A new experimental approach to test why biodiversity effects strengthen as ecosystems age

生态系统 生物多样性 非生物成分 植物群落 生态学 生产力 生物 地理 环境科学 物种丰富度 宏观经济学 经济
作者
Anja Vogel,Anne Ebeling,Gerd Gleixner,Christiane Roscher,Stefan Scheu,Marcel Ciobanu,Eva Koller-France,Markus Lange,Alfred Lochner,Sebastian T. Meyer,Yvonne Oelmann,Wolfgang Wilcke,Bernhard Schmid,Nico Eisenhauer
出处
期刊:Advances in Ecological Research 卷期号:: 221-264 被引量:35
标识
DOI:10.1016/bs.aecr.2019.06.006
摘要

Previous experimental studies found strengthening relationships between biodiversity and ecosystem functioning (BEF) over time. Simultaneous temporal changes of abiotic and biotic conditions, such as in the composition of soil communities, soil carbon and nutrient concentrations, plant community assembly or selection processes, are currently discussed as potential drivers for strengthening BEF relationships. Despite the popularity of these explanations, experimental tests of underlying mechanisms of strengthening BEF relationships over time are scarce, and confounding influences of calendar year cannot be ruled out unless ecosystems of different age are compared in the same calendar years. To address this critical gap of knowledge, we reestablished the plant communities of a long-term biodiversity experiment that had started in 2002 (the Jena Experiment) with new seeds and old or new soil again in 2016. Comparing these treatments with the original communities set up in 2002, we tested whether old communities had stronger plant diversity effects on plant productivity than young ones and if this depended on soil- or plant-related processes. Our first results show that in old communities, the effect of plant diversity on productivity was indeed stronger than in young communities and that this could not be explained by the age of the soil only. However, we found significant effects of soil on the composition of soil organisms, which might be relevant for other ecosystem functions and may have stronger effects over time. Our new experimental approach enables us to test which mechanisms cause strengthening BEF relationships for many different ecosystem functions independent of the study year.
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