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首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Interactive effects of climate change and biodiversity loss on ecosystem functioning
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Interactive effects of climate change and biodiversity loss on ecosystem functioning

机译:气候变化与生物多样性损失对生态系统功能的互动影响

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Climate change and biodiversity loss are expected to simultaneously affect ecosystems, however research on how each driver mediates the effect of the other has been limited in scope. The multiple stressor framework emphasizes non-additive effects, but biodiversity may also buffer the effects of climate change, and climate change may alter which mechanisms underlie biodiversity–function relationships. Here, we performed an experiment using tank bromeliad ecosystems to test the various ways that rainfall changes and litter diversity may jointly determine ecological processes. Litter diversity and rainfall changes interactively affected multiple functions, but how depends on the process measured. High litter diversity buffered the effects of altered rainfall on detritivore communities, evidence of insurance against impacts of climate change. Altered rainfall affected the mechanisms by which litter diversity influenced decomposition, reducing the importance of complementary attributes of species (complementarity effects), and resulting in an increasing dependence on the maintenance of specific species (dominance effects). Finally, altered rainfall conditions prevented litter diversity from fueling methanogenesis, because such changes in rainfall reduced microbial activity by 58%. Together, these results demonstrate that the effects of climate change and biodiversity loss on ecosystems cannot be understood in isolation and interactions between these stressors can be multifaceted.
机译:预计气候变化和生物多样性损失预计将同时影响生态系统,但是研究每个司机如何调解的各个司机的效果在范围内受到限制。多个压力镜架强调非添加效应,但生物多样性也可能缓冲气候变化的影响,气候变化可能会改变生物多样性功能关系的机制。在这里,我们进行了使用坦克Bromeliad生态系统进行实验,以测试降雨变化和垃圾分集可以共同确定生态过程的各种方式。垃圾分集和降雨量相互作用地影响多种功能,但如何取决于测量的过程。高垃圾分集缓冲了降雨变化对酥皮群落的影响,保险对气候变化的影响的证据。改变的降雨影响了凋落物分集影响分解的机制,降低了物种互补属性(互补效应)的重要性,并导致对特定物种的维持(优势效应)的依赖性增加。最后,改变的降雨条件阻止了加油甲烷化的垃圾分集,因为降雨的这种变化降低了微生物活性的58%。这些结果一起表明,在分离中不能理解气候变化和生物多样性损失对生态系统的影响,并且可以多方便地多方便地多方便这些压力源之间的相互作用。

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