Genetic analysis and clonal stability of two yellow cypress clonal populations in British Columbia

Author:

Baltunis B. S.1,Russell J. H.2,Niejenhuis A.Van3,Barker J.4,El-Kassaby Y. A.5

Affiliation:

1. Consultant – Forest Genetics, Davis , IL 61019, Canada

2. British Columbia Forest Service, Cowichan Lake Research Station, Box 335, Mesachie Lake , BC, Canada

3. Saanich Forestry Centre, Western Forest Products Inc., 8067 East Saanich Road, Saanichton , BC, Canada

4. 1406 McNair Drive, North Vancouver , BC V7K 1X5, Canada

5. Forest Sciences Department, Faculty of Forestry, The University of British Columbia, Vancouver , BC, Canada

Abstract

Abstract Genetic analysis of height and form at age 12 years of 697 yellow cypress (Callitropsis nootkatensis [D. Don] Oerst.) clones tested across seven sites in coastal British Columbia (BC) were explored in populations: Population 1 - No Pedigree and Population 2 - Reconstructed Pedigree. Genetic variances were statistically significant but generally higher σ̂g 2 was observed for Population 2. Height and form were under low to moderate genetic control as indicated by clonal repeatability and estimates were relatively similar between populations. For example, average Ĥ2 in Population 2 was 0.31 for height (range: 0.18-0.45) and 0.22 for form (range: 0.06-0.32). While average Ĥ2 in Population 1 was 0.25 for height (range: 0.19-0.35) and 0.18 for form (range: 0.09-0.27). The reconstructed pedigree in Population 2 allowed partitioning the genetic variance (σ̂g 2) into component parts of additive (σ̂a 2), specific combining ability (σ̂s 2 ), and clone (σ̂c 2 ); however, general lack of structure within the population resulted in variance components to be estimated with little precision for additive and specific combining ability. The majority of genetic variation was associated with clone for both traits. For example, σ̂c 2 accounted for 57.6% and 62.5% of the total genetic variance for height and form, respectively. Growth and form responses of clones across test environments were relatively stable and overall type-B genetic correlations were in excess of 0.8 for both traits implying clones selected for production populations should respond favorably across the seed planning zone for yellow cypress in coastal BC.

Publisher

Walter de Gruyter GmbH

Subject

Genetics,Forestry

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