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Liana and tree below-ground water competition—evidence for water resource partitioning during the dry season

机译:藤本植物和树木地下水竞争—干旱季节水资源分配的证据

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摘要

To date, reasons for the increase in liana abundance and biomass in the Neotropics are still unclear. One proposed hypothesis suggests that lianas, in comparison with trees, are more adaptable to drought conditions. Moreover, previous studies have assumed that lianas have a deeper root system, which provides access to deeper soil layers, thereby making them less susceptible to drought stress. The dual stable water isotope approach (δ18O and δ2H) enables below-ground vegetation competition for water to be studied. Based on the occurrence of a natural gradient in soil water isotopic signatures, with enriched signatures in shallow soil relative to deep soil, the origin of vegetation water sources can be derived. Our study was performed on canopy trees and lianas reaching canopy level in tropical forests of French Guiana. Our results show liana xylem water isotopic signatures to be enriched in heavy isotopes in comparison with those from trees, indicating differences in water source depths and a more superficial root activity for lianas during the dry season. This enables them to efficiently capture dry season precipitation. Our study does not support the liana deep root water extraction hypothesis. Additionally, we provide new insights into water competition between tropical canopy lianas and trees. Results suggest that this competition is mitigated during the dry season due to water resource partitioning.
机译:迄今为止,新热带地区藤本植物丰度和生物量增加的原因仍不清楚。一个提出的假设表明,藤本植物与树木相比,更适合干旱条件。此外,以前的研究假设藤本植物具有更深的根系,可以进入更深的土壤层,从而使它们更不容易受到干旱胁迫的影响。双重稳定的水同位素方法(δ 18 O和δ 2 H)可以研究地下植被对水的竞争。基于土壤水同位素特征的自然梯度的发生,相对于深层土壤,浅水土壤中的特征丰富,可以得出植被水源。我们的研究是在法属圭亚那的热带森林中达到树冠水平的树冠和藤本植物上进行的。我们的结果表明,与树木相比,藤本木质部的水同位素特征富含重同位素,这表明在干旱季节,水源深度的差异以及藤本植物的更浅层的根系活动。这使他们能够有效地捕获干旱季节的降水。我们的研究不支持藤本植物深根水提取假说。此外,我们为热带冠层藤本植物和树木之间的水竞争提供了新见解。结果表明,由于水资源分配,这种竞争在干旱季节得以缓解。

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