Juvenile radiata pine clonal seed orchard management in Galicia (NW Spain)

被引:1
作者
V. Codesido
J. Fernández-López
机构
[1] EEZ-CSIC,
[2] CIF-Lourizán,undefined
来源
European Journal of Forest Research | 2014年 / 133卷
关键词
Seed orchard; Fertility variation; Genetic diversity; Maleness index;
D O I
暂无
中图分类号
学科分类号
摘要
A juvenile radiata pine clonal seed orchard (Pinus radiata D. Don) in Sergude (northwestern Spain), comprising 57 clones, was evaluated for fertility, offspring diversity and genetic drift during 4 years. Flower and fruit production was used to asses clone fertility in the orchard. Fertility variation measured as “sibling coefficient” was found to be an average of 1.5, having high genetic diversity (0.99) and low coancestry (0.013). The clones varied in fertility from year to year. Effective population size in the orchard was between 35 and 40, indicating that between 60.30 and 69 %, the clones contributed effectively to seed yield. One way to improve seed yield in the orchard is by increasing the effective population size. Thinning and pruning highly reproductive clones of gibberellin application might be useful in increasing effective population size. The orchard’s parental balance showed consistent improvement over time. Cone and seed characteristics were also investigated. The results showed that significant genetic variation exists among clones for cone width and length; total, sound and empty seed number; as well as 100 seed weight. The seed orchard is still in a juvenile phase; moreover, the broad-sense heritability and variation data obtained in this study could be very valuable in the management practices of the existing radiata pine clonal seed orchard and can be also used for better planning of advanced generation of clonal seed orchards in Spain.
引用
收藏
页码:177 / 190
页数:13
相关论文
共 152 条
  • [1] Allison T(1990)Pollen production and plant density affect pollination and seed production in Ecology 71 516-522
  • [2] Askew GR(1988)Estimation of gamete pool composition in clonal seed orchards Silvae Genet 37 227-232
  • [3] Barrett JD(1987)The mating system in a black spruce clonal seed orchard Can J For Res 17 379-382
  • [4] Knowles PH(1991)Isozyme genetic variation and heterozygosity in random tree samples and selected orchard clones from the same Norway spruce populations For Ecol Manag 46 39-47
  • [5] Cheliak WM(1997)Flowering and cone production variability and its effect on parental balance in a Scots pine clonal seed orchard Ann Sci For 54 129-144
  • [6] Bergmann F(1986)Clonal and annual variation in cone production in loblolly pine seed orchards For Sci 32 1067-1073
  • [7] Ruetz W(1993)Estimation of clonal contribution to cone and seed crops in a Stika spruce seed orchard Ann Sci For 50 461-467
  • [8] Burczyk J(1994)Genetic diversity in a seed production population vs natural population of Sitka spruce Biodivers Conserv 3 512-523
  • [9] Chalupka W(1988)Genetic effects of phenotypic selection in white spruce For Ecol Manag 24 139-149
  • [10] Byram TD(1967)Group inbreeding and coancestry Genetics 56 89-104