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迈向用于植被模型的藤本植物功能类型。

Towards a liana plant functional type for vegetation models.

作者信息

Verbeeck Hans, De Deurwaerder Hannes P T, Kearsley Elizabeth, Moorthy Sruthi M Krishna, Mundondo Francis Mumbanza, Coppieters Kasper, Schnitzer Stefan A, Longo Marcos, Peaucelle Marc, Bauters Marijn, Meunier Félicien

机构信息

Q-ForestLab, Department of Environment, Ghent University, Ghent, Belgium.

Department of Ecology and Evolutionary Biology, Princeton University, Princeton, NJ, United States.

出版信息

Ecol Modell. 2024 Dec;498:110901. doi: 10.1016/j.ecolmodel.2024.110901.

Abstract

Lianas (woody climbers) are crucial components of tropical forests and they have been increasingly recognized to have profound effects on tropical forest carbon dynamics. Despite their importance, lianas' representation in vegetation models remains limited, partly due to the complexity of liana-tree dynamics and the diversity in liana life history strategies. This paper provides a comprehensive review of advances and challenges for mechanistically representing lianas in forest ecosystem models and a proposed path towards effectively representing lianas in these models. Defining a liana plant functional type is a significant challenge because of the high morphological and physiological diversity amongst liana species, and because of their structural association with trees. Here, we identify critical liana traits that likely should contribute to establishing a liana plant functional type, along with key processes to properly represent lianas in ecosystem models. Subsequently, we discuss a variety of possible liana implementation strategies with their associated strengths, limitations, computational costs and data requirements. A fundamental redesign of the tree-centric demographic vegetation models seems appropriate to accommodate the unique growth and competition strategies of lianas. We illustrate the potential of such models with a single-site case study where we disentangle putative mechanisms of liana increasing abundance. Furthermore, we underscore the critical need for comprehensive liana demographic and functional data (including long-term, physiological, and pantropical observations) for the qualitative implementation and evaluation in the proposed modeling efforts. Currently, there is a scarcity of liana data and the data that do exist have a neotropical bias. We finally introduce a new liana functional trait database that can centralize existing liana trait data, incentivize improved data gathering and thus facilitate model development and scientific analyses.

摘要

藤本植物(木质攀缘植物)是热带森林的重要组成部分,它们对热带森林碳动态的深远影响日益受到认可。尽管藤本植物很重要,但它们在植被模型中的体现仍然有限,部分原因是藤本植物与树木相互作用的复杂性以及藤本植物生活史策略的多样性。本文全面综述了在森林生态系统模型中以机制方式表示藤本植物的进展和挑战,并提出了在这些模型中有效表示藤本植物的路径。由于藤本植物物种间存在高度的形态和生理多样性,以及它们与树木的结构关联,定义藤本植物功能类型是一项重大挑战。在这里,我们确定了可能有助于建立藤本植物功能类型的关键藤本植物性状,以及在生态系统模型中正确表示藤本植物的关键过程。随后,我们讨论了各种可能的藤本植物实现策略及其相关的优势、局限性、计算成本和数据要求。对以树木为中心的种群动态植被模型进行根本性的重新设计似乎适合于适应藤本植物独特的生长和竞争策略。我们通过一个单站点案例研究说明了此类模型的潜力,在该研究中我们梳理了藤本植物丰度增加的假定机制。此外,我们强调了对于拟议建模工作中的定性实施和评估而言,全面的藤本植物种群和功能数据(包括长期、生理和泛热带观测数据)的迫切需求。目前,藤本植物数据稀缺,而且现有的数据存在新热带区偏向性。我们最后介绍了一个新的藤本植物功能性状数据库,该数据库可以集中现有的藤本植物性状数据,激励改进数据收集,从而促进模型开发和科学分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6632/11568259/1c3b897c2feb/gr1.jpg

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