首页> 外文期刊>Journal of forest research >Changes in quantity, morphology and nitrogen content of fine roots with stand development in a subalpine fir-wave forest
【24h】

Changes in quantity, morphology and nitrogen content of fine roots with stand development in a subalpine fir-wave forest

机译:亚高山枞波森林中细根的数量,形态和氮含量的变化

获取原文
获取原文并翻译 | 示例
       

摘要

To determine the change in nutrient absorption capacity with stand development, we aimed to clarify the changes in fine root characteristics with stand development and stand characteristics. Stand characteristics (stand age, maximum tree height, tree density and basal area) and fine root characteristics were examined in three fir-wave stands that aged sequentially along the slope in a subalpine Abies forest in central Japan. The biomass, length, surface area and N content of fine roots did not change, but the specific root length (SRL) decreased with stand development, i.e. distance from the upper side of each transect. On the other hand, we observed an increase in fine root biomass with stand characteristics, i.e. maximum tree height and basal area of the Abies community, while a decrease in SRL was also observed. These changes resulted in an increase in surface area and N content of fine roots. However, the surface area of absorptive roots that were &0.5 mm in diameter did not change with stand characteristics. Thus, we suggest that the nutrient absorption capacity of the subalpine Abies community increased with aboveground biomass from the viewpoint of comprehensive activity of fine roots, but not from the viewpoint of fine root morphology. We further confirmed that the ratios of surface area and N content of fine roots to basal area decreased with stand development. Future research is needed to understand the actual effect of surface area and N content of fine roots on the maintenance of aboveground organs.
机译:为了确定具有支架开发的营养吸收能力的变化,我们旨在阐明具有支架开发和支架特性的细根特征的变化。在三个枞波中检查了特征(站长年龄,最大树高,树密度和基部)和细根特征,沿着日本中部苏尔邦斯森林森林沿着斜坡依次依次逐渐变化。细根的生物质,长度,表面积和N含量没有变化,但是特定的根长度(SRL)随着架构的展开而降低,即从每个横断的上侧的距离。另一方面,我们观察到具有支架特性的细根生物量的增加,即邻居社区的最大树高度和基底区域,同时也观察到SRL的降低。这些变化导致表面积增加和细根的N含量。然而,具有&amp的吸收性根的表面积; LT;直径0.5mm的直径没有变化。因此,我们表明,从细根的综合活动的观点来看,苏尔邦斯海域群落的营养吸收能力随着地下生物量而增加,但不是从细根形态的角度来看。我们进一步证实,基础面积的表面积和N含量的比例与基底面积的比例随着待机的发展而降低。需要未来的研究以了解表面积和N含量对地上器官的维护的实际效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号