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Root order-dependent seasonal dynamics in the carbon and nitrogen chemistry of poplar fine roots

机译:杨树精细根部的碳和氮化学中的根顺序依赖季节性动态

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摘要

Fine roots play an important role in above- and belowground carbon (C) allocation in forest ecosystems. However, few studies have focused on the seasonal dynamics of fine roots with different branching orders. The objective of this study is to provide insight to the seasonal heterogeneity in roots of different orders within root hierarchies of poplar trees under different soil conditions. Three plots were established in high (plantation A) and low (plantation B) soil nutrient conditions. Fine roots were sampled in each of four seasons throughout one year. All sampled roots were classified into one to five groups depending on their branching order, and the dry biomass of living roots and the concentrations of C, nitrogen (N) and total non-structural carbohydrate (TNC) were examined. Low order (first- to second-order) roots demonstrated more significant seasonal dynamics than high order roots, and the biomass of first-order fine roots was positively influenced by soil temperature and moisture while the biomass of second-order fine roots was negatively affected by soil nutrient conditions. The different responses of fine roots to environmental fluctuations implied a high division of root function, even within low order roots. The C and N chemistry of poplar fine roots also differed significantly with branching order; element concentrations were lower in low order roots. Principal component analysis indicated that root order explained 98.2% of the variation in fine root chemistry. Moreover, the first-order roots in plantation A had greater C but less TNC concentrations than those in plantation B, suggesting that C allocation in low order roots may be more responsive to soil nutrient conditions. The allocation of C and N also exhibited significant seasonal dynamics (p < 0.05); the TNC concentration was highest in winter, whereas C:N ratios were significantly lower in the summer and fall in each order of fine roots (p < 0.05). All these results suggest that branching order may be related to root growth and photoassimilate allocation, which should receive greater attention in future studies on C and N fluxes in forest ecosystems.
机译:细根在森林生态系统的地上和低于地下碳(C)分配中发挥着重要作用。然而,很少有研究专注于具有不同分支订单的细根的季节性动态。本研究的目的是提供不同土壤条件下杨树树的根部层次中不同订单的季节性异质性的洞察。在高(种植园A)和低(种植园B)土壤营养条件下建立了三个地块。在整个四季中的每一个都在整个四季中抽出细根。根据其分支顺序,将所有取样根部分为一至五个群体,并检查活根的干生物量和C,氮(N)和总非结构碳水化合物(TNC)的浓度。低阶(第一至二阶)根部表现出比高阶根本更为明显的季节性动态,并且一流的细根的生物质受土壤温度和水分的积极影响,而二阶细根的生物质受到负面影响通过土壤养分条件。细根与环境波动的不同响应隐含了根功能的高分,即使在低阶根部内。杨树细根的C和N化学也与分支顺序有显着不同;元素浓度低于低阶根部。主成分分析表明,根本命令解释了细根化学变异的98.2%。此外,种植园A中的一阶根部具有比种植园B中的更大的C但较少的TNC浓度,表明低阶根部的C分配可能更响应土壤营养条件。 C和N的分配也表现出显着的季节性动态(P <0.05);冬季TNC浓度最高,而C:N比率在夏季显着降低,每阶的细根下降(P <0.05)。所有这些结果表明,分支秩序可能与根生长和光扫描分配有关,这应该在森林生态系统中的C和N助焊剂中受到更大的关注。

著录项

  • 来源
    《New Forests》 |2017年第5期|共21页
  • 作者单位

    Shandong Agr Univ Taishan Forest Ecosystem Res Stn Coll Forestry State Forestry Adm 61 Daizong St Tai An 271018 Shandong Peoples R China;

    Shandong Acad Forestry Jinan 250014 Shandong Peoples R China;

    Beijing Forestry Univ Coll Forestry Beijing 100083 Peoples R China;

    Shandong Agr Univ Taishan Forest Ecosystem Res Stn Coll Forestry State Forestry Adm 61 Daizong St Tai An 271018 Shandong Peoples R China;

    Shandong Agr Univ Taishan Forest Ecosystem Res Stn Coll Forestry State Forestry Adm 61 Daizong St Tai An 271018 Shandong Peoples R China;

    Chinese Acad Sci Inst Mt Hazards &

    Environm Chengdu 610041 Sichuan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 林业;
  • 关键词

    Seasonal dynamics; Carbon and nitrogen chemistry; Root order; Poplar plantation;

    机译:季节性动态;碳和氮化学;根序;杨树种植园;

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