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Linking soil bacterial diversity to ecosystem multifunctionality using backward-elimination boosted trees analysis

机译:使用反向消除促进树分析将土壤细菌多样性与生态系统多功能性联系起来

摘要

There is increasing evidence of linkages between biodiversity and ecosystem functions. Recent interests on this topic have expanded from an individual-function perspective to a multifunction perspective. This study aims to explore the soil bacterial diversity-multifunctionality relationship. Soil bacterial diversity was determined using culture-independent molecular techniques. Bacterial taxa groups with positive effects on certain ecosystem functions were identified by aggregated boosted tree analysis with a prediction-error-based backward-elimination criterion. Soil bacterial diversity-multifunctionality relationship was examined by exploring the relationship between the number of ecosystem functions and the number of soil bacterial taxa. More ecosystem functions would require greater numbers of bacterial taxa, which can be explained potentially using the multifunctional complementarity mechanism. Furthermore, a power law equation, OTU (N) = OTU(1)(N) (T) , was firstly proposed to describe the observed positive relationship between the soil bacterial diversity and the ecosystem multifunctionality, where OTU (N) is the number of operational taxonomic units (OTUs) required by N functions, while OTU(1) is the average number of species required for one function, and T is the average turnover rate of OTU across functions. The number of ecosystem functions would decrease with the loss of soil bacterial diversity. This biodiversity-multifunctionality relationship has an important implication for comprehensively understanding the risk of bacterial diversity loss in relation to the ecosystem functions.
机译:越来越多的证据表明生物多样性与生态系统功能之间存在联系。关于该主题的最新兴趣已经从个人功能的角度扩展到了多功能的角度。本研究旨在探讨土壤细菌多样性与多功能性的关系。使用与培养无关的分子技术确定土壤细菌多样性。细菌分类群对某些生态系统功能有积极影响,通过基于基于预测误差的向后消除标准的聚集增强树分析来识别。通过探索生态系统功能数量与土壤细菌分类群数量之间的关系,研究了土壤细菌多样性与多功能性之间的关系。更多的生态系统功能将需要更多数量的细菌类群,这可以通过多功能互补机制来解释。此外,首先提出了幂律方程OTU(N)= OTU(1)(N)(T)来描述土壤细菌多样性与生态系统多功能性之间的正相关关系,其中OTU(N)为数量N个功能所需的操作分类单位(OTU)的总和,而OTU(1)是一个功能所需的平均物种数,T是各个功能之间OTU的平均周转率。生态系统功能的数量将随着土壤细菌多样性的丧失而减少。这种生物多样性-多功能关系对于全面了解与生态系统功能有关的细菌多样性丧失风险具有重要意义。

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