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Biogeography and variability of eleven mineral elements in plant leaves across gradients of climate, soil and plant functional type in China

机译:中国气候,土壤和植物功能类型梯度下植物叶片中11种矿物质的生物地理学和变异性

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摘要

Understanding variation of plant nutrients is largely limited to nitrogen and to a lesser extent phosphorus. Here we analyse patterns of variation in 11 elements (nitrogen/phosphorus/potassium/calcium/magnesium/sulphur/silicon/iron/sodium/manganese/aluminium) in leaves of 1900 plant species across China. The concentrations of these elements show significant latitudinal and longitudinal trends, driven by significant influences of climate, soil and plant functional type. Precipitation explains more variation than temperature for all elements except phosphorus and aluminium, and the 11 elements differentiate in relation to climate, soil and functional type. Variability (assessed as the coefficient of variation) and environmental sensitivity (slope of responses to environmental gradients) are lowest for elements that are required in the highest concentrations, most abundant and most often limiting in nature (the Stability of Limiting Elements Hypothesis). Our findings can help initiate a more holistic approach to ecological plant nutrition and lay the groundwork for the eventual development of multiple element biogeochemical models.
机译:了解植物养分的变化主要限于氮,而磷的程度较小。在这里,我们分析了中国1900种植物叶片中11种元素(氮/磷/钾/钙/镁/硫/硅/铁/钠/锰/铝)的变化规律。在气候,土壤和植物功能类型的重大影响下,这些元素的浓度表现出明显的纬度和纵向趋势。除磷和铝以外,所有元素的降水量都比温度变化大,并且这11种元素在气候,土壤和功能类型方面存在差异。对于浓度最高,最丰富且自然界最受限制的元素(限制元素假说的稳定性),变异性(评估为变异系数)和环境敏感性(对环境梯度的响应斜率)最低。我们的发现可以帮助启动一种更全面的生态植物营养方法,并为最终开发多元素生物地球化学模型奠定基础。

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