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实验减少根-微生物相互作用揭示了 Acer 和 Quercus 中功能根性状的有限可塑性。

Experimentally reduced root-microbe interactions reveal limited plasticity in functional root traits in Acer and Quercus.

机构信息

Department of Ecology, Evolution and Environmental Biology, Columbia University, New York, NY 10027, USA.

出版信息

Ann Bot. 2014 Feb;113(3):513-21. doi: 10.1093/aob/mct276. Epub 2013 Dec 19.

Abstract

BACKGROUND AND AIMS

Interactions between roots and soil microbes are critical components of below-ground ecology. It is essential to quantify the magnitude of root trait variation both among and within species, including variation due to plasticity. In addition to contextualizing the magnitude of plasticity relative to differences between species, studies of plasticity can ascertain if plasticity is predictable and whether an environmental factor elicits changes in traits that are functionally advantageous.

METHODS

To compare functional traits and trait plasticities in fine root tissues with natural and reduced levels of colonization by microbial symbionts, trimmed and surface-sterilized root segments of 2-year-old Acer rubrum and Quercus rubra seedlings were manipulated. Segments were then replanted into satellite pots filled with control or heat-treated soil, both originally derived from a natural forest. Mycorrhizal colonization was near zero in roots grown in heat-treated soil; roots grown in control soil matched the higher colonization levels observed in unmanipulated root samples collected from field locations.

KEY RESULTS

Between-treatment comparisons revealed negligible plasticity for root diameter, branching intensity and nitrogen concentration across both species. Roots from treated soils had decreased tissue density (approx. 10-20 %) and increased specific root length (approx. 10-30 %). In contrast, species differences were significant and greater than treatment effects in traits other than tissue density. Interspecific trait differences were also significant in field samples, which generally resembled greenhouse samples.

CONCLUSIONS

The combination of experimental and field approaches was useful for contextualizing trait plasticity in comparison with inter- and intra-specific trait variation. Findings that root traits are largely species dependent, with the exception of root tissue density, are discussed in the context of current literature on root trait variation, interactions with symbionts and recent progress in standardization of methods for quantifying root traits.

摘要

背景和目的

根系与土壤微生物的相互作用是地下生态学的关键组成部分。定量分析物种间和种内根系性状变异的幅度至关重要,包括由可塑性引起的变异。除了使可塑性的幅度与物种间的差异相关联之外,对可塑性的研究还可以确定可塑性是否可预测,以及环境因素是否会引起对功能有利的性状变化。

方法

为了比较细根组织中功能性状和性状可塑性,对 2 年生的 Acer rubrum 和 Quercus rubra 幼苗的修剪和表面消毒的根段进行了处理。然后将这些根段重新种植在卫星盆中,卫星盆中装满了对照或热处理土壤,这两种土壤最初都取自天然林。在热处理土壤中生长的根的菌根定殖几乎为零;在对照土壤中生长的根与未处理的野外采集的根样本中观察到的较高定殖水平相匹配。

主要结果

处理间的比较表明,两个物种的根直径、分枝强度和氮浓度的可塑性可忽略不计。来自处理土壤的根的组织密度(约 10-20%)降低,比根长(约 10-30%)增加。相比之下,除了组织密度外,其他性状的种间差异显著且大于处理效应。在野外样本中也观察到种间性状差异,这些差异与温室样本相似。

结论

实验和野外方法的结合有助于在与种间和种内性状变异相比的背景下对性状可塑性进行上下文分析。发现根性状主要依赖于物种,除了根组织密度之外,这在根性状变异、与共生体的相互作用以及最近在量化根性状的方法标准化方面的进展的现有文献中进行了讨论。

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