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Genetic Improvement of White Spruce Mechanical Wood Traits—Early Screening by Means of Acoustic Velocity

机译:白云杉机械木材性状的遗传改良—利用声速早期筛选

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摘要

There is a growing interest to use acoustic sensors for selection in tree breeding to ensure high wood quality of future plantations. In this study, we assessed acoustic velocity as a selection trait for the improvement of mechanical wood properties in two 15- and 32-year-old white spruce (Picea glauca [Moench.] Voss) genetic tests. Individual heritability of acoustic velocity was moderate and of the same magnitude as heritability of wood density. Considerable genetic gain could be expected for acoustic velocity and a measure combining velocity and wood density. The relationship between acoustic velocity and cellulose microfibril angle (MFA) was strong on the genetic level and selection based on velocity could effectively improve MFA, which is one of the most important determinants of wood mechanical properties. Although low, the positive relationship between acoustic velocity and tree height presents an interesting opportunity for the improvement of both tree growth and wood quality. On the phenotypic level, MFA was more strongly correlated to acoustic velocity in mature trees than in young trees. The addition of easily obtainable traits such as diameter at breast height (DBH), height-to-diameter ratio as well as wood density to velocity determinations could improve models of MFA at the young and the mature age. We conclude that juvenile acoustic velocity is an appropriate trait to select for wood quality in a tree breeding context.
机译:在树木育种中使用声传感器来确保未来种植园的高木材质量的兴趣日益浓厚。在这项研究中,我们评估了声速作为两个15岁和32岁白云杉(Picea glauca [Moench。] Voss)遗传测试中机械木材性能改善的选择特征。个体的声速遗传力中等,与木材密度的遗传力相同。声速和结合速度与木材密度的措施有望获得可观的遗传增益。声速与纤维素微纤丝角(MFA)之间的关系在遗传水平上很强,基于速度的选择可以有效提高MFA,这是木材力学性能的最重要决定因素之一。声速与树木高度之间的正比关系虽然较低,但却为改善树木生长和木材质量提供了有趣的机会。在表型水平上,与幼树相比,成熟树中MFA与声速的相关性更高。添加容易获得的特征,例如胸高直径(DBH),高径比以及木材密度与速度测定,可以改善年轻和成熟年龄的MFA模型。我们得出结论,在树木育种环境中,少年声速是选择木材质量的合适特征。

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