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Spatial variation in leaf nutrient traits of dominant desert riparian plant species in an arid inland river basin of China

机译:干旱内陆河流域主要荒漠河岸植物物种叶片养分特征的空间变异

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摘要

Understanding how patterns of leaf nutrient traits respond to groundwater depth is crucial for modeling the nutrient cycling of desert riparian ecosystems and forecasting the responses of ecosystems to global changes. In this study, we measured leaf nutrients along a transect across a groundwater depth gradient in the downstream Heihe River to explore the response of leaf nutrient traits to groundwater depth and soil properties. We found that leaf nutrient traits of dominant species showed different responses to groundwater depth gradient. Leaf C, leaf N, leaf P, and leaf K decreased significantly with groundwater depth, whereas patterns of leaf C/N and leaf N/P followed quadratic relationships with groundwater depth. Meanwhile, leaf C/P did not vary significantly along the groundwater depth gradient. Variations in leaf nutrient traits were associated with soil properties (e.g., soil bulk density, soil pH). Groundwater depth and soil pH jointly regulated the variation of leaf nutrient traits; however, groundwater depth explained the variation of leaf nutrient traits better than did soil pH. At the local scale in the typical desert riparian ecosystem, the dominant species was characterized by low leaf C, leaf N, and leaf P, but high leaf N/P and leaf C/P, indicating that desert riparian plants might be more limited by P than N in the growing season. Our observations will help to reveal specific adaptation patterns in relation to the groundwater depth gradient for dominant desert riparian species, provide insights into adaptive trends of leaf nutrient traits, and add information relevant to understanding the adaptive strategies of desert riparian forest vegetation to moisture gradients.
机译:了解叶子养分特征模式对地下水深度的响应方式对于模拟沙漠河岸生态系统的养分循环和预测生态系统对全球变化的响应至关重要。在这项研究中,我们测量了沿黑河下游地下水深度梯度横断面的叶片养分,以探索叶片养分特征对地下水深度和土壤特性的响应。我们发现优势种的叶片养分特征对地下水深度梯度表现出不同的响应。叶片C,叶片N,叶片P和叶片K随地下水深度而显着降低,而叶片C / N和叶片N / P的模式与地下水深度呈二次关系。同时,叶片C / P沿地下水深度梯度变化不大。叶片养分性状的变化与土壤特性(例如土壤容重,土壤pH)有关。地下水深度和土壤pH共同调节叶片养分特性的变化。但是,地下水深度比土壤pH值更好地解释了叶片养分特性的变化。在典型的荒漠河岸生态系统的局部尺度上,优势种的特征是低叶C,叶N和叶P,但是高叶N / P和叶C / P,这表明沙漠河岸植物可能受到更多限制。在生长季节,磷高于氮。我们的观察将有助于揭示与主要沙漠河岸物种的地下水深度梯度有关的特定适应模式,提供对叶片养分特征的适应趋势的见解,并增加与了解沙漠河岸森林植被对水分梯度的适应策略有关的信息。

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