Stand characteristic models for genetically improved and unimproved silver birch plantations in southern and central Finland

The genetic gain from improved seedlings in silver birch (Betula pendula) plantations in Finland is receiving increasing attention, yet quantitative knowledge of their growth characteristics remains limited. This study developed stand characteristic models for silver birch plantations to predict growth differences between genetically improved and unimproved stands. Response variables were basal area–weighted mean height (HW, m), mean diameter (DW, cm), and stand basal area (G, m² ha−¹). Data comprised 2,183 plot observations from thinning, spacing, and breeding trials, and commercial forests across Finland (1,954 unimproved, 229 improved). Modelling employed a multivariate mixed-effects approach using seemingly unrelated regression with a random site intercept. Predictor variables included site index, stand age, number of trees, a dummy for former agricultural land, and thinning-related variables. The genetic improvement dummy variable was statistically significant in the DW and G models (p < 0.0001), reflecting superior stand yield. HW values in improved stands were higher than in unimproved stands, based on greater dominant height and site index for the improved stands as indicated by simulation results. Model fit statistics and simulations demonstrated logical predictive behaviour and reliability. The models can be used in forest decision-support systems for managing silver birch plantations, particularly those established with genetically improved material.HIGHLIGHTSModels for mean height, diameter, and stand basal area were developed for birch.Model performance differed between improved and unimproved birch stands.Improved stands showed superior stand characteristics and a higher site index.A genetic dummy variable explained superior mean diameter and stand basal area.Thinning simulations showed logical behaviour and reliability for practical use.

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Publication Details

Journal
Scandinavian Journal of Forest Research
Published
2026-09-15
DOI
https://doi.org/10.1080/02827581.2026.2732006
Primary Topic
Forest ecology and management
Type
article
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article

Stand characteristic models for genetically improved and unimproved silver birch plantations in southern and central Finland

Jari Miina, Matti Haapanen, Saija Huuskonen, Pentti Niemistö et al.
Scandinavian Journal of Forest Research
Forest ecology and management
article

Stand characteristic models for genetically improved and unimproved silver birch plantations in southern and central Finland

Jari Miina, Matti Haapanen, Saija Huuskonen, Pentti Niemistö, Simone Bianchi, Harri Mäkinen, Jouni Siipilehto, Lauri Männistö, Daesung Lee
article en

Abstract

The genetic gain from improved seedlings in silver birch (Betula pendula) plantations in Finland is receiving increasing attention, yet quantitative knowledge of their growth characteristics remains limited. This study developed stand characteristic models for silver birch plantations to predict growth differences between genetically improved and unimproved stands. Response variables were basal area–weighted mean height (HW, m), mean diameter (DW, cm), and stand basal area (G, m² ha−¹). Data comprised 2,183 plot observations from thinning, spacing, and breeding trials, and commercial forests across Finland (1,954 unimproved, 229 improved). Modelling employed a multivariate mixed-effects approach using seemingly unrelated regression with a random site intercept. Predictor variables included site index, stand age, number of trees, a dummy for former agricultural land, and thinning-related variables. The genetic improvement dummy variable was statistically significant in the DW and G models (p < 0.0001), reflecting superior stand yield. HW values in improved stands were higher than in unimproved stands, based on greater dominant height and site index for the improved stands as indicated by simulation results. Model fit statistics and simulations demonstrated logical predictive behaviour and reliability. The models can be used in forest decision-support systems for managing silver birch plantations, particularly those established with genetically improved material.HIGHLIGHTSModels for mean height, diameter, and stand basal area were developed for birch.Model performance differed between improved and unimproved birch stands.Improved stands showed superior stand characteristics and a higher site index.A genetic dummy variable explained superior mean diameter and stand basal area.Thinning simulations showed logical behaviour and reliability for practical use.

Scandinavian Journal of Forest Research
Natural Resources Institute Finland (FI), Metsähallitus (Finland) (FI)
Life in Land
Openalex Percentile: Top 8%
Forest ecology and management
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