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首页> 外文期刊>Scandinavian Journal of Forest Research >Stem damage of lodgepole pine clonal cuttings in relation to wood and fiber traits, acoustic velocity, and spiral grain
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Stem damage of lodgepole pine clonal cuttings in relation to wood and fiber traits, acoustic velocity, and spiral grain

机译:与木材和纤维特性,声速和螺旋纹有关的黑松松枝s插茎损伤

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摘要

Eight clones from a 16-year-old field trial of clonal cuttings of lodgepole pine (Pinus contorta Dougl. ex Loud. var. latifolia Engelm.) were analyzed for growth, growth pattern, and stem damage in the field. In addition, wood and fiber traits (acoustic velocity [AcVel] and spiral grain) were analyzed and wood density, microfibril angle, modulus of elasticity, and radial fiber diameter (FibDR) determined from SilviScan analyzes. Two clones with considerably more bent, broken, and leaning stems differed from the other clones in terms of microfibril angle and modulus of elasticity (MOE) in the outermost annual rings. FibDR and, to some extent, MOE in the outermost annual rings were negatively correlated with the frequency of bent, leaning, or broken stems, while microfibril angle (MFA) was positively correlated. AcVel was negatively correlated with both MFA and the frequency of bent, broken, and leaning stems. We conclude that AcVel could be used as an effective tool to predict severe stem damage and determine stem strength in the field instead of using costly lab-based SilviScan measurements of microfibril angle. If developed further, this approach could be used for large-scale screening of progeny tests when selecting for stem strength.
机译:分析了来自16年的对黑松的无性cutting插(Pinus contorta Dougl。ex Loud。var。latifolia Engelm。)进行的田间试验的八个克隆的田间生长,生长方式和茎损伤。此外,还分析了木材和纤维的特性(声速[AcVel]和螺旋纹),并通过SilviScan分析确定了木材的密度,微纤丝角,弹性模量和径向纤维直径(FibDR)。在最外层年轮中,两个茎的弯曲,断裂和倾斜茎明显更多的克隆与其他克隆不同,它们的微纤丝角和弹性模量(MOE)不同。 FibDR和最外层年轮中的MOE与茎弯曲,倾斜或折断的频率呈负相关,而微纤丝角(MFA)则呈正相关。 AcVel与MFA以及弯曲,折断和倾斜的茎的频率均呈负相关。我们得出的结论是,AcVel可以用作预测严重茎损伤和确定田间茎强度的有效工具,而不是使用昂贵的基于实验室的微纤丝角SilviScan测量方法。如果进一步发展,在选择茎强度时,该方法可用于后代测试的大规模筛选。

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