Zhu Yanjie, Meidl Peter, Li Huiying, Bi Mohan, Ryo Masahiro, Rillig Matthias C
Institute of Biology, Freie Universität Berlin, 14195, Berlin, Germany.
Berlin-Brandenburg Institute of Advanced Biodiversity Research (BBIB), 14195, Berlin, Germany.
New Phytol. 2025 Aug;247(4):1897-1911. doi: 10.1111/nph.70275. Epub 2025 Jun 4.
Plant diversity strongly influences ecosystem functioning. Due to human activities, ecosystems are increasingly threatened by the co-occurrence of numerous anthropogenic pressures, but how they respond to this multifaceted phenomenon is poorly documented, and what role plant diversity plays in this process has not been investigated so far. Here, plant-soil systems with different plant diversity levels (3 vs 9 species) were subjected to an increasing number of anthropogenic stressors (0, 1, 2, 5, and 8). Results show that soil properties and functions were directionally driven by stressor number, irrespective of plant diversity level, and plant functional group evenness declined continuously along the stressor number gradient. The impact of stressors on plant-soil systems varied depending on plant diversity, and when plant diversity was higher, concurrent stressors may have interacted more to affect plant-soil systems. Notably, increasing the stressor number tended to diminish the effects of plant diversity. This study represents a first attempt to address the effect of plant diversity under multi-stressor combinations and highlights the importance of emphasizing plant-soil systems in the research field of multifactorial global change. We also suggest that efforts should be made to reduce the number of coacting stressors when managing plant-soil ecosystems.
植物多样性对生态系统功能有强烈影响。由于人类活动,生态系统正日益受到多种人为压力共同作用的威胁,但它们如何应对这一多方面的现象却鲜有记录,而且到目前为止,植物多样性在这一过程中所起的作用尚未得到研究。在此,具有不同植物多样性水平(3种对9种)的植物 - 土壤系统受到越来越多的人为压力源(0、1、2、5和8)的影响。结果表明,无论植物多样性水平如何,土壤性质和功能都受到压力源数量的定向驱动,并且植物功能群均匀度沿着压力源数量梯度持续下降。压力源对植物 - 土壤系统的影响因植物多样性而异,当植物多样性较高时,同时存在的压力源可能相互作用更强,从而影响植物 - 土壤系统。值得注意的是,增加压力源数量往往会削弱植物多样性的影响。本研究首次尝试探讨多压力源组合下植物多样性的影响,并强调了在多因素全球变化研究领域中重视植物 - 土壤系统的重要性。我们还建议,在管理植物 - 土壤生态系统时,应努力减少共同作用的压力源数量。