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Mass loss and nutrient release during the decomposition of sixteen types of plant litter with contrasting quality under three precipitation regimes

机译:在三种降水方式下十六种植物凋落物分解过程中的质量损失和养分释放

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摘要

Mass loss and nutrient release during litter decomposition drive biogeochemical cycling in terrestrial ecosystems. However, the relationship between the litter decomposition process and the decomposition stage, precipitation, and litter quality has rarely been addressed, precluding our understanding of how litter decomposition regulates nutrient cycling in various ecosystems and their responses to climate change. In this study, we measured mass loss as well as carbon and nutrient releases during the decomposition of 16 types of leaf litter under three precipitation treatments over 12 months in a common garden experiment (i.e., using standardized soil and climatic conditions). Sixteen types of leaves were divided into three functional groups (evergreen, deciduous, and herbaceous). The objectives were to understand the effects of decomposition stages and precipitation regimes on litter decomposition and to examine the relationship between this effect and chemical properties. The mass loss and release of nitrogen and potassium were significantly higher in the 6‐ to 12‐month stage of decomposition (high temperature and humidity) than in the 0‐ to 6‐month stage. Phosphorus was relatively enriched in evergreen leaves after 6 months of decomposition. The rates of mass loss and nutrient release were significantly greater in herbaceous than in deciduous and evergreen leaves. Increasing precipitation from 400 to 800 mm accelerated mass loss and potassium release but decreased phosphorus release in the 0‐ to 6‐month stage of decomposition. These results highlighted the contribution to and complexity of litter chemical properties in litter decomposition.
机译:凋落物分解过程中的质量损失和养分释放驱动着陆地生态系统中的生物地球化学循环。但是,很少讨论凋落物分解过程与分解阶段,降水和凋落物质量之间的关系,这使我们无法理解凋落物分解如何调节各种生态系统中的养分循环及其对气候变化的响应。在这项研究中,我们在一个普通的花园实验(即使用标准化土壤和气候条件)下,在12个月的三种降水处理下,测量了16种叶子凋落物分解过程中的质量损失以及碳和养分释放。十六种类型的叶子分为三个功能组(常绿,落叶和草本)。目的是了解分解阶段和沉淀方式对垃圾分解的影响,并研究这种影响与化学性质之间的关系。在分解(高温和高湿)的6到12个月阶段中,氮和钾的质量损失和释放显着高于0到6个月阶段。分解6个月后,常绿叶片中的磷相对丰富。草本植物的质量损失和养分释放速率明显高于落叶和常绿叶子。将降水量从400mm增加到800mm会加速质量损失和钾的释放,但在分解的0到6个月阶段磷的释放减少。这些结果突出了垃圾分解中垃圾化学性质的贡献和复杂性。

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