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陆地表面模型中表征沿海湿地植被的建模策略和数据需求。

Modeling strategies and data needs for representing coastal wetland vegetation in land surface models.

作者信息

LaFond-Hudson Sophia, Sulman Benjamin

机构信息

Environmental Sciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd, Oak Ridge, TN, 37917, USA.

出版信息

New Phytol. 2023 May;238(3):938-951. doi: 10.1111/nph.18760. Epub 2023 Feb 14.

Abstract

Vegetated coastal ecosystems sequester carbon rapidly relative to terrestrial ecosystems. Coastal wetlands are poorly represented in land surface models, but work is underway to improve process-based, predictive modeling of these ecosystems. Here, we identify guiding questions, potential simulations, and data needs to make progress in improving representation of vegetation in terrestrial-aquatic interfaces, with a focus on coastal and estuarine ecosystems. We synthesize relevant plant traits and environmental controls on vegetation that influence carbon cycling in coastal ecosystems. We propose that models include separate plant functional types (PFTs) for mangroves, graminoid salt marshes, and succulent salt marshes to adequately represent the variation in aboveground and belowground productivity between common coastal wetland vegetation types. We also discuss the drivers and carbon storage consequences of shifts in dominant PFTs. We suggest several potential approaches to represent the diversity in vegetation tolerance and adaptations to fluctuations in salinity and water level, which drive key gradients in coastal wetland ecosystems. Finally, we discuss data needs for parameterizing and evaluating model implementations of coastal wetland vegetation types and function.

摘要

相对于陆地生态系统,植被丰富的沿海生态系统能迅速固碳。陆地表面模型对沿海湿地的描述不足,但目前正在努力改进基于过程的这些生态系统的预测模型。在此,我们确定了指导性问题、潜在模拟和数据需求,以便在改善陆地 - 水生界面植被表示方面取得进展,重点关注沿海和河口生态系统。我们综合了影响沿海生态系统碳循环的相关植物特征和植被的环境控制因素。我们建议模型为红树林、禾本科盐沼和肉质盐沼设置单独的植物功能类型(PFTs),以充分体现常见沿海湿地植被类型之间地上和地下生产力的差异。我们还讨论了优势PFTs转变的驱动因素和碳储存后果。我们提出了几种潜在方法来表示植被对盐度和水位波动的耐受性及适应性的多样性,这些波动驱动着沿海湿地生态系统的关键梯度。最后,我们讨论了参数化和评估沿海湿地植被类型及功能的模型实现所需的数据。

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