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Plasticity in above- and belowground resource acquisition traits in response to single and multiple environmental factors in three tree species

机译:三种树种对单一和多种环境因素的响应地上和地下资源获取特性具有可塑性

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摘要

Functional trait plasticity is a major component of plant adjustment to environmental stresses. Here, we explore how multiple local environmental gradients in resources required by plants (light, water, and nutrients) and soil disturbance together influence the direction and amplitude of intraspecific changes in leaf and fine root traits that facilitate capture of these resources. We measured population-level analogous above- and belowground traits related to resource acquisition, i.e. “specific leaf area”–“specific root length” (SLA–SRL), and leaf and root N, P, and dry matter content (DMC), on three dominant understory tree species with contrasting carbon and nutrient economics across 15 plots in a temperate forest influenced by burrowing seabirds. We observed similar responses of the three species to the same single environmental influences, but partially species-specific responses to combinations of influences. The strength of intraspecific above- and belowground trait responses appeared unrelated to species resource acquisition strategy. Finally, most analogous leaf and root traits (SLA vs. SRL, and leaf versus root P and DMC) were controlled by contrasting environmental influences. The decoupled responses of above- and belowground traits to these multiple environmental factors together with partially species-specific adjustments suggest complex responses of plant communities to environmental changes, and potentially contrasting feedbacks of plant traits with ecosystem properties. We demonstrate that despite the growing evidence for broadly consistent resource-acquisition strategies at the whole plant level among species, plants also show partially decoupled, finely tuned strategies between above- and belowground parts at the intraspecific level in response to their environment. This decoupling within species suggests a need for many species-centred ecological theories on how plants respond to their environments (e.g. competitive/stress-tolerant/ruderal and response-effect trait frameworks) to be adapted to account for distinct plant-environment interactions among distinct individuals of the same species and parts of the same individual.
机译:功能性状可塑性是植物适应环境胁迫的主要组成部分。在这里,我们探索植物(光,水和养分)所需的资源中的多个局部环境梯度以及土壤干扰如何共同影响叶片和细根性状的种内变化的方向和幅度,从而促进这些资源的捕获。我们测量了与资源获取相关的种群水平的地上和地下特征,即“特定叶面积”-“特定根长”(SLA-SRL),以及叶和根的氮,磷和干物质含量(DMC),在受海鸟穴居影响的温带森林中,在15个样地上,研究了三种优势林下树种,这些树在碳和养分经济方面存在差异。我们观察到了三个物种对相同的单个环境影响的相似反应,但是部分物种对影响组合的特定反应。种内地上和地下性状反应的强度似乎与物种资源获取策略无关。最后,大多数相似的叶片和根系性状(SLA与SRL,叶片与根系P和DMC)通过对比环境影响来控制。地上和地下性状对这些多个环境因素的解耦响应以及部分针对物种的调整表明植物群落对环境变化的复杂响应,并可能将植物性状的反馈与生态系统特性形成对比。我们证明,尽管有越来越多的证据表明物种之间在整个植物水平上具有广泛一致的资源获取策略,但植物也根据其环境在种内水平上和地下部分之间显示了部分解耦,微调的策略。物种内部的这种脱钩表明,需要采用许多以物种为中心的生态学理论来研究植物对环境的反应方式(例如竞争性/耐压性/竞争性和响应效应性状框架),以适应不同植物之间的独特植物-环境相互作用。同一物种的同一个人和同一个人的部分。

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