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首页> 外文期刊>Trees. Structure and Function >Short-term effects of nitrogen availability on wood formation and fibre properties in hybrid poplar.
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Short-term effects of nitrogen availability on wood formation and fibre properties in hybrid poplar.

机译:氮素供应对杂种杨的木材形成和纤维特性的短期影响。

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The application of nitrogen-containing fertilisers is one approach used to increase growth rates and productivity of forest tree plantations. However, the effects of nitrogen fertilisation on wood properties have not been systematically assessed. The aim of this work was to document the impacts of nitrogen fertilisation on wood formation and secondary xylem fibre properties. We used three fertilisation treatments in which the level of ammonium nitrate was adjusted to 0, 1 and 10 mM in a complete nutrient solution applied daily over a period of 28 days in standardised greenhouse experiments with clonal material of Populus trichocarpa (Torr and Gray) . deltoides (Bartr. ex Marsh). We showed that there was a short-term and repeatable response in which xylem fibre morphology and secondary cell wall structure adapt to a shift in N availability. Under high-nitrogen exposure, xylem fibres were 17% wider and 18% shorter compared to the adequate nitrogen treatment. A very significant thickening of the fibre cell walls was also observed throughout the stem of trees receiving the high-N treatment. It appeared that cell wall structure was greatly affected by the high-N treatment as fibres developed a modified inner cell wall layer. Histological observations indicated that the internal cell wall layer was enriched in cellulose and chemical determinations showed that wood contained more holocellulose. Together, these results indicate that the response of poplar to nitrogen availability may involve marked effects on secondary xylem formation.
机译:含氮肥料的使用是提高林木人工林生长速度和生产力的一种方法。但是,尚未系统评估氮肥对木材特性的影响。这项工作的目的是记录氮肥对木材形成和次生木质部纤维特性的影响。我们使用了三种施肥处理方法,在标准的温室实验中,用毛果杨(iPopulus trichocarpa (托尔和格雷)。 deltoides (Bartr。ex Marsh)。我们表明存在短期和可重复的响应,其中木质部纤维形态和次级细胞壁结构适应氮利用率的变化。在高氮暴露下,木质部纤维与适当的氮处理相比,宽17%,短18%。在接受高氮处理的树木的整个茎中,还观察到纤维细胞壁非常明显的增厚。似乎随着纤维形成了改性的内部细胞壁层,细胞壁结构受到了高氮处理的极大影响。组织学观察表明,内部细胞壁层富含纤维素,化学测定表明木材含有更多的全纤维素。总之,这些结果表明,杨树对氮素有效性的响应可能涉及对次生木质部形成的显着影响。

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