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Selection perspectives for genetic improvement of wood stiffness in hybrid larch (Larix x eurolepis Henry)

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Abstract

Genetic variability of modulus of elasticity (MOE) was investigated in three genetic trials, including two progeny (16 years old) and one clonal (19 years old) trials of hybrid larch (Larix x eurolepis Henry). MOE was directly assessed on standing trees using the Rigidimeter, a bending device, and related to other traits including height, BH diameter and wood density. Mean MOE ranged from 5,183 to 9,228 MPa among families in the progeny trials and from 4,591 to 11,486 MPa in the clonal trial. Among traits studied, MOE was one of the most variable traits. It was strongly and positively related to wood density at both the individual and genotype mean levels. Interestingly too, wood stiffness did not seem, or only weakly, unfavourably linked to stem diameter at the phenotypical level, but it was negatively or not correlated to diameter at the genetic level. As well, MOE showed a high GxE stability over the two progeny trial sites. Narrow-sense heritabilities for MOE were moderate (around 0.36). In all three trials, they were lower than those for wood density or total height, and of the same level as for diameter. Improvement of wood stiffness of hybrid larch using the Rigidimeter seems possible and promising genetic gains are expected. Impacts of selection for growth traits on MOE are also discussed.

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Notes

  1. Hybrid larch will explicitly refer to Larix x eurolepis unless specified

References

  • Anonymous (1995) S-Plus, guide to statistical and mathematical analysis. StatSci Division, MathSoft, Seattle

    Google Scholar 

  • Baradat P, Labbé T, Bouvet JM (1995) Conception d’index pour la sélection réciproque récurrente. Aspects génétiques, statistiques et informatiques. In: Traitements statistiques des essais de sélection, Ed CIRAD, pp 101–150

  • Bastien J-C, Keller R (1980) Intérêts comparés du mélèze hybride (Larix x eurolepis Henry) avec les deux espèces parentes. Rev For Fr XXXII:521–530

    Google Scholar 

  • Bendtsen BA, Senft J (1986) Mechanical and anatomical properties in individual growth rings of plantation-grown eastern cottonwood and loblolly pine. Wood Fiber Sci 18(1):23–38

    Google Scholar 

  • Brüchert F, Becker G, Speck T (2000) The mechanics of Norway spruce (Picea abies (L.) Karst): mechanical properties of standing trees from different thinning regimes. For Ecol Manage 135:45–62

    Article  Google Scholar 

  • Burdon RD (1977) Genetic correlation as a concept for studying genotype–environment interaction in forest tree breeding. Silvae Genet 26(5–6):168–175

    Google Scholar 

  • Cherry ML, Vikram V, Briggs D, Cress DW, Howe GT (2008) Genetic variation in direct and indirect measures of wood stiffness in coastal Douglas-fir. Can J For Res 38:2476–2486

    Article  Google Scholar 

  • CTBA (2000) Classification du Mélèze d’Europe. Norme et structure en bois. Rapport final, CTBA Bordeaux

  • Deret E, Keller R (1979) Etude comparative du bois de mélèze d’Europe (Larix decidua Mill.), de mélèze du Japon (Larix leptolepis Gord.) et de leur hybride (Larix x eurolepis Henry). INRA Nancy, doc n° 1979/3

  • Dinelli B (1992) Etude de quelques paramètres de la qualité du bois de mélèze hybride. Rapport de stage, ESEM Orléans

    Google Scholar 

  • Falconer DS (1981) Introduction to quantitative genetics. Longman, London

    Google Scholar 

  • Fujimoto T, Akutsu H, Nei M, Kita K, Kuromaru M, Oda K (2006) Genetic variation in wood stiffness and strength properties of hybrid larch (Larix gmelinii var. japonica x L.kaempferi). J For Res 11:343–349

    Article  Google Scholar 

  • Ivkovic M, Gapare WJ, Abarquez A, Ilic J, Powell MB, Wu HX (2009) Prediction of wood stiffness, strength, and shrinkage in juvenile wood of radiata pine. Wood Sci Technol 43:237–257

    Article  CAS  Google Scholar 

  • Jacques D (2003) Amélioration du module d’élasticité du bois de Mélèze hybride (Larix x eurolepis Henry) par sélection clonale. Ph-D thesis, Fac Univ Sc Agr, Gembloux

  • Jacques D, Marchal M, Curnel Y (2004) Relative efficiency of alternative methods to evaluate wood stiffness in the frame of hybrid larch (Larix x eurolepis Henry) clonal selection. Ann For Sci 61:35–43

    Article  Google Scholar 

  • Johnson GR, Gartner B (2006) Genetic variation in basic density and modulus of elasticity of coastal Douglas-fir. Tree Genet Genom 3:25–33

    Article  Google Scholar 

  • Johnson GR, Grotta AT, Gartner BL, Downes G (2005) Impact of the foliar pathogen Swiss needle cast on wood quality of Douglas-fir. Can J For Res 35:331–339

    Article  Google Scholar 

  • Koizumi A, Ueda K (1986) Estimation of the mechanical properties of standing trees by bending tests. I. Test method to measure the stiffness of a tree trunk. Mokuzai Gakkaishi 32(9):669–676

    Google Scholar 

  • Koizumi A, Ueda K (1987) Estimation of mechanical properties of standing trees by bending tests III. Modulus of elasticity of tree trunks of plantation-grown conifers. Mokuzai Gakkaishi 33(6):450–456

    Google Scholar 

  • Koizumi A, Takada K, Ueda K (1990a) Radial growth and wood quality of plus-trees of Japanese larch II. Diameters at breast heights and trunk moduli of elasticity of 18-year-old offspring families. Mokuzai Gakkaishi 36(9):704–708

