Автор |
Gullberg, Urban |
Автор |
Vegerfors, Birgitta |
Дата выпуска |
1987 |
dc.description |
Two series of experiments with Pinus sylvestris L., 10 and 20 years old, were analysed with regard to genotype‐environment interaction. The series cover a wide range of site conditions with regard to length of growing season, environmental differences within localities and spacing between trees. The genetic material comes from factorial crosses in one of the series and a mixture of full‐sib, half‐sib and provenance material in the other. The origin of the parents is south‐central Sweden, and the trials cover approximately the same geographical range as the parent trees. Despite few replicates and large experimental error, the following conclusions could be drawn: (a) genotype‐environment interaction for Pinus sylvestris in south‐central Sweden seems to be of importance for growth capacity, but the reaction differs between young and old plant stages; (b) the origin of the genetic material, as long as it is restricted to south‐central Sweden, does not seem to have any significant effect on genotype‐environment interaction; (c) a large part of the interaction seems to be explained by a linear relationship between the genotypes and an environmental index. |
Формат |
application.pdf |
Издатель |
Taylor & Francis Group |
Копирайт |
Copyright Taylor and Francis Group, LLC |
Тема |
Pinus sylvestris |
Тема |
genotype‐environment interaction |
Тема |
edaphic factors |
Название |
Genotype‐environment interaction in Swedish material of pinus sylvestris |
Тип |
research-article |
DOI |
10.1080/02827588709382479 |
Electronic ISSN |
1651-1891 |
Print ISSN |
0282-7581 |
Журнал |
Scandinavian Journal of Forest Research |
Том |
2 |
Первая страница |
417 |
Последняя страница |
432 |
Аффилиация |
Gullberg, Urban; Department of Forest Genetics, Swedish University of Agricultural Sciences |
Аффилиация |
Vegerfors, Birgitta; Department of Economics and Statistics, Swedish University of Agricultural Sciences |
Выпуск |
1-4 |
Библиографическая ссылка |
Burdon, R. D. 1977. Genetic correlation as a concept for studying genotype‐environment interaction in forest tree breeding. Silvae Genetica, 26: 168–175. |
Библиографическая ссылка |
Eiche, V. 1966. Cold damage and plant mortality in experimental provenance plantations with Scots pine in northern Sweden., (Studia For. Suec. 36) 219Stockholm |
Библиографическая ссылка |
Eriksson, G., Andersson, S., Eiche, V., Ifver, J. and Persson, A. 1980. Severity index and transfer effects on survival and volume production of Pinus sylvestris in northern Sweden., (Studia For. Suec. 156) 32Uppsala |
Библиографическая ссылка |
Finlay, K. W. and Wilkinson, G. N. 1963. The analyses of adaptation in a plant‐breeding programme. Austr. J. Agric. Res., 14: 742–754. |
Библиографическая ссылка |
Gullberg, U. 1984. Characterizing environments in Swedish forestry in order to minimize the effects of genotype x environment interaction., (Studia For. Suec. 166) 25–34. Uppsala |
Библиографическая ссылка |
Gullberg, U. and Kang, H. 1985. Application of a model for tree breeding to conifers in southern Sweden., (Studia For. Suec. 170) 8Uppsala |
Библиографическая ссылка |
Hägglund, B. and Lundmark, J.‐E. 1977. Bonitering med ledning av ståndortsegenskaper (Site index estimation by means of site properties). Sveriges Skogsvårdsforbunds Tidskrift, 5: 437–447. |
Библиографическая ссылка |
Johnsson, H. 1973. “Avkommeprövning av en tallfröplantage baserad på tioåriga avkommor (Progeny test of a pine seed orchard, based on ten‐year‐old test families)”. In Year book, 140–159. Uppsala, , Sweden: Inst. for Forest Tree Improvement. 1972 |
Библиографическая ссылка |
Lerner, I. M. 1954. Genetic homeostasis., Edinburgh: Oliver and Boyd. |
Библиографическая ссылка |
Lindgren, D. 1984. Prediction and optimization of genetic gain with regard to genotype x environment interactions., (Studia For. Suec. 166) 15–24. Uppsala |
Библиографическая ссылка |
Namkoong, G. Plant gene resources: A conservation imperative. AAAS Selected Symposium 87. Strategies for gene conservation in forest tree breeding, Edited by: Yetman, C. W., Kafton, D. and Wilkes, G. pp.79–92. 164Boulder Co, , USA: Westview Press. |
Библиографическая ссылка |
Neider, J. A. 1962. New kinds of systematic designs for spacing of experiments. Biometrics, 18: 283–307. |
Библиографическая ссылка |
Owino, F. and Zobel, B. 1977. Genotype × environment interaction and genotypic stability in loblolly pine. III. Heterosis and heterosis × environment interaction. Silvae Genetica, 26: 114–116. |
Библиографическая ссылка |
Prescher, F. and Ståhl, E. G. 1986. The effect of provenance and spacing on stem straightness and number of spike knots of Scots pine in south and central Sweden., (Studia For. Suec. 172) In press |
Библиографическая ссылка |
SAS Institute Inc. 1982. SAS User's Guide: Statistics , 1982 Edition, 584Cary, NC, , USA: SAS Institute Inc.. |
Библиографическая ссылка |
Shelbourne, C. J. A. and Campbell, R. K. The impact of genotype‐environment interactions on tree improvement strategy. Proc. IUFRO Joint Meeting Working Parties on population and ecological genetics, breeding theory and progeny testing. Bordeaux, France. pp.21 |
Библиографическая ссылка |
Steel, R. G. and Torrie, J. H. 1980. Principles and Procedures of Statistics, A biometrical approach., 633New York: McGraw‐Hill. |
Библиографическая ссылка |
Ståhl, E. G. 1984. Variation in shoot growth phenology among clones and populations of Pinus sylvestris, 103Swedish University of Agricultural Sciences, Department of Forest Yield Research. L. Thesis |