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Global change progressively increases foliar nitrogen–phosphorus ratios in China's subtropical forests

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DataONE2024-03-04 更新2024-06-08 收录
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Foliar nitrogen (N) to phosphorus (P) ratios (N/P) indicate N versus P limitation in terrestrial ecosystems. Quantifying the long-term dynamics of foliar N/P and their potential drivers is crucial for predicting nutrient status in forest ecosystems under global change. Using 1811 herbarium specimens collected during 1920-2010 in subtropical forests of China, we detected significant increases in foliar N/P (21.2%) and decreases in foliar P concentrations (23.1%). Foliar N/P increased more in evergreen species (22.9%) than in deciduous species (16.9%). Changes in atmospheric CO2 concentrations (Pco2), N deposition and mean annual temperature (MAT) dominantly contributed to the increased foliar N/P of evergreen species, while Pco2, MAT, and vapor pressure deficit, to that of deciduous species. Under future Shared Socioeconomic Pathway scenarios, increasing MAT would continuously increase foliar N/P by more than 6.5-26.0%. The results suggest that global change progressively and non-uniform..., , , # Data for: \"Global change progressively increases foliar nitrogen-phosphorus ratios in China’s subtropical forests\" By Yuan Lai *et al.* NOTE: 1\. The description and unit of each column can be found in the Sheet named \"colname\". 2\. Missing values were replaced with \"n/a\". Within the \"colname\" sheet, the character \"/\" represents no units.
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2025-07-28
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