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Original Articles

Phenotypic changes in progenies of northern clones of Picea abies (L.) Karst. grown in a southern seed orchard

II. Seasonal growth rhythm and height in field trials

Pages 331-341 | Accepted 12 Sep 1988, Published online: 10 Dec 2008

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Tore Skrøppa. (2022) Epigenetic memory effects in Norway spruce: are they present after the age of two years?. Scandinavian Journal of Forest Research 37:1, pages 6-13.
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Thomas Mørtvedt Solvin & Arne Steffenrem. (2019) Modelling the epigenetic response of increased temperature during reproduction on Norway spruce phenology. Scandinavian Journal of Forest Research 34:2, pages 83-93.
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Gunnar Jansson, Jon Kehlet Hansen, Matti Haapanen, Harald Kvaalen & Arne Steffenrem. (2017) The genetic and economic gains from forest tree breeding programmes in Scandinavia and Finland. Scandinavian Journal of Forest Research 32:4, pages 273-286.
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Gösta Eriksson, Ingegerd Dormling & Lennart Norell. (1994) Genetic variation in photoperiodic preconditioning in Pinus sylvestris L. seedlings. Scandinavian Journal of Forest Research 9:1-4, pages 218-225.
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Olavi Junttila & Gisle Skaret. (1990) Growth and survival of seedlings of various picea species under northern climatic conditions. Scandinavian Journal of Forest Research 5:1-4, pages 69-81.
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Øystein Johnsen, Jon Dietrichson & Gisle Skaret. (1989) Phenotypic changes in progenies of northern clones of Picea abies (L.) Karst. grown in a southern seed orchard. Scandinavian Journal of Forest Research 4:1-4, pages 343-350.
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Øystein Johnsen. (1989) Phenotypic changes in progenies of northern clones of Picea abies (L) Karst. grown in a southern seed orchard. Scandinavian Journal of Forest Research 4:1-4, pages 317-330.
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Articles from other publishers (15)

Lilian P. Matallana-Ramirez, Ross W. Whetten, Georgina M. Sanchez & Kitt G. Payn. (2021) Breeding for Climate Change Resilience: A Case Study of Loblolly Pine (Pinus taeda L.) in North America. Frontiers in Plant Science 12.
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María Vivas, Michael J. Wingfield & Bernard Slippers. (2020) Maternal effects should be considered in the establishment of forestry plantations. Forest Ecology and Management 460, pages 117909.
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J Katrevics, U Neimane, B Dzerina, M Kitenberga, J Jansons & A Jansons. (2018) Environmental factors affecting formation of lammas shoots in young stands of Norway spruce (Picea abies Karst.) in Latvia. iForest - Biogeosciences and Forestry 11:6, pages 809-815.
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Elena Carneros, Igor Yakovlev, Marcos Viejo, Jorunn E. Olsen & Carl Gunnar Fossdal. (2017) The epigenetic memory of temperature during embryogenesis modifies the expression of bud burst-related genes in Norway spruce epitypes. Planta 246:3, pages 553-566.
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Heikki HänninenHeikki Hänninen. 2016. Boreal and Temperate Trees in a Changing Climate. Boreal and Temperate Trees in a Changing Climate 217 250 .
Igor Yakovlev, Carl Gunnar Fossdal, Tore Skrøppa, Jorunn E. Olsen, Anne Hope Jahren & Øystein Johnsen. (2012) An adaptive epigenetic memory in conifers with important implications for seed production. Seed Science Research 22:2, pages 63-76.
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Tore SkrøppaKetil KohmannØystein JohnsenArne SteffenremØyvind M. Edvardsen. (2007) Field performance and early test results of offspring from two Norway spruce seed orchards containing clones transferred to warmer climates. Canadian Journal of Forest Research 37:3, pages 515-522.
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Igor A. Yakovlev, Carl-Gunnar Fossdal, Øystein Johnsen, Olavi Junttila & Tore Skrøppa. (2006) Analysis of gene expression during bud burst initiation in Norway spruce via ESTs from subtracted cDNA libraries. Tree Genetics & Genomes 2:1, pages 39-52.
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Øystein Johnsen, Ola Gram Dæhlen, Geir Østreng & Tore Skrøppa. (2005) Daylength and temperature during seed production interactively affect adaptive performance of Picea abies progenies . New Phytologist 168:3, pages 589-596.
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ØYSTEIN JOHNSEN, CARL GUNNAR FOSSDAL, NINA NAGY, JØRGEN MØLMANN, OLA GRAM DæHLEN & TORE SKRØPPA. (2005) Climatic adaptation in Picea abies progenies is affected by the temperature during zygotic embryogenesis and seed maturation . Plant, Cell & Environment 28:9, pages 1090-1102.
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Marilyn L Cherry & Yousry A El-Kassaby. (2002) Growth, morphology, and cold hardiness of Chamaecyparis nootkatensis seedlings originating from an abbreviated reproductive cycle . Canadian Journal of Forest Research 32:1, pages 52-58.
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Øystein Johnsen & Tore Skrøppa. (2000) Provenances and families show different patterns of relationship between bud set and frost hardiness in Picea abies . Canadian Journal of Forest Research 30:12, pages 1858-1866.
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Tore Skrøppa & Øystein Johnsen. 1999. Forest Genetics and Sustainability. Forest Genetics and Sustainability 49 58 .
Øystein Johnsen & Tore Skrøppa. 1997. Adaptation in Plant Breeding. Adaptation in Plant Breeding 81 85 .
Øystein Johnsen & Tore Skrøppa. (1996) Adaptive properties of Picea abies progenies are influenced by environmental signals during sexual reproduction. Euphytica 92:1-2, pages 67-71.
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