Pichon Benoît, Thébault Elisa, Lacroix Gérard, Gounand Isabelle
Institut d'écologie et des sciences de l'environnement (iEES Paris), Sorbonne Université, CNRS, UPEC, CNRS, IRD, INRA, Paris, France.
ISEM, Univ Montpellier, CNRS, EPHE, IRD, Montpellier, France.
Ecol Lett. 2023 Oct;26(10):1700-1713. doi: 10.1111/ele.14284. Epub 2023 Jul 17.
Species dispersal and resource spatial flows greatly affect the dynamics of connected ecosystems. So far, research on meta-ecosystems has mainly focused on the quantitative effect of subsidy flows. Yet, resource exchanges at heterotrophic-autotrophic (e.g. aquatic-terrestrial) ecotones display a stoichiometric asymmetry that likely matters for functioning. Here, we joined ecological stoichiometry and the meta-ecosystem framework to understand how subsidy stoichiometry mediates the response of the meta-ecosystem to subsidy flows. Our model results demonstrate that resource flows between ecosystems can induce a positive spatial feedback loop, leading to higher production at the meta-ecosystem scale by relaxing local ecosystem limitations ('spatial complementarity'). Furthermore, we show that spatial flows can also have an unexpected negative impact on production when accentuating the stoichiometric mismatch between local resources and basal species needs. This study paves the way for studies on the interdependency of ecosystems at the landscape extent.
物种扩散和资源空间流动极大地影响着相互连接的生态系统的动态变化。到目前为止,对元生态系统的研究主要集中在补贴流的定量影响上。然而,异养-自养(如水生-陆地)交错带的资源交换呈现出化学计量不对称性,这可能对功能发挥至关重要。在此,我们将生态化学计量学与元生态系统框架相结合,以了解补贴化学计量如何介导元生态系统对补贴流的响应。我们的模型结果表明,生态系统之间的资源流动可引发一个正向的空间反馈回路,通过缓解局部生态系统限制(“空间互补性”),在元生态系统尺度上实现更高的生产力。此外,我们还表明,当强调局部资源与基础物种需求之间的化学计量不匹配时,空间流动也可能对生产力产生意想不到的负面影响。本研究为在景观尺度上开展生态系统相互依存关系的研究铺平了道路。