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Bird, A., 2002: DNA methylation patterns and epigenetic memory. Genes & Development, 16:6-21. 10.1101/gad.94710211782440Search in Google Scholar

Bossdorf, O., Richards, C. L., Pigliucci, M., 2008: Epigenetics for ecologists. Ecology Letters, 11:106-115. Search in Google Scholar

Bräutigam, K., Vining, K. J., Lafon-Placette, C., Fossdal, C.G., Mirouze, M., Marcos, J. G. et al., 2013: Epigenetic regulation of adaptive responses of forest tree species to the environment. Ecology and Evolution, 3:399-415.10.1002/ece3.461358664923467802Open DOISearch in Google Scholar

Brenet, F., Moh, M., Funk, P., Feierstein, E., Viale, A. J., Socci, N.D. et al., 2011: DNA methylation of the first exon is tightly linked to transcriptional silencing. PLoS ONE: e14524 10.1371/journal.pone.0014524302258221267076Search in Google Scholar

Chan, S. W., Henderson, I. R., Jacobsen, S. E., 2005: Gardening the genome: DNA methylation in Arabidopsis thaliana. Nature Reviews Genetics, 6:351-360. 10.1038/nrg160115861207Open DOISearch in Google Scholar

Chwedorzewska, K. J., Bednarek, P. T., 2011: Genetic and epigenetic studies on populations of Deschampsia antarctica Desv. from contrasting environments on King George Island. Polish Polar Research, 32:15-26. 10.2478/v10183-011-0005-9Open DOISearch in Google Scholar

Dormling, I., Johnsen, Ø., 1992: Effects of the parental environment on full-sib families of Pinus sylvestris. Canadian journal of Forest Research, 22:88-100. 10.1139/x92-013Open DOISearch in Google Scholar

Flegr, J., 2002: Was Lysenko (partly) right? Michurinist biology in the view of modern plant physiology and genetics. Rivista di Biologia, 95:258-72. Search in Google Scholar

Flusberg, B. A., Webster, D., Lee, J., Travers, K., Olivares, E., Clark, T. A. et al., 2010: Direct detection of DNA methylation during single-molecule real-time sequencing. Nature Methods, 7:461-465. 10.1038/nmeth.1459287939620453866Open DOISearch in Google Scholar

Fraga, M. F., Rodriguez, R., Canal, M. J., 2002: Genomic DNA methylation-demethylation during aging and reinvigoration of Pinus radiata. Tree Physiology, 22:813-816.10.1093/treephys/22.11.81312184986Open DOISearch in Google Scholar

Fulneček, J., Kovařík, A., 2014: How to interpret Methylation Sensitive Amplified Polymorphism (MSAP) profiles? BMC Genetics, 15:2. 10.1186/1471-2156-15-2389058024393618Open DOISearch in Google Scholar

Gömöry, D., Foffová, E., Longauer, R., Krajmerová, D., 2015: Memory effects associated with the earlygrowth environment in Norway spruce and European larch. European Journal of Forest Research, 134:89-97.10.1007/s10342-014-0835-1Search in Google Scholar

Gourcilleau, D., Bogeat-Triboulot, M. B., Le Thiec, D., Lafon-Placette, C., Delaunay, A., El-Soud, W.A. et al., 2010: DNA methylation and histone acetylation: genotypic variations in hybrid poplars, impact of water deficit and relationships with productivity. Annals of Forest Sciences, 67:208.10.1051/forest/2009101Search in Google Scholar

Greenwood, M. S., Hutchison, K. W., 1996: Genetic after effects of increased temperature in Larix. In: Hom, J., Birdsey, R., O’Brian, K. (eds.): Proceedings of the 1995 Meeting of the Northern Global Change Program, USDA Forest Service report, Radnor, p. 56-62. Search in Google Scholar

Gugger, P. F., Fitz-Gibbon, S., Pellegrini, M., Sork, V. L., 2016: Species-wide patterns of DNA methylation variation in Quercus lobata and their association with climate gradients. Molecular Ecology, 25:1665-1680.10.1111/mec.1356326833902Open DOISearch in Google Scholar

Hamanishi, E. T., Campbell, M. M., 2011: Genomewide responses to drought in forest trees. Forestry, 84:273-283. 10.1093/forestry/cpr012Open DOISearch in Google Scholar

Hashimoto, H., Vertino, P. M., Cheng, X., 2010: Molecular coupling of DNA methylation and histone methylation. Epigenomics, 2:657-669. 10.2217/epi.10.44303984621339843Search in Google Scholar

