Cucumis melo L.) (2008) Theor Appl Genet, 118, pp. 139-150. , doi:10.1007/s00122-008-0883-3
  • Freeman, J.S., Whittock, S.P., Potts, B.M., Vaillancourt, R.E., QTL influencing growth and wood properties in Eucalyptus globulus (2009) Tree Genet Genome, 5, pp. 713-722. , doi:10.1007/s11295-009-0222-0
  • Glaubitz, J.C., Emebiri, L.C., Moran, G.F., Dinucleotide microsatellites from Eucalyptus sieberi: inheritance, diversity, and improved scoring of single-base differences (2001) Genome, 44, pp. 1041-1045
  • Grattapaglia, D., Genomics of Eucalyptus, a global tree for energy, paper, and wood (2008) Genomics Trop Crop Plant, 1, pp. 259-298. , doi:10.1007/978-0-387-71219-2_11
  • Grattapaglia, D., Kirst, M., Eucalyptus applied genomics: from gene sequences to breeding tools (2008) New Phytol, 179, pp. 911-929. , doi:10.1111/j.1469-8137.2008.02503.x
  • Grattapaglia, D., Resende, M.V.D., Genomic selection in forest tree breeding (2011) Tree Genet Genome, , doi: 10. 1007/s11295-010-0328-4
  • Gupta, P.K., Varshney, R.K., The development and use of microsatellite markers for genetic analysis and plant breeding with emphasis on bread wheat (2000) Euphytica, 113, pp. 163-185. , doi:10.1023/A:1003910819967
  • Harper, G.L., Maclean, N., Goulson, D., Microsatellite markers to assess the influence of population size, isolation and demographic change on the genetic structure of the UK butterfly Polyommatus bellargus (2003) Mol Ecol, 12, pp. 3349-3357. , doi:10.1046/j.1365-294X.2003.02012.x
  • Hoisington, D., Khairallah, M., Gonzalez-de-Leon, D., (1994) Laboratory Protocols: CIMMYT Applied Molecular Genetics Laboratory, , Mexico, DF: CIMMYT
  • Junghans, D.T., Alfenas, A.C., Brommonschenkel, S.H., Oda, S., Mello, E.J., Grattapaglia, D., Resistance to rust (Puccinia psidii Winter) in Eucalyptus: mode of inheritance and mapping of a major gene with RAPD markers (2003) Theor Appl Genet, 108, pp. 175-180. , doi:10.1007/s00122-003-1415-9
  • Kim, K., Ratcliffe, S., Wade French, B., Liu, L., Sappington, T., Utility of EST-derived SSRs as population genetics markers in a beetle (2008) J Hered, 99 (2), pp. 112-124. , doi:10.1093/jhered/esm104
  • Külheim, C., Yeoh, S.H., Maintz, J., Foley, W.J., Moran, G.F., Comparative SNP diversity among four Eucalyptus species for genes from secondary metabolite biosynthetic pathways (2009) BMC Genomics, 10, p. 452. , doi:10.1186/1471-2164-10-452
  • Kumpatla, S.P., Mukhopadhyay, S., Mining and survey of simple sequence repeats in expressed sequence tags of dicotyledonous species (2005) Genome, 48, pp. 985-998. , doi:10.1139/G05-060
  • la Rota, M., Kantety, R., Yu, J.K., Sorrells, M., Nonrandom distribution and frequencies of genomic and EST-derived microsatellite markers in rice, wheat, and barley (2005) BMC Genomics, 6 (1), p. 23. , doi:10.1186/1471-2164-6-23
  • Lima, L.S., Peres Gramacho, K., Pires, J.L., Clement, D., Vanderlei Lopes, U., Carels, N., da Silva Gesteira, A., Micheli, F., Development, characterization, validation, and mapping of SSRs derived from Theobroma cacao L.-Moniliophthora perniciosa interaction ESTs (2010) Tree Genet Genome, 6, pp. 663-676. , doi:10.1007/s11295-010-0282-1
  • Lopez, G.A., Potts, B.M., Dutkowski, G.W., Rodriguez Traverso, J.M., Quantitative genetics of Eucalyptus globulus: affinities of land race and native stand localities (2001) Silvae Genet, 50, pp. 244-252
  • Marcucci Poltri, S.N., Zelener, N., Rodriguez Traverso, J., Gelid, P., Hopp, H.E., Selection of a seed orchard of Eucalyptus dunnii based on genetic diversity criteria calculated using molecular markers (2003) Tree Physiol, 23, pp. 625-632. , doi:10.1093/treephys/23.9.625
