Plant water uptake along a diversity gradient provides evidence for complementarity in hydrological niches
收藏DataONE2019-09-17 更新2025-06-29 收录
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Biodiversity enhances a variety of ecosystem processes, and yet the underlying mechanisms through which these relationships occur remain a critical knowledge gap. Here, we used the natural abundance of stable isotopes to measure depth of water uptake in five common grassland species (Asclepias tuberosa, Lespedeza capitata, Liatris aspera, Schizachyrium scoparium, and Sorghastrum nutans) growing across an experimental grassland diversity gradient. Using this approach, we addressed the following questions: (1) Does the depth-specific provenance of water uptake differ among species and/or do interspecific differences in water source manifest with increasing community diversity? (2) Does the isotopic niche space occupied by plants change with increasing diversity? (3) Is plasticity in water uptake depth across a diversity gradient associated with functional plant responses? We found that the depth of soil water used by plants was inherently different among species when grown in monocultures...
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2025-06-24



