Genetic evaluation of haploid clonal lines of a single donor plant of Populus maximowiczii.
Identifieur interne : 004C81 ( Main/Exploration ); précédent : 004C80; suivant : 004C82Genetic evaluation of haploid clonal lines of a single donor plant of Populus maximowiczii.
Auteurs : M. Stoehr [Canada] ; L. ZsuffaSource :
- TAG. Theoretical and applied genetics. Theoretische und angewandte Genetik [ 0040-5752 ] ; 1990.
Abstract
Haploid clonal lines derived from anthers of a single donor plant of Populus maximowiczii were evaluated for several quantitative traits. In a nursery test, variances due to clonal lines ranged from 8% to 12% of the phenotypic variance in growth cessation and flushing date, respectively. No variance in relative shoot growth rate was associated with clonal lines. In a greenhouse study, gametoclonal variance in several leaf morphology traits ranged from 9% to 37% of the total variance. In relative wood density, variation due to haploid lines accounted for 25% of the total variance. In an isozyme analysis of 20 haploid and dihaploid plants, significant non-Mendelian segregation in isocitrate dehydrogenase was detected. The implications of these results for tree breeding are discussed.
DOI: 10.1007/BF00226747
PubMed: 24221004
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">Haploid clonal lines derived from anthers of a single donor plant of Populus maximowiczii were evaluated for several quantitative traits. In a nursery test, variances due to clonal lines ranged from 8% to 12% of the phenotypic variance in growth cessation and flushing date, respectively. No variance in relative shoot growth rate was associated with clonal lines. In a greenhouse study, gametoclonal variance in several leaf morphology traits ranged from 9% to 37% of the total variance. In relative wood density, variation due to haploid lines accounted for 25% of the total variance. In an isozyme analysis of 20 haploid and dihaploid plants, significant non-Mendelian segregation in isocitrate dehydrogenase was detected. The implications of these results for tree breeding are discussed. </div>
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