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干旱条件下植物水势调节策略与动态的动态模型

A Dynamic Model for Strategies and Dynamics of Plant Water-Potential Regulation Under Drought Conditions.

作者信息

Papastefanou Phillip, Zang Christian S, Pugh Thomas A M, Liu Daijun, Grams Thorsten E E, Hickler Thomas, Rammig Anja

机构信息

TUM School of Life Sciences Weihenstephan, Technical University of Munich, Freising, Germany.

School of Geography, Earth and Environmental Sciences, University of Birmingham, Birmingham, United Kingdom.

出版信息

Front Plant Sci. 2020 Apr 28;11:373. doi: 10.3389/fpls.2020.00373. eCollection 2020.

Abstract

Vegetation responds to drought through a complex interplay of plant hydraulic mechanisms, posing challenges for model development and parameterization. We present a mathematical model that describes the dynamics of leaf water-potential over time while considering different strategies by which plant species regulate their water-potentials. The model has two parameters: the parameter describing the adjustment of the leaf water potential to changes in soil water potential, and the parameter Δψ describing the typical 'well-watered' leaf water potentials at non-stressed (near-zero) levels of soil water potential. Our model was tested and calibrated on 110 time-series datasets containing the leaf- and soil water potentials of 66 species under drought and non-drought conditions. Our model successfully reproduces the measured leaf water potentials over time based on three different regulation strategies under drought. We found that three parameter sets derived from the measurement data reproduced the dynamics of 53% of an drought dataset, and 52% of a control dataset [root mean square error (RMSE) < 0.5 MPa)]. We conclude that, instead of quantifying water-potential-regulation of different plant species by complex modeling approaches, a small set of parameters may be sufficient to describe the water potential regulation behavior for large-scale modeling. Thus, our approach paves the way for a parsimonious representation of the full spectrum of plant hydraulic responses to drought in dynamic vegetation models.

摘要

植被通过植物水力机制的复杂相互作用对干旱做出响应,这给模型开发和参数化带来了挑战。我们提出了一个数学模型,该模型描述了叶片水势随时间的动态变化,同时考虑了植物物种调节其水势的不同策略。该模型有两个参数:参数 描述叶片水势对土壤水势变化的调整,参数Δψ描述在非胁迫(接近零)土壤水势水平下典型的“充分浇水”叶片水势。我们的模型在110个时间序列数据集上进行了测试和校准,这些数据集包含了66个物种在干旱和非干旱条件下的叶片和土壤水势。我们的模型基于干旱条件下的三种不同调节策略,成功地再现了随时间测量的叶片水势。我们发现,从测量数据中得出的三组参数再现了53%的干旱数据集和52%的对照数据集的动态变化[均方根误差(RMSE)<0.5 MPa]。我们得出结论,对于大规模建模而言,与其通过复杂的建模方法来量化不同植物物种的水势调节,一小组参数可能就足以描述水势调节行为。因此,我们的方法为在动态植被模型中简洁地表示植物对干旱的全谱水力响应铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/849c/7199548/a5d7e535d723/fpls-11-00373-g001.jpg

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