Department of Evolutionary Biology and Environmental Studies, University of Zürich, Winterthurerstr. 190, Zürich, CH-8057, Switzerland.
Institute of Ecology, University of Jena, Dornburger Str. 159, Jena, 07743, Germany.
Ecology. 2017 Nov;98(11):2952-2961. doi: 10.1002/ecy.2003.
Increasing frequency of extreme climatic events can disrupt ecosystem processes and destabilize ecosystem functioning. Biodiversity may dampen these negative effects of environmental perturbations to provide greater ecosystem stability. We assessed the effects of plant diversity on the resistance, recovery and stability of experimental grassland ecosystems in response to recurring summer drought over 7 yr. Plant biomass production was reduced during the summer drought treatment compared with control plots. However, the negative effect of drought was relatively less pronounced at high than at low plant diversity, demonstrating that biodiversity increased ecosystem resistance to environmental perturbation. Furthermore, more diverse plant communities compensated for the reduced productivity during drought by increasing spring productivity compared to control plots. The drought-induced compensatory recovery led to increased short-term variations in productivity across growing seasons in more diverse communities that stabilized the longer-term productivity across years. Our findings show that short-term variation between seasons in the face of environmental perturbation can lead to longer-term stability of annual productivity in diverse ecosystems compared to less diverse ecosystems.
极端气候事件的频率增加会破坏生态系统过程并使生态系统功能不稳定。生物多样性可以减轻环境干扰的这些负面影响,从而提供更大的生态系统稳定性。我们评估了植物多样性对实验草地生态系统在 7 年的夏季干旱反复出现时的抵抗力、恢复力和稳定性的影响。与对照小区相比,夏季干旱处理期间植物生物量的生产减少。然而,在高植物多样性下,干旱的负面影响相对较低,表明生物多样性增加了生态系统对环境干扰的抵抗力。此外,与对照小区相比,更多样化的植物群落通过增加春季生产力来弥补干旱期间生产力的降低。干旱引起的补偿性恢复导致生产力在生长季节的短期变化在更多样化的群落中增加,从而稳定了多年的长期生产力。我们的研究结果表明,与生物多样性较低的生态系统相比,面对环境干扰时,季节性的短期波动可能导致多样化生态系统的年度生产力更长期的稳定。