    Google Scholar 

  • Koizumi A, Takada K, Ueda K, Katayose T (1990b) Radial growth and wood quality of plus-trees of Japanese larch I. Radial growth, density, and trunk modulus of elasticity of grafted clones. Mokuzai Gakkaishi 36(2):98–102

    Google Scholar 

  • Kumar S (2004) Genetic parameter estimates for wood stiffness, strength, internal checking, and resin bleeding for radiata pine. Can J For Res 34:2601–2610

    Article  Google Scholar 

  • Langner W, Reck S (1966) Vergleichende Untersuchungen über das Holz von Larix decidua Mill. Larix leptolepis Gord. Und deren Hybriden. Holzforsch. Berlin 20:192–199

    Google Scholar 

  • Langner W, Schneck V (1998) Ein Beitrag zur Züchtung von Hybridlärchen (Larix x eurolepis Henry). Sauerländer’s Verlag, Frankfurt am Main

    Google Scholar 

  • Launay J, Rozenberg P, Pâques LE, Dewitte J-M (2000) A new experimental device for rapid measurement of the trunk equivalent modulus of elasticity on standing trees. Ann For Sci 57:351–359

    Article  Google Scholar 

  • Leban J-M, Haines DW (1999) The modulus of elasticity of hybrid larch predicted by density, rings per centimeter, and age. Wood Fiber Sci 31:394–402

    CAS  Google Scholar 

  • Mamdy C, Rozenberg P, Franc A, Launay J, Schermann N, Bastien JC (1999) Genetic control of stiffness of standing Douglas fir; from the standing stem to the standardised wood sample, relationships between modulus of elasticity and wood density parameters. Part I. Ann For Sc 56:133–143

    Article  Google Scholar 

  • Matheson AC, Gapare WJ, Ilic J, Wu HX (2008) Inheritance and genetic gain in wood stiffness in Radiata pine assessed acoustically in young standing trees. Silvae Genetica 57:56–64

    Google Scholar 

  • Miyajima H, Hasegawa K (1978) Wood quality of plantation-grown hybrid larch trees. Research Bulletins, College Experiment Forests, Hokkaido 35:139–156

    Google Scholar 

  • Nakada R (2002) Clonal variations of wood properties in Larix kaempferi. In: Proc Int IUFRO Symposium LARIX2002, Gap September 16–21, 2002. Ed Pâques LE

  • Nanson A, Sacré E (1978) A propos de l’hétérosis de Larix x eurolepis, en particulier pour les propriétés du bois. Bull Rech Agron Gembloux 13:323–336

    Google Scholar 

  • Nepveu G, Blachon JL (1989) Largeur de cerne et aptitude à l’usage en structure de quelques conifères: douglas, pin sylvestre, pin maritime, épicéa de Sitka, épicéa commun, sapin pectiné. Rev For Fr XLI-6:497–506

    Google Scholar 

  • Pâques LE (2000) Interspecific hybridisation in larch: the long way to get outstanding varieties. In: QFRI/CRC SPF Symposium ‘Hybrid Breeding and Genetics of Forest trees’, April 9–14, 2000. Noosa, Queensland, Australia

  • Pâques LE (2004) Role of European and Japanese larch in the genetic control of growth, architecture and wood quality traits in interspecific hybrids (Larix x eurolepis Henry). Ann For Sci 60:1–9

    Google Scholar 

  • Pâques LE, Rozenberg P (1995) Intraspecific variability of European larch for wood properties: preliminary results. Swedish University of Agricultural Sciences, Dpt of Silviculture, Reports n°39

  • Pâques LE, Rozenberg P (2009) Ranking larch genotypes with the Rigidimeter: relationships between modulus of elasticity of standing trees and of sawn timber. Ann For Sci 66:414 (1–7)

    Google Scholar 

  • Reck S (1977) Ergebnisse einer Versuchsanlage mit europäischen Lärchen und Hybridlärchen. Silvae Genet 26:95–101

    Google Scholar 

  • Reck S (1980) Untersuchung über das Holz der Hybridlärche. Allg Forst-u J Ztg 151:117–120

    Google Scholar 

  • Ringard E (1980) Mélèze. Queyras, Embrunnais. Mémoire ENITEF, ONF Embrun, INRA Nancy, septembre 1980

  • Stener L-G, Stenlid J, Karlsson B (2002) Genetic evaluation of growth, external stem quality, wood density and sensitivity to root and butt rot in a Larix x eurolepis trial in South Sweden. In: Proc Int IUFRO Symposium LARIX2002, Gap September 16–21, 2002. Ed Pâques LE

  • Thill A, Palm R (1984) Etude dendrométrique des mélèzes. Notes techniques du centre d’écologie forestière et rurale, Faculté des Sciences agronomiques de Gembloux

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Acknowledgments

This project was partly supported by the EU FAIR project grant CT98-3354 ‘Towards a European Larch Wood Chain’. We are grateful to the technical teams from Orléans and Nancy experimental units for their help with the Rigidimeter measurements. We also thank the anonymous reviewers for their constructive comments.

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Correspondence to Luc E. Pâques.

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Communicated by S. Aitken

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Pâques, L.E., Millier, F. & Rozenberg, P. Selection perspectives for genetic improvement of wood stiffness in hybrid larch (Larix x eurolepis Henry). Tree Genetics & Genomes 6, 83–92 (2010). https://doi.org/10.1007/s11295-009-0230-0

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  • DOI: https://doi.org/10.1007/s11295-009-0230-0

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