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首页> 外文期刊>Silva Fennica >Differences in growth and wood properties between narrow and normal crowned types of Norway spruce grown at narrow spacing in Southern Finland
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Differences in growth and wood properties between narrow and normal crowned types of Norway spruce grown at narrow spacing in Southern Finland

机译:狭窄和正常冠状的挪威云杉在芬兰南部狭窄间距生长时的生长和木材特性差异

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In recent years there has been increased interest in the so called narrow crowned Norway spruce (Picea abies f. peudula), which is a rare mutant of Norway spruce (Picea abies (L.) Karsten), as a suitable wood raw material source for pulp and paper production. This is because it is less sensitive to competition than the normal crowned Norway spruce, and thus, could be more productive especially at dense spacing. In the above context, we investigated how the growth and yield (such as height, diameter, stem volume and ring width) in addition to wood density traits and fibre properties (such as wood density, fibre length and width, cell wall thickness and fibre coarseness) were affected in trees from 9 full-sib families representing narrow crowned Norway spruce grown at narrow spacing of 1 m x 1 m in Southern Finland. For comparison, we used normal crowned Norway spruce trees from 6 breeding regions.We found that, compared to growth and yield traits, wood density traits and fibre properties showed, on average, lower phenotypic variations. In addition, these variations were smaller for narrow crowned families than for normal crowned genetic entries. Narrow crowned families also showed, on average, higher growth and yield and fibre length, but lower wood density. Moreover, the phenotypic correlations between growth, yield, wood density traits and fibre properties, ranged, on average, from moderate (narrow crowned) to high (normal crowned). As a whole, the growth and wood properties of narrow crowned families were found to be less sensitive to tree competition than the normal crowned genetic entries used as a comparison.
机译:近年来,人们越来越关注所谓的窄冠挪威云杉(Picea abies f。peudula),它是挪威云杉的稀有突变体(Picea abies(L.)Karsten),作为适合的木材原料来源制浆和造纸。这是因为它对竞争的敏感性不如正常的挪威云杉,因此尤其在密密麻麻的情况下可能更具生产力。在上述背景下,我们研究了木材密度特征和纤维特性(例如木材密度,纤维长度和宽度,细胞壁厚度和纤维)以及生长和产量(例如高度,直径,茎体积和环宽度)如何9个全同胞科的树木受到了影响),这些树木代表了在挪威南部以1 mx 1 m的狭窄间距生长的窄冠挪威云杉。为了进行比较,我们使用了来自6个育种地区的正常冠状挪威云杉树,发现与生长和产量性状相比,木材密度性状和纤维特性平均表现出较低的表型变异。此外,对于狭窄的冠状家庭,这些变异要小于正常的冠状遗传条目。狭窄的冠状家庭平均也显示出较高的生长量,单产和纤维长度,但木材密度较低。此外,生长,产量,木材密度性状和纤维特性之间的表型相关性平均介于中等(窄冠)到高(正冠)之间。总体而言,发现狭窄的冠状科的生长和木材特性对树木竞争的敏感性不如用作比较的正常冠状遗传条目。

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