Hsieh, J., Gage, F. H., 2005: Chromatin remodelling in neural development and plasticity. Current Opinion in Cell Biology, 17:664-671. 10.1016/j.ceb.2005.09.00216226449Open DOISearch in Google Scholar

Jablonka, E., Raz, G., 2009: Transgenerational epigenetic inheritance: prevalence, mechanisms, and implications for the study of heredity and evolution. The Quarterly Review of Biology, 84:131-176. 10.1086/59882219606595Search in Google Scholar

Johnsen, Ø., 1989: Phenotypic changes in progenies of northern clones of Picea abies (L.) Karst. grown in a southern seed orchard. I. Frost hardiness in a phytotron experiment. Scandinavian Journal of Forest Research, 4:317-330. 10.1080/02827588909382569Open DOISearch in Google Scholar

Johnsen, Ø., Dæhlen, O. G., Østreng, G., Skrøppa, T., 2005b: Daylength and temperature during seed production interactively affect adaptive performance of Picea abies progenies. New Phytologist, 168:589-596. 10.1111/j.1469-8137.2005.01538.x16313642Search in Google Scholar

Johnsen, Ø., Fossdal, C. G., Nagy, N., Mølmann, J., Dæhlen, O. G., Skrøppa, T., 2005a: Climatic adaptation in Picea abies progenies is affected by the temperature during zygotic embryogenesis and seed maturation. Plant, Cell and Environment, 28:1090-1102. 10.1111/j.1365-3040.2005.01356.xOpen DOISearch in Google Scholar

Kramer, K., Ducousso, A., Gömöry, D., Hansen, J.K., Ionita, L., Liesebach, M. et al., 2017: Chilling and forcing requirements for foliage bud burst of European beech (Fagus sylvatica L.) differ between provenances and are phenotypically plastic. Agricultural and Forest Meteorology, 234:172-181.10.1016/j.agrformet.2016.12.002Search in Google Scholar

Maunakea, A. K., Chepelev, I., Cui, K., Zhao, K., 2013: Intragenic DNA methylation modulates alternative splicing by recruiting MeCP2 to promote exon recognition. Cell Research, 23:1256-1269. 10.1038/cr.2013.110Open DOISearch in Google Scholar

Melnikov, A. A., Gartenhaus, R. B., Levenson, A. S., Motchoulskaia, N. A., Levenson, V. V., 2005: MSREPCR for analysis of gene-specific DNA methylation. Nucleic Acid Research, 33: e93 10.1093/nar/gni092Search in Google Scholar

Miura, A., Yonebayashi, S., Watanabe, K., Toyama, T., Shimada, H., Kakutani, T., 2001: Mobilization of transposons by a mutation abolishing full DNA methylation in Arabidopsis. Nature, 411:212-214. 10.1038/35075612Search in Google Scholar

Murray, I. A., Clark, T. A., Morgan, R. D., Boitano, M., Anton, B. P., Luong, K. et al., 2012. The methylomes of six bacteria. Nucleic Acids Research, 2012:1-13. Search in Google Scholar

Neumann, B., Barlow, D. P., 1996: Multiple roles for DNA methylation in gametic imprinting. Current Opinion in Genetics & Development, 6:159-163.10.1016/S0959-437X(96)80045-1Open DOISearch in Google Scholar

Oakes, C. C., La Salle, S., Robaire, B., Trasler, J. M., 2006: Evaluation of a quantitative DNA methylation analysis technique using methylation-sensitive/ dependent restriction enzymes and real-time PCR. Epigenetics, 3:146-152 . 10.4161/epi.1.3.339217965615Open DOISearch in Google Scholar

Raj, S., Bräutigam, K., Hamanishi, E. T., Wilkins, O., Schroeder, W., Mansfield, S. D. et al., 2011: Clone history shapes Populus drought responses. Proceedings of the National Academy of Sciences of the United States of America, 108:12521-12526. 10.1073/pnas.1103341108314574221746919Search in Google Scholar

Raja, P., Sanville, B. C., Buchmann, C., Bisaro, D. M., 2008: Viral genome methylation as an epigenetic defense against geminiviruses. Journal of Virology, 82:8997-9007. 10.1128/JVI.00719-08254689818596098Open DOISearch in Google Scholar

