首页> 外文期刊>Silva Fennica >Within-tree radial and among-family variations in wood density, microfibril angle, and mechanical properties in Picea glehnii .
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Within-tree radial and among-family variations in wood density, microfibril angle, and mechanical properties in Picea glehnii .

机译:云杉云杉木材密度,微纤丝角和力学性能在树内的径向和家庭间变化。

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Genetic improvements in the mechanical properties of wood are important in forestry species used for lumber, such as Picea. The within-tree radial and among-family variations for the modulus of elasticity (MOE), modulus of rupture (MOR), and their related traits [i.e., microfibril angle (MFA) of the S2 layer in latewood tracheid and air-dry density (AD)] were evaluated in nine open-pollinated families of Picea glehnii (F. Schmidt) Mast. The radial variation in MOR was mainly affected by AD, whereas MOE was affected by MFA and AD. Higher F-values obtained by analysis of variance and coefficient of variation were observed for all properties at the 6th–15th annual ring, except for AD at the 6th–10th annual ring. This result suggests that the contribution of genetic effect is larger in these highly variable regions. In addition, positive correlation coefficients were obtained between wood properties at the 6th–15th annual ring and mean values of these properties. Therefore, genetic improvements for MOE, MOR, and their related traits in P.?glehnii is likely to be more effective in juvenile wood, specifically at the 6th–15th annual ring from the pith.
机译:木材机械性能的遗传改良在用于木材(如云杉)的林业物种中很重要。 S 2 层的弹性模量(MOE),断裂模量(MOR)及其相关特性[即微纤丝角(MFA)]在树内的径向和家庭间变化在9个明胶云杉(F. Schmidt)桅杆的开放授粉科中评估了气管密度和风干密度(AD)]。 MOR的径向变化主要受AD影响,而MOE受MFA和AD影响。通过观察方差和变异系数获得的更高的F值,在第6-15年环的所有属性中都可以观察到,除了第6-10年环的AD。该结果表明,在这些高度可变的区域中,遗传效应的贡献更大。此外,在第6至第15年轮的木材特性与这些特性的平均值之间获得正相关系数。因此,对P.?hnhnii的MOE,MOR及其相关性状的遗传改良可能在幼木中更有效,特别是在从木髓开始的第6-15年轮。

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