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October 8, 2025Diversity2 citationsOpen Access

Leaf Stoichiometric Characteristics of Three Dominant Plant Species in the Water–Land Ecotone

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XBXiaolong BaiWLWang-Jun LiSZShun Zou

Key Points

  • Significant interspecific differences in leaf nutrient concentrations indicate variability across plant species.
  • Correlation analysis revealed positive relationships among leaf nitrogen, phosphorus, and potassium concentrations.
  • Phragmites australis shows lower C:N and N:P ratios than Scirpus validus and Juncus effusus, indicating a growth advantage.
  • These findings support the potential use of specific species as efficient phytoremediators in constructed wetlands.

Abstract

Ecological stoichiometry, as a discipline investigating plant elemental coupling mechanisms, has become a research focus across various ecosystems. However, few studies have examined plant stoichiometric characteristics in the water–land ecotone of plateau karst lake wetlands. It remains unclear whether foliar nutrient contents and stoichiometric ratios in this transitional zone vary with flooding intensity. This study established three sampling gradients (near-water area, middle area, and far-water area) within the water–land ecotone of Caohai Lake wetland in Guizhou Plateau, measuring nutrient concentrations along with their stoichiometric ratios in leaves of three dominant plant species. The results revealed significant interspecific differences in leaf nitrogen (N), phosphorus (P), potassium (K), calcium (Ca) concentrations and N:P ratios among the three dominant species, while significant spatial variations were observed in N concentration and the C:N ratio across sampling locations. Correlation analysis demonstrated significant positive relationships among leaf N, P, and K concentrations, all showing negative correlations with C concentration. Phragmites australis exhibited significantly lower C:N and N:P ratios compared to Scirpus validus and Juncus effusus, suggesting its growth advantage through rapid nutrient acquisition. This species may serve as an efficient phytoremediator for N and P absorption from both soil and water. These findings provide valuable references for vegetation selection in constructed wetlands.

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Cite This Study

Bai et al. (2025) studied this question.

synapsesocial.com/papers/68e5c1c36950a706b22b5b91https://doi.org/10.3390/d17100697
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