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Data for changing plant phosphorus acquisition strategies in relation to altered soil phosphorus fractions after wetland drainage

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Figshare2024-07-29 更新2026-04-08 收录
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https://figshare.com/articles/dataset/Data_for_changing_plant_phosphorus_acquisition_strategies_in_relation_to_altered_soil_phosphorus_fractions_after_wetland_drainage/26391571/1
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1. Plant phosphorus (P) acquisition strategy is considered to be an intrinsic driver behind plant succession. However, variations in plant P acquisition strategies in connection to soil P fraction changes after wetland drainage remain unclear.2. To address this issue, here we conducted a study in six distinct wetlands that experienced long-term (&gt; 20 years) artificial drainage, with the adjacent waterlogged wetlands as a control. We analyzed plant community composition, biomass and soil P fractions, and identified three plant P acquisition strategies based on soil acid phosphatase activity, plant P resorption efficiency, and soil arbuscular mycorrhizal fungi (AMF) content.3. We found that soil calcium-bound P (P<sub>Ca</sub>) and enzyme-extractable P (P<sub>enzyme</sub>) were key factors influencing plant P acquisition. Soil P<sub>Ca</sub> correlated negatively with acid phosphatase activity but positively with AMF content. Soil P<sub>enzyme</sub> negatively impacted P resorption efficiency. The wetlands were categorized into three types and each exhibited distinct plant P acquisition strategies. These changes in strategies after drainage corresponded with shifts in soil P fractions.4. Overall, our study highlights the role of soil P fractions in explaining plant P acquisition strategies after wetland drainage, suggesting P regulations on plant succession and ecosystem services.
提供机构:
Liu, Chengzhu; Zhao, Yunpeng; Jiang, Zhenhui; Feng, Xiaojuan; Zhou, Lei; Luo, Wanqing; Zhu, Erxiong
创建时间:
2024-07-29
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