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Interactive effects of warming, soil humidity and plant diversity on litter decomposition and microbial activity

机译:变暖,土壤湿度和植物多样性对凋落物分解和微生物活性的相互作用

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摘要

Human activity has induced a multitude of global changes that are likely to affect the functioning of ecosystems. Although these changes act in concert, studies on interactive effects are scarce. Here, we conducted a laboratory microcosm experiment to explore the impacts of temperature (9, 12 and 15 C), changes in soil humidity (moist, dry) and plant diversity (1, 4, 16 species) on soil microbial activity and litter decomposition.We found that changes in litter decomposition did not mirror impacts on microbial measures indicating that the duration of the experiment (22 weeks) may not have been sufficient to determine the full magnitude of global change effects. However and notably, changes in temperature, humidity and plant litter diversity/composition affected in a non-additive way the microbial parameters investigated. For instance, microbial metabolic efficiency increased with plant diversity in the high moisture treatment but remained unaffected in low moisture treatment suggesting that climate changes may mask beneficial effects of biodiversity on ecosystem functioning. Moreover, litter decomposition was unaffected by plant litter diversity/composition but increased with increasing temperature in the high moisture treatment, and decreased with increasing temperature in the low moisture treatment.We conclude that it is inevitable to perform complex experiments considering multiple global change agents in order to realistically predict future changes in ecosystem functioning. Non-additive interactions highlight the context-dependency of impacts of single global change agents
机译:人类活动引起了许多可能影响生态系统功能的全球变化。尽管这些变化共同作用,但对交互作用的研究却很少。在这里,我们进行了实验室缩影实验,以探索温度(9、12和15 C),土壤湿度(潮湿,干燥)和植物多样性(1、4、16种)的变化对土壤微生物活性和凋落物分解的影响。我们发现,凋落物分解的变化并未反映出对微生物指标的影响,这表明实验持续时间(22周)可能不足以确定全部全球变化影响的幅度。然而,值得注意的是,温度,湿度和植物凋落物多样性/组成的变化以非累加的方式影响所研究的微生物参数。例如,高水分处理中微生物代谢效率随植物多样性的增加而降低,但在低水分处理中微生物代谢效率并未受到影响,这表明气候变化可能掩盖了生物多样性对生态系统功能的有益影响。此外,凋落物分解不受植物凋落物多样性/组成的影响,但在高水分处理下随温度升高而增加,而在低水分处理下随温度升高而降低。为了现实地预测生态系统功能的未来变化。非加性交互强调了单个全球变更代理人影响的上下文相关性

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