Department of Geography and Environmental Science, University of Reading, Reading, RG6 6AB, UK.
Ministry of Education Key Laboratory for Earth System Modeling, Department of Earth System Science, Tsinghua University, Beijing, 100084, China.
New Phytol. 2021 Sep;231(6):2125-2141. doi: 10.1111/nph.17558. Epub 2021 Jul 21.
Global vegetation and land-surface models embody interdisciplinary scientific understanding of the behaviour of plants and ecosystems, and are indispensable to project the impacts of environmental change on vegetation and the interactions between vegetation and climate. However, systematic errors and persistently large differences among carbon and water cycle projections by different models highlight the limitations of current process formulations. In this review, focusing on core plant functions in the terrestrial carbon and water cycles, we show how unifying hypotheses derived from eco-evolutionary optimality (EEO) principles can provide novel, parameter-sparse representations of plant and vegetation processes. We present case studies that demonstrate how EEO generates parsimonious representations of core, leaf-level processes that are individually testable and supported by evidence. EEO approaches to photosynthesis and primary production, dark respiration and stomatal behaviour are ripe for implementation in global models. EEO approaches to other important traits, including the leaf economics spectrum and applications of EEO at the community level are active research areas. Independently tested modules emerging from EEO studies could profitably be integrated into modelling frameworks that account for the multiple time scales on which plants and plant communities adjust to environmental change.
全球植被和陆地表面模型体现了对植物和生态系统行为的跨学科科学理解,对于预测环境变化对植被的影响以及植被与气候之间的相互作用是不可或缺的。然而,不同模型对碳和水循环的预测存在系统误差和持续的较大差异,突出了当前过程公式的局限性。在这篇综述中,我们重点关注陆地碳和水循环中的核心植物功能,展示了如何将源自生态进化最优性 (EEO) 原理的统一假设为植物和植被过程提供新颖、参数稀疏的表示。我们提出了案例研究,展示了 EEO 如何生成核心叶片过程的简约表示,这些过程可以单独进行测试,并得到证据的支持。EEO 方法在光合作用和初级生产力、暗呼吸和气孔行为方面已经成熟,可以在全球模型中实施。EEO 方法在其他重要特征(包括叶片经济谱和 EEO 在群落水平上的应用)方面也是活跃的研究领域。从 EEO 研究中独立测试的模块可以有益地整合到建模框架中,这些框架可以考虑植物和植物群落适应环境变化的多个时间尺度。