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首页> 外文期刊>Chinese Geographical Science >Assessing adaptability of planted trees using leaf traits: A case study with Robinia pseudoacacia L. in the Loess Plateau, China
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Assessing adaptability of planted trees using leaf traits: A case study with Robinia pseudoacacia L. in the Loess Plateau, China

机译:利用叶片性状评估人工林的适应性:以黄土高原刺槐为例

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摘要

Leaf trait patterns and their variations with climate are interpreted as an adaptive adjustment to environment. This study assessed the adaptability of planted black locust (Robinia pseudoacacia L.) based on the analysis of leaf traits and the comparison of its leaf traits with inter-specific ones existing in the same area. We measured some water and N use related leaf traits: leaf dry mass per unit area (LMA) and N, P and K concentrations based on both leaf area (N area, P area and K area) and leaf mass (N mass, P mass and K mass) of R. pseudoacacia at 31 sites along a water stress gradient in North Shaanxi Province, China. The results show that leaves of R. pseudoacacia have high N mass and low LMA in the study area. High N mass and low LMA are usually representative of luxurious resource use, and will advance plant resource competitiveness in high-resource conditions. As a whole, LMA-nutrient relationships of R. pseudoacacia display patterns that are fairly similar to the inter-specific relationships in both direction and intensity. The tendency for LMA and N area to increase with decreasing water availability and the positive correlation between LMA and N area reflect the trend for R. pseudoacacia to enhance water use efficiency (WUE) at the expense of down-regulated photosynthetic N use efficiency (PNUE) and high construction cost in dry conditions. However, the positive relationship between LMA and N area in high mean annual precipitation (MAP) area is either unremarkable or reversed with decreasing water availability. This implies a lower photosynthetic capacity and a higher construction cost for high-LMA leaves. The inter-specific relationship between LMA and N area is positive and does not change with water availability. This difference between inter-species and intra-species may be due to more diversified anatomies and more specialised structures for inter-species than intra-species. The failure of R. pseudoacacia adaption to dry conditions reflected by LMA-Narea relationship may be partially responsible for the emergence of rampike and dwarf forms found frequently in dry conditions. Incorporating intrinsic characteristics of planted trees into vegetation restoration project will be instructive and meaningful for species selection.
机译:叶片特征模式及其随气候的变化被解释为对环境的适应性调整。本研究通过分析叶片性状并将其叶片性状与同一地区存在的种间特征进行比较,评估了种植的刺槐(Robinia pseudoacacia L.)的适应性。我们测量了一些与水和氮利用相关的叶片性状:单位面积的叶片干质量(LMA)以及基于叶片面积(N面积,P面积和K面积<陕北沿水分胁迫梯度的31个位点的假树槐叶质量/ N质量,P质量和K质量。结果表明,研究区假槐叶片的氮素含量较高,而LMA含量较低。高氮质量和低LMA通常代表豪华资源的使用,并且将在高资源条件下提高植物资源的竞争力。总体而言,拟金丝猴的LMA-营养关系显示出与方向和强度上的种间关系十分相似的模式。 LMA和N面积的变化趋势随可用水量的减少而增加,而LMA和N面积的变化呈正相关,反映了假木犀以增加水利用效率(WUE)为代价的趋势。调节的光合氮利用效率(PNUE)和干燥条件下的高建设成本。然而,在高平均年降水量(MAP)区域中,LMA与N面积的正相关不是很明显,或者随着水的有效利用而逆转。这意味着高LMA叶片的光合作用能力较低,建设成本较高。 LMA和N区域之间的种间关系是正的,并且不会随水的可用性而改变。种间和种内的这种差异可能是由于种间比种类间更多样化的解剖结构和更专门的结构所致。 LMA-Narea关系反映的伪阿拉伯树对干燥条件的适应失败可能部分归因于在干燥条件下经常发现的猛禽和矮人形态的出现。将植树的内在特性纳入植被恢复项目将对物种选择具有指导意义和意义。

著录项

  • 来源
    《Chinese Geographical Science》 |2011年第3期|p.290-303|共14页
  • 作者单位

    State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China;

    State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China;

    State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China;

    State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China;

    State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    water stress; planted tree; leaf trait; Robinia pseudoacacia L.; tradeoff; Loess Plateau;

    机译:水分胁迫;植树;叶片性状;刺槐;折衷;黄土高原;

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