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为了协调理解热带森林中水文生物地球化学根功能,以便在植被模型中应用。

Toward a coordinated understanding of hydro-biogeochemical root functions in tropical forests for application in vegetation models.

机构信息

Department of Ecosystem Science and Sustainability, Warner College of Natural Resources, Colorado State University, 1231 Libbie Coy Way, A104, Fort Collins, CO, 80523-1476, USA.

Smithsonian Tropical Research Institute, Apartado, Balboa, 0843-03092, Panama.

出版信息

New Phytol. 2024 Apr;242(2):351-371. doi: 10.1111/nph.19561. Epub 2024 Feb 28.

Abstract

Tropical forest root characteristics and resource acquisition strategies are underrepresented in vegetation and global models, hampering the prediction of forest-climate feedbacks for these carbon-rich ecosystems. Lowland tropical forests often have globally unique combinations of high taxonomic and functional biodiversity, rainfall seasonality, and strongly weathered infertile soils, giving rise to distinct patterns in root traits and functions compared with higher latitude ecosystems. We provide a roadmap for integrating recent advances in our understanding of tropical forest belowground function into vegetation models, focusing on water and nutrient acquisition. We offer comparisons of recent advances in empirical and model understanding of root characteristics that represent important functional processes in tropical forests. We focus on: (1) fine-root strategies for soil resource exploration, (2) coupling and trade-offs in fine-root water vs nutrient acquisition, and (3) aboveground-belowground linkages in plant resource acquisition and use. We suggest avenues for representing these extremely diverse plant communities in computationally manageable and ecologically meaningful groups in models for linked aboveground-belowground hydro-nutrient functions. Tropical forests are undergoing warming, shifting rainfall regimes, and exacerbation of soil nutrient scarcity caused by elevated atmospheric CO. The accurate model representation of tropical forest functions is crucial for understanding the interactions of this biome with the climate.

摘要

热带森林的根系特征和资源获取策略在植被和全球模型中代表性不足,这阻碍了对这些富含碳的生态系统的森林-气候反馈的预测。低地热带森林通常具有全球独特的高分类和功能生物多样性、降雨季节性以及强烈风化的贫瘠土壤组合,与高纬度生态系统相比,其根系特征和功能呈现出明显的差异。我们为将我们对热带森林地下功能的理解的最新进展纳入植被模型提供了路线图,重点是水和养分的获取。我们比较了近期在根特征的实证和模型理解方面的进展,这些进展代表了热带森林中的重要功能过程。我们重点关注:(1)细根在土壤资源探索中的策略,(2)细根水分与养分获取之间的耦合和权衡,以及(3)植物资源获取和利用的地上-地下联系。我们建议在代表这些极其多样化的植物群落的途径,这些植物群落可以在模型中以可计算和生态上有意义的方式进行分组,以模拟地上-地下的水-养分功能。热带森林正在经历变暖、降雨模式的变化以及大气 CO 升高导致的土壤养分稀缺的加剧。准确地模拟热带森林的功能对于理解该生物群落与气候的相互作用至关重要。

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