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Above and belowground community strategies respond to different global change drivers

机译:地上和地下社区战略应对不同的全球变化驱动力

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摘要

Environmental changes alter the diversity and structure of communities. By shifting the range of species traits that will be successful under new conditions, environmental drivers can also dramatically impact ecosystem functioning and resilience. Above and belowground communities jointly regulate whole-ecosystem processes and responses to change, yet they are frequently studied separately. To determine whether these communities respond similarly to environmental changes, we measured taxonomic and trait-based responses of plant and soil microbial communities to four years of experimental warming and nitrogen deposition in a temperate grassland. Plant diversity responded strongly to N addition, whereas soil microbial communities responded primarily to warming, likely via an associated decrease in soil moisture. These above and belowground changes were associated with selection for more resource-conservative plant and microbe growth strategies, which reduced community functional diversity. Functional characteristics of plant and soil microbial communities were weakly correlated (P = 0.07) under control conditions, but not when above or belowground communities were altered by either global change driver. These results highlight the potential for global change drivers operating simultaneously to have asynchronous impacts on above and belowground components of ecosystems. Assessment of a single ecosystem component may therefore greatly underestimate the whole-system impact of global environmental changes.
机译:环境变化改变了社区的多样性和结构。通过改变将在新条件下成功实现的物种特征范围,环境驱动因素还可以极大地影响生态系统的功能和复原力。地上和地下社区共同监管整个生态系统的过程和对变化的响应,但是经常对其进行单独研究。为了确定这些群落对环境变化的响应是否相似,我们测量了植物和土壤微生物群落对温带草原四年实验性变暖和氮沉降的分类和基于特征的响应。植物多样性对氮的添加有强烈反应,而土壤微生物群落主要对变暖作出反应,这可能是由于土壤水分的减少所致。这些地上和地下的变化与选择更多资源节约型植物和微生物的生长策略有关,从而减少了社区功能的多样性。在控制条件下,植物和土壤微生物群落的功能特征之间的相关性较弱(P = 0.07),但当全球变化驱动力改变了上层或地下群落时,则没有相关性。这些结果凸显了全球变化驱动因素同时运行对生态系统的上层和地下部分具有异步影响的潜力。因此,对单个生态系统组成部分的评估可能会大大低估全球环境变化对整个系统的影响。

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