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Tree species diversity mitigates disturbance impacts on the forest carbon cycle

机译:树种的多样性减轻了对森林碳循环的干扰影响

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Biodiversity fosters the functioning and stability of forest ecosystems and, consequently, the provision of crucial ecosystem services that support human well-being and quality of life. In particular, it has been suggested that tree species diversity buffers ecosystems against the impacts of disturbances, a relationship known as the "insurance hypothesis". Natural disturbances have increased across Europe in recent decades and climate change is expected to amplify the frequency and severity of disturbance events. In this context, mitigating disturbance impacts and increasing the resilience of forest ecosystems is of growing importance. We have tested how tree species diversity modulates the impact of disturbance on net primary production and the total carbon stored in living biomass for a temperate forest landscape in Central Europe. Using the simulation model iLand to study the effect of different disturbance regimes on landscapes with varying levels of tree species richness, we found that increasing diversity generally reduces the disturbance impact on carbon storage and uptake, but that this effect weakens or even reverses with successional development. Our simulations indicate a clear positive relationship between diversity and resilience, with more diverse systems experiencing lower disturbance-induced variability in their trajectories of ecosystem functioning. We found that positive effects of tree species diversity are mainly driven by an increase in functional diversity and a modulation of traits related to recolonization and resource usage. The results of our study suggest that increasing tree species diversity could mitigate the effects of intensifying disturbance regimes on ecosystem functioning and improve the robustness of forest carbon storage and the role of forests in climate change mitigation.
机译:生物多样性促进森林生态系统的功能和稳定性,并因此提供支持人类福祉和生活质量的关键生态系统服务。特别是,有人提出树木物种多样性可以缓冲生态系统,使其免受干扰的影响,这种关系被称为“保险假说”。近几十年来,欧洲各地的自然干扰都在增加,气候变化有望加剧干扰事件的频率和严重性。在这种情况下,减轻干扰影响和提高森林生态系统的复原力变得越来越重要。我们已经测试了树木种类的多样性如何调节干扰对净初级生产和中欧温带森林景观活生物量中存储的总碳的影响。使用模拟模型iLand来研究不同干扰方式对树木物种丰富程度不同的景观的影响,我们发现增加多样性通常会减少干扰对碳存储和吸收的影响,但是随着演替的发展,这种影响会减弱甚至逆转。我们的仿真表明,多样性与弹性之间存在明显的正相关关系,而更多种类的系统在其生态系统功能的轨迹上遭受的干扰引起的变异性更低。我们发现,树种多样性的积极影响主要是由功能多样性的增加以及与重新定殖和资源利用有关的性状的调节所驱动。我们的研究结果表明,增加树种的多样性可以减轻干扰机制对生态系统功能的影响,并提高森林碳储量的稳健性以及森林在缓解气候变化中的作用。

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