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Inconsistent impacts of decomposer diversity on the stability of aboveground and belowground ecosystem functions

机译:分解者多样性对地上和地下生态系统功能稳定性的不一致影响

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摘要

The intensive discussion on the importance of biodiversity for the stability of essential processes in ecosystems has prompted a multitude of studies since the middle of the last century. Nevertheless, research has been extremely biased by focusing on the producer level, while studies on the impacts of decomposer diversity on the stability of ecosystem functions are lacking. Here, we investigate the impacts of decomposer diversity on the stability (reliability) of three important aboveground and belowground ecosystem functions: primary productivity (shoot and root biomass), litter decomposition, and herbivore infestation. For this, we analyzed the results of three laboratory experiments manipulating decomposer diversity (1–3 species) in comparison to decomposer-free treatments in terms of variability of the measured variables. Decomposer diversity often significantly but inconsistently affected the stability of all aboveground and belowground ecosystem functions investigated in the present study. While primary productivity was mainly destabilized, litter decomposition and aphid infestation were essentially stabilized by increasing decomposer diversity. However, impacts of decomposer diversity varied between plant community and fertility treatments. There was no general effect of the presence of decomposers on stability and no trend toward weaker effects in fertilized communities and legume communities. This indicates that impacts of decomposers are based on more than effects on nutrient availability. Although inconsistent impacts complicate the estimation of consequences of belowground diversity loss, underpinning mechanisms of the observed patterns are discussed. Impacts of decomposer diversity on the stability of essential ecosystem functions differed between plant communities of varying composition and fertility, implicating that human-induced changes of biodiversity and land-use management might have unpredictable effects on the processes mankind relies on. This study therefore points to the necessity of also considering soil feedback mechanisms in order to gain a comprehensive and holistic understanding of the impacts of current global change phenomena on the stability of essential ecosystem functions.
机译:自上世纪中叶以来,关于生物多样性对生态系统基本过程稳定性的重要性的深入讨论促使进行了许多研究。然而,研究一直侧重于生产者层面,但缺乏关于分解者多样性对生态系统功能稳定性的影响的研究。在这里,我们调查了分解者多样性对三个重要的地上和地下生态系统功能的稳定性(可靠性)的影响:初级生产力(枝条和根生物量),凋落物分解和草食动物侵扰。为此,我们在测量变量的可变性方面分析了与无分解剂处理相比,操纵分解剂多样性(1-3种)的三个实验室实验的结果。分解者的多样性通常会显着但不一致地影响本研究中调查的所有地上和地下生态系统功能的稳定性。虽然主要生产力主要不稳定,但分解物多样性的增加使凋落物分解和蚜虫侵染基本稳定。但是,分解群落多样性的影响在植物群落和育性处理之间有所不同。分解剂的存在对稳定性没有普遍影响,在受精群落和豆科植物群落中也没有趋向于减弱的趋势。这表明分解者的影响不仅取决于对养分利用率的影响。尽管不一致的影响使地下多样性丧失后果的估计复杂化,但仍讨论了观测模式的基础机制。在组成和肥力不同的植物群落之间,分解者多样性对基本生态系统功能稳定性的影响各不相同,这暗示着人为引起的生物多样性变化和土地利用管理可能对人类所依赖的过程产生不可预测的影响。因此,本研究指出,也必须考虑土壤反馈机制,以便对当前的全球变化现象对基本生态系统功能的稳定性产生全面而全面的了解。

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