  • Marques, C.M., Carocha, V.J., Pereira de Sá, A.R., Oliveira, M.R., Pires, A.M., Sederoff, R., Borralho, N.M.G., Verification of QTL linked markers for propagation traits in Eucalyptus (2005) Tree Genet Genome, 1, pp. 103-108. , doi:10.1007/s11295-005-0013-1
  • Masoudi-Nejad, A., Tonomura, K., Kawashima, S., Moriya, Y., Suzuki, M., EGassembler: online bioinformatics service for large-scale processing, clustering and assembling ESTs and genomic DNA fragments (2006) Nucleic Acids Res, 34, pp. W459-W462. , doi:10.1093/nar/gkl066
  • Metzgar, D., Bytof, J., Wills, C., Selection against frameshift mutations limits microsatellite expansion in coding DNA (2000) Genome Res, 10, pp. 72-80. , doi:10.1101/gr.10.1.72
  • Missiaggia, A.A., Piacezzi, A.L., Grattapaglia, D., Genetic mapping of Eef1, a major effect QTL for early flowering in Eucalyptus grandis (2005) Tree Genet Genome, 1, pp. 79-84. , doi:10.1007/s11295-005-0011-3
  • Morgante, M., Olivieri, A.M., PCR-amplified microsatellites as markers in plant genetics (1993) Plant J, 3, pp. 175-182. , doi:10.1046/j.1365-313X.1993.t01-9-00999.x
  • Morgante, M., Hanafey, M., Powell, W., Microsatellites are preferentially associated with nonrepetitive DNA in plant genomes (2002) Nat Genet, 30, pp. 194-200. , doi:10.1038/ng822
  • Nascimento de Sousa, S., Finkeldey, R., Gailing, O., Experimental verification of microsatellite null alleles in Norway spruce (Picea abies [L.] Karst.): implications for population genetic studies (2005) Plant Mol Biol Rep, 23, pp. 113-119. , doi:10.1007/bf02772701
  • Paniego, N., Echaide, M., Munoz, M., Fernandez, L., Torales, S., Faccio, P., Fuxan, I., Hopp, H.E., Microsatellite isolation and characterization in sunflower (Helianthus annuus L.) (2002) Genome, 45, pp. 34-43. , doi:10.1139/g01-120
  • Peakall, R., Smouse, P.E., Genalex 6: genetic analysis in Excel. Population genetic software for teaching and research (2006) Mol Ecol Notes, 6, pp. 288-295. , doi:10.1111/j.1471-8286.2005.01155.x
  • Poke, F.S., Vaillancourt, R.E., Potts, B.M., Reid, J.B., Genomic research in Eucalyptus (2005) Genetica, 125, pp. 79-101. , doi:10.1007/s10709-005-5082-4
  • Potts, B.M., Vaillancourt, R.E., Jordan, G.J., Dutkowski, G.W., Costa e Silva, J., McKinnon, G.E., Steane, D.A., Borralho, N.M.G., Exploration of the Eucalyptus globulus gene pool (2004) Eucalyptus in a Changing World, pp. 46-61. , Aveiro, Portugal: International IUFRO Conference
  • Powell, W., Morgante, M., Andre, C., Hanafey, M., Vogel, J., Tingey, S., Rafalski, A., The comparison of RFLP, RAPD, AFLP and SSR (microsatellite) markers for germplasm analysis (1996) Mol Breed, 2, pp. 225-238. , doi:10.1007/BF00564200
  • Rabello, E., Nunes de Souza, A., Saito, D., Tsai, S.M., In silico characterization of microsatellites in Eucalyptus spp.: abundance, length variation and transposon associations (2005) Genet Mol Bio, 28, pp. 582-588. , doi:10.1590/S1415-47572005000400013
  • Rasmussen-Poblete, S., Valdés, J., Gamboa, M.C., Valenzuela, P.D.T., Krauskopf, E., Generation and analysis of an Eucalyptus globulus cDNA library constructed from seedlings subjected to low temperature conditions (2008) Electron J Biotechnol, , http://www.ejbiotechnology.info/content/vol11/issue2/full/14/, Pontificia Universidad Católica de Valparaíso, Chile. Available via DIALOG, Accessed Dec 6 2007
  • Rengel, D., San Clemente, H., Servant, F., Ladouce, N., Paux, E., Wincker, P., Couloux, A., Grima-Pettenati, J., A new genomic resource dedicated to wood formation in Eucalyptus (2009) BMC Plant Biol, 9, p. 36. , doi:10.1186/1471-2229-9-36
  • Rozen, S., Skaletsky, H.J., Primer3 on the WWW for general users and for biologist programmers (2000) Bioinformatics Methods and Protocols: Methods in Molecular Biology, pp. 365-386. , S. Krawetz and S. Misener (Eds.), Totowa, NJ: Humana
