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首页> 外文期刊>Oecologia >Understanding stoichiometric mechanisms of nutrient retention in wetland macrophytes: stoichiometric homeostasis along a nutrient gradient in a subtropical wetland
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Understanding stoichiometric mechanisms of nutrient retention in wetland macrophytes: stoichiometric homeostasis along a nutrient gradient in a subtropical wetland

机译:了解湿地宏观物质营养保留的化学计量机制:亚热带湿地养分梯度的化学计量稳态

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摘要

Nutrient homeostasis relates ambient stoichiometric conditions in an environment to the stoichiometry of living entities of that ecosystem. Plant nutrient sequestration in wetland ecosystems is a key process for downstream water quality. However, few studies have examined stoichiometric homeostasis of aquatic vegetation despite the importance of stoichiometry to plant nutrient uptake efficiency. This study investigated stoichiometric homeostasis of dominant emergent and submerged aquatic vegetation (EAV and SAV, respectively) within two treatment flow-ways of Everglades Stormwater Treatment Area 2 (STA-2). These flow-ways encompass a large gradient in plant nutrient availability. This study hypothesizes that wetland vegetation is homeostatic relative to ambient nutrients and consequently nutrient resorption does not vary along the nutrient gradient. We developed a framework to investigate how vegetation uptake and resorption of nutrients contribute separately to homeostasis. Overall, we determined that the wetland vegetation in this study was non-homeostatic with respect to differential uptake of nitrogen (N) versus phosphorus (P). In EAV, P resorption was relatively high and N resorption was moderate, and resorption efficiency did not vary significantly along the gradient. In separating the proportional contribution of resorption and uptake to the degree of homeostasis, resorption did not affect overall homeostatic status in EAV.
机译:营养稳态将环境化化学计量条件涉及该生态系统的生活实体化学计量的环境中。湿地生态系统中的植物营养封存是下游水质的关键过程。然而,尽管化学计量对植物营养吸收效率的重要性,但仍有少数研究已经研究了水生植被的化学计量稳定性。本研究调查了两种治疗流动雨水治疗区域2(STA-2)的两种治疗流动方法中的优势出血和淹没水生植被(EAV和SAV)的化学计量稳态。这些流动方式包括植物营养可用性的大梯度。这项研究假设湿地植被是相对于环境营养素的稳态,因此营养吸收不沿营养梯度变化。我们制定了一个框架,以调查植被摄取和营养素的吸收如何分别为稳态贡献。总的来说,我们确定本研究中的湿地植被是关于氮气(n)与磷(p)的差异摄取的非稳态。在EAV中,P吸收相对较高,n个吸收是中等的,并且吸收效率沿梯度显着变化。在分离吸收和摄取对稳态程度的比例贡献中,吸收不影响EAV的整体稳态地位。

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