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首页> 外文期刊>Forests >Phenotypic Correlations among Growth and Selected Wood Properties in White Spruce ( Picea glauca (Moench) Voss) ?
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Phenotypic Correlations among Growth and Selected Wood Properties in White Spruce ( Picea glauca (Moench) Voss) ?

机译:白云杉(云杉)的生长与某些木材特性之间的表型相关性?

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We examined phenotypic relationships among radial growth-related, physical (i.e., related to wood density), and anatomical (i.e., related to tracheid dimensions) wood properties in white spruce ( Picea glauca (Moench) Voss), in order to determine the strength and significance of their correlations. Additionally, principal component analysis (PCA) was used to establish if all of the properties must be measured and to determine the key properties that can be used as proxies for the other variables. Radial growth-related and physical properties were measured with an X-ray densitometer, while anatomical properties were measured with a Fiber Quality Analyzer. Fifteen wood properties (tracheid length (TL) and diameter (TD), earlywood tracheid length (ETL) and diameter (ETD), latewood tracheid length (LTL) and diameter (LTD), ring width (RW), ring area (RA), earlywood width (EWW), latewood width (LWW), latewood proportion (LWP), ring density (RD), intra-ring density variation, earlywood density (EWD), and latewood density (LWD)) were assessed. Relationships were evaluated at intra-ring and inter-ring levels in the juvenile wood (JW) and mature wood (MW) zones. Except for a few cases when mature tracheid diameter (TD) was involved, all intra-ring anatomical properties were highly and significantly correlated. Radial growth properties were correlated, with stronger relationships in MW compared to JW. Physical properties were often positively and significantly correlated in both JW and MW. A higher earlywood density coupled with a lower latewood density favored wood uniformity, i.e., the homogeneity of ring density within a growth ring. Managing plantations to suppress trees growth during JW formation, and enhancing radial growth when MW formation starts will favor overall wood quality. In order, RW-EWW-RA, TL-ETL-LTL, and RD-EWD-LWP are the three clusters that appeared in the three wood zones, the whole pith-to-bark radial section, the juvenile wood zone, and the mature wood zone.
机译:为了确定强度,我们研究了白云杉(Picea glauca(Moench)Voss)的径向生长相关的,物理的(即与木材密度有关)和解剖的(即与气管尺寸有关)木材特性之间的表型关系。及其相关性的意义。此外,主要成分分析(PCA)用于确定是否必须测量所有属性,并确定可用作其他变量代理的关键属性。使用X射线光密度计测量与径向生长相关的物理特性,而使用纤维质量分析仪测量解剖学特性。十五种木材特性(气管长度(TL)和直径(TD),早材气管长度(ETL)和直径(ETD),晚材气管长度(LTL)和直径(LTD),环宽度(RW),环面积(RA) ,早材宽度(EWW),晚材宽度(LWW),晚材比例(LWP),环密度(RD),环内密度变化,早材密度(EWD)和晚材密度(LWD)进行了评估。在幼木(JW)和成熟木(MW)区域的环内和环间水平评估关系。除少数涉及成熟气管直径(TD)的病例外,所有环内解剖学特性均高度且显着相关。径向生长特性是相关的,与JW相比,MW的关系更强。物理性质在JW和MW中通常呈正相关且显着相关。较高的早木密度和较低的晚木密度有利于木材均匀性,即生长环内环密度的均匀性。管理人工林以抑制JW形成期间树木的生长,并在MW形成开始时促进径向生长,这将有利于整体木材质量。按顺序,RW-EWW-RA,TL-ETL-LTL和RD-EWD-LWP是出现在三个木区,整个从树皮到树皮的径向截面,少年木区和成熟的木区。

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