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首页> 外文期刊>Wetlands >Diatom-based Models for Inferring Hydrology and Periphyton Abundance in a Subtropical Karstic Wetland: Implications for Ecosystem-Scale Bioassessment
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Diatom-based Models for Inferring Hydrology and Periphyton Abundance in a Subtropical Karstic Wetland: Implications for Ecosystem-Scale Bioassessment

机译:基于硅藻的亚热带喀斯特喀斯特湿地中水文和围游植物丰度的推断模型:对生态系统规模生物评估的启示

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摘要

We developed diatom-based prediction models of hydrology and periphyton abundance to inform assessment tools for a hydrologically managed wetland. Because hydrology is an important driver of ecosystem change, hydrologic alterations by restoration efforts could modify biological responses, such as periphyton characteristics. In karstic wetlands, diatoms are particularly important components of mat-forming calcareous periphyton assemblages that both respond and contribute to the structural organization and function of the periphyton matrix. We examined the distribution of diatoms across the Florida Everglades landscape and found hydroperiod and periphyton biovolume were strongly correlated with assemblage composition. We present species optima and tolerances for hydroperiod and periphyton biovolume, for use in interpreting the directionality of change in these important variables. Predictions of these variables were mapped to visualize landscape-scale spatial patterns in a dominant driver of change in this ecosystem (hydroperiod) and an ecosystem-level response metric of hydrologic change (periphyton biovolume). Specific diatom assemblages inhabiting periphyton mats of differing abundance can be used to infer past conditions and inform management decisions based on how assemblages are changing. This study captures diatom responses to wide gradients of hydrology and periphyton characteristics to inform ecosystem-scale bioassessment efforts in a large wetland.
机译:我们开发了基于硅藻的水文和浮游植物丰富度预测模型,以为水文管理湿地的评估工具提供依据。由于水文学是生态系统变化的重要驱动力,因此通过恢复工作进行的水文学改变可能会改变生物响应,例如周围植物的特征。在岩溶湿地中,硅藻是形成垫层的钙质附生植物组合的重要组成部分,它们既响应并促进了附生植物基质的结构组织和功能。我们检查了整个佛罗里达大沼泽地景观的硅藻分布,发现水体周期和浮游生物的生物量与组合物组成密切相关。我们介绍了水期和水生植物生物量的物种最优值和耐受性,用于解释这些重要变量的变化方向。这些变量的预测被映射为可视化景观尺度空间格局,该格局是该生态系统变化的主要驱动因素(水文周期)和生态系统水平的水文变化响应指标(附生生物量)。可以使用栖息在不同浮游植物垫上的特定硅藻组合来推断过去的状况,并根据组合的变化情况为管理决策提供依据。这项研究捕获了硅藻对水文特征和周围植物的宽梯度变化的反应,从而为大型湿地的生态系统规模的生物评估工作提供了信息。

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