Rehfeldt, G. E., Tchebakova, N. M. , Parfenova, Y. I. , Wykoff, W. R. , Kuzmina, N. A., Milyutin, L. I., 2002: Intraspecific responses to climate in Pinus sylvestris. Global Change Biology, 8:912-929. 10.1046/j.1365-2486.2002.00516.xSearch in Google Scholar

Rohde, A., Junttila, O., 2008: Remembrances of an embryo: long-term effects on phenology traits in spruce. New Phytologist, 177:2-5. 10.1111/j.1469-8137.2007.02319.x18078467Search in Google Scholar

Santamaria, M. E., Hasbun, R., Valera, M. J., 2009: Acetylated H4 histone and genomic DNA methylation patterns during bud set and bud burst in Castanea sativa. Journal of Plant Physiology, 166:1360-1369. 10.1016/j.jplph.2009.02.01419376609Search in Google Scholar

Schreiber, J., Wescoe, Z. L., Abu-Shumays, R., Vivian, J. T., Baatar, B., Karplus, K. et al., 2013: Error rates for nanopore discrimination among cytosine, methylcytosine, and hydroxymethylcytosine along individual DNA strands. Proceedings of the National Academy of Sciences of the United States of America, 47:18910-18915. 10.1073/pnas.1310615110383971224167260Search in Google Scholar

Skrøppa, T., Tollefsrud, M., Sperisen, C., Johnsen, Ø., 2010: Rapid change in adaptive performance from one generation to the next in Picea abies - Central European trees in a Nordic environment. Tree Genetics and Genomes, 6:93-99. 10.1007/s11295-009-0231-zOpen DOISearch in Google Scholar

Soppe, W. J. J., Jasencakova, Z., Houben, A., Kakutani, T., Meister, A., Huang, M.S. et al., 2002: DNA methylation controls histone H3 lysine 9 methylation and heterochromatin assembly in Arabidopsis. The EMBO Journal, 23:6549-6559. 10.1093/emboj/cdf65713696012456661Search in Google Scholar

Soyfer, V. N., 2011: Stalin and fighters against cellular theory. Studies in the History of Biology, 3:82-96. Search in Google Scholar

Stoehr, M. U., L’Hirondelle, S. J. , Binder, W. D., Webber, J. E., 1998: Parental environment after effects on germination, growth, and adaptive traits in selected spruce families. Canadian Journal of Forest Research, 28:418-426. 10.1139/x98-012Open DOISearch in Google Scholar

Suzuki, M. M., Bird, A., 2008: DNA methylation landscapes: provocative insights from epigenomics. Nature Reviews Genetics, 9:465-476. 10.1038/nrg234118463664Open DOISearch in Google Scholar

Thumma, B. R., Matheson, B. A., Zhang, D., Meeske, C., Meder, R., Downes, G. M. et al., 2009: Identification of a cis-acting regulatory polymorphism in a Eucalypt COBRAlike gene affecting cellulose content. Genetics, 183:1153-1164. 10.1534/genetics.109.106591277896719737751Search in Google Scholar

Turner, B. M., 2000: Histone acetylation and an epigenetic code. Bioessays, 22:836-845. Valledor, L., Hasbún, R., Meijón, M., 2007: Involvement of DNA methylation in tree development and micropropagation. Plant Cell Tissue and Organ Culture, 91:75-86. 10.1007/s11240-007-9262-zSearch in Google Scholar

Vanyushin, B. F., 2005: Adenine methylation in eukaryotic DNA. Molecular Biology, 39:473-481. 10.1007/s11008-005-0064-2Search in Google Scholar

Webber, J., Ott, P., Owens, J., Binder, W., 2005: Elevated temperature during reproductive development affects cone traits and progeny performance in Picea glauca - engelmannii complex. Tree Physiology, 25:1219-1227. 10.1093/treephys/25.10.121916076771Open DOISearch in Google Scholar

Wu, T. P., Wang, T., Seetin, M. G., Lai, Y. Q., Zhu, S. J., Lin, K. X. et al., 2016: DNA methylation on N6-adenine in mammalian embryonic stem cells. Nature, 532:329-333. 10.1038/nature17640497784427027282Search in Google Scholar

Yakovlev, I. A., Fossdal, C. G., Johnsen, Ø., 2010: Micro- RNAs, the epigenetic memory and climatic adaptation in Norway spruce. New Phytologist, 187:1154-1169.10.1111/j.1469-8137.2010.03341.x20561211Search in Google Scholar

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