Université Côte d'Azur, INRAE, CNRS, ISA, 06900, Sophia Antipolis, France.
Centre d'Ecologie Fonctionnelle et Evolutive, CNRS, Université de Montpellier, Université Paul Valéry Montpellier - IRD - EPHE, 1919 route de Mende, 34293, Montpellier Cedex 5, France.
Ecol Lett. 2020 Aug;23(8):1263-1275. doi: 10.1111/ele.13530. Epub 2020 May 31.
Evidence is growing that evolutionary dynamics can impact biodiversity-ecosystem functioning (BEF) relationships. However the nature of such impacts remains poorly understood. Here we use a modelling approach to compare random communities, with no trait evolutionary fine-tuning, and co-adapted communities, where traits have co-evolved, in terms of emerging biodiversity-productivity, biodiversity-stability and biodiversity-invasion relationships. Community adaptation impacted most BEF relationships, sometimes inverting the slope of the relationship compared to random communities. Biodiversity-productivity relationships were generally less positive among co-adapted communities, with reduced contribution of sampling effects. The effect of community-adaptation, though modest regarding invasion resistance, was striking regarding invasion tolerance: co-adapted communities could remain very tolerant to invasions even at high diversity. BEF relationships are thus contingent on the history of ecosystems and their degree of community adaptation. Short-term experiments and observations following recent changes may not be safely extrapolated into the future, once eco-evolutionary feedbacks have taken place.
越来越多的证据表明,进化动态会影响生物多样性-生态系统功能(BEF)关系。然而,这种影响的性质仍知之甚少。在这里,我们使用一种建模方法,比较了没有特征进化微调的随机群落和共同适应的群落,在这些群落中,特征是共同进化的,涉及新兴的生物多样性-生产力、生物多样性-稳定性和生物多样性-入侵关系。群落适应会影响大多数 BEF 关系,有时与随机群落相比,关系的斜率会发生反转。共同适应的群落中生物多样性-生产力关系通常不那么积极,采样效应的贡献减少。尽管群落适应对入侵抵抗力的影响不大,但对入侵容忍度的影响却很显著:即使在多样性很高的情况下,共同适应的群落仍然可以对入侵保持非常高的容忍度。因此,BEF 关系取决于生态系统的历史及其群落适应的程度。一旦生态进化反馈发生,近期变化后的短期实验和观察就不能安全地推断到未来。