  • Sharma, R.K., Bhardwaj, P., Negi, R., Mohapatra, T., Ahuja, P.S., Identification, characterization and utilization of unigene derived microsatellite markers in tea (Camellia sinensis L.) (2009) BMC Plant Biol, 9, p. 53. , doi:10.1186/1471-2229-9-53
  • Steane, D.A., Vaillancourt, R.E., Russell, J., Powell, W., Marshall, D., Potts, B.M., Development and characterisation of microsatellite loci in Eucalyptus globulus (Myrtaceae) (2001) Silvae Genet, 50, pp. 89-91
  • Temnykh, S., Declerck, G., Lukashova, A., Lipovich, L., Cartinhour, S., McCouch, S., Computational and experimental analysis of microsatellites in rice (Oryza sativa L.): frequency, length variation, transposon associations, and genetic marker potential (2001) Genome Res, 11, pp. 1441-1452. , doi:10.1101/gr.184001
  • Teulières, C., Marque, C., Eucalyptus (2007) Transgenic Crops, 60, pp. 387-406. , E. C. Pua and M. R. Davey (Eds.), Berlin: Springer
  • Thamarus, K., Groom, K., Bradley, A., Raymond, C.A., Schimleck, L.R., Williams, E.R., Moran, G.F., Identification of quantitative trait loci for wood and fibre properties in two full-sib properties of Eucalyptus globulus (2004) Theor Appl Genet, 109, pp. 856-864. , doi:10.1007/s00122-004-1699-4
  • Thiel, T., Michalek, W., Varshney, R.K., Graner, A., Exploiting EST databases for the development and characterization of gene-derived SSR-markers in barley (Hordeum vulgare L.) (2003) Theor Appl Genet, 106, pp. 411-422. , doi:10.1007/s00122-002-1031-0
  • Thumma, B.R., Southerton, S.G., Bell, J.C., Owen, J.V., Henery, M.L., Moran, G.F., Quantitative trait locus (QTL) analysis of wood quality traits in Eucalyptus nitens (2010) Tree Genet Genome, 6, pp. 305-317. , doi:10.1007/s11295-009-0250-9
  • van der Nest, M.A., Steenkamp, E.T., Wingfield, B.D., Wingfield, M.J., Development of simple sequence repeat (SSR) markers in Eucalyptus from amplified inter-simple sequence repeats (ISSR) (2000) Plant Breed, 119, pp. 433-436. , doi:10.1046/j.1439-0523.2000.00515.x
  • Voiblet, C., Duplessis, S., Encelot, N., Martin, F., Identification of symbiosis-regulated genes in Eucalyptus globulus-Pisolithus tinctorius ectomycorrhiza by differential hybridization of arrayed cDNAs (2001) Plant J, 25, pp. 181-191. , doi:10.1111/j.1365-313X.2001.00953.x
  • Yasodha, R., Sumathi, R., Chezhian, P., Kavitha, S., Ghosh, M., Eucalyptus microsatellites mined in silico: survey and evaluation (2008) J Genet, 87, pp. 21-25. , doi:10.1007/s12041-008-0003-9
  • Zhang, L.Y., Bernard, M., Leroy, P., Feuillet, C., Sourdille, P., High transferability of bread wheat EST-derived SSRs to other cereals (2005) Theor Appl Genet, 111, pp. 677-687. , doi:10.1007/s00122-005-2041-5

Citas:

---------- APA ----------
Acuña, C.V., Fernandez, P., Villalba, P.V., García, M.N., Hopp, H.E. & Marcucci Poltri, S.N. (2012) . Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus. Tree Genetics and Genomes, 8(2), 289-301.
http://dx.doi.org/10.1007/s11295-011-0440-0
---------- CHICAGO ----------
Acuña, C.V., Fernandez, P., Villalba, P.V., García, M.N., Hopp, H.E., Marcucci Poltri, S.N. "Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus" . Tree Genetics and Genomes 8, no. 2 (2012) : 289-301.
http://dx.doi.org/10.1007/s11295-011-0440-0
---------- MLA ----------
Acuña, C.V., Fernandez, P., Villalba, P.V., García, M.N., Hopp, H.E., Marcucci Poltri, S.N. "Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus" . Tree Genetics and Genomes, vol. 8, no. 2, 2012, pp. 289-301.
http://dx.doi.org/10.1007/s11295-011-0440-0
---------- VANCOUVER ----------
Acuña, C.V., Fernandez, P., Villalba, P.V., García, M.N., Hopp, H.E., Marcucci Poltri, S.N. Discovery, validation, and in silico functional characterization of EST-SSR markers in Eucalyptus globulus. Tree Genet. Genomes. 2012;8(2):289-301.
http://dx.doi.org/10.1007/s11295-011-0440-0