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Plant-soil feedback: Experimental approaches, statistical analyses and biological interpretations

机译:植物土壤反馈:实验方法,统计分析和生物学解释

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摘要

1. Feedback between plants and soil organisms has become widely recognized as a driving force of community composition and ecosystem functioning. However, there is little uniformity in quantification and analysis of plant soil feedback effects. Meta-analysis suggested that the various experimental methods tend to result in different feedback values. Yet, a direct comparison of the different experimental approaches and their statistical analyses is lacking. 2. We used currently applied methods to calculate plant soil feedback value ranges and compared their statistical analyses to those based on actual biomass data. Then, we re-analysed a case study to compare plant soil feedback values obtained under the same environmental conditions, but using different experimental approaches: soil sterilization, addition of soil inoculum, and soil conditioning by own vs. foreign plant species. 3. Different measures to calculate plant soil feedback values were more variable in positive than in negative feedback values. Analysis of calculated feedback values that are based on treatment averages can lead to a serious inflation of type I errors. 4. In our case study, both the strength and the direction of the feedback effects depended on the experimental approach that was chosen, leading to diverging conclusions on whether feedback to a certain soil was positive or negative. Soil sterilization and addition of soil organisms yielded larger feedback than comparison of own and foreign soil. 5. Synthesis. The ecological interpretation of plant soil feedback effects strongly depends on the experimental procedure. When the research question focuses on the strength and the sign of plant soil feedback, soil sterilization (presumed that the side effect of increased nutrient availability can be controlled) or addition of soil inoculum is to be preferred. When the research question concerns the specificity of soil feedback effects, plant performance can be better compared between own and foreign soil. We recommend that when using calculated feedback values, the original data need to be presented as well in order to trace the cause of the effect.
机译:1.植物与土壤生物之间的反馈已被广泛认为是社区组成和生态系统功能的驱动力。然而,在定量和分析植物土壤反馈效应方面几乎没有统一性。荟萃分析表明,各种实验方法往往会导致不同的反馈值。但是,缺乏对不同实验方法及其统计分析的直接比较。 2.我们使用当前应用的方法来计算植物土壤反馈值范围,并将其统计分析与基于实际生物量数据的统计分析进行比较。然后,我们重新分析了一个案例研究,以比较在相同环境条件下但使用不同实验方法获得的植物土壤反馈值:土壤灭菌,添加土壤接种物以及根据自身植物与外来植物对土壤进行调节。 3.计算植物土壤反馈值的不同方法在正反馈方面比在负反馈值中变化更大。基于治疗平均值的计算反馈值分析可能导致I型错误严重加剧。 4.在我们的案例研究中,反馈效果的强度和方向都取决于所选择的实验方法,导致对某种土壤的反馈是正面还是负面的结论不一致。土壤灭菌和添加土壤生物产生的反馈要比本国土壤和外来土壤的比较大。 5.合成。植物土壤反馈效应的生态学解释在很大程度上取决于实验程序。当研究问题集中在植物土壤反馈的强度和符号上时,土壤灭菌(假定可以控制增加养分利用率的副作用)或添加土壤接种物是首选。当研究问题涉及土壤反馈效应的特殊性时,在自己的土壤和外来的土壤之间可以更好地比较植物的性能。我们建议,在使用计算得出的反馈值时,还需要提供原始数据,以追踪造成这种情况的原因。

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