首页> 外文期刊>Ecology: A Publication of the Ecological Society of America >Pulse frequency and soil-litter mixing alter the control of cumulative precipitation over litter decomposition
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Pulse frequency and soil-litter mixing alter the control of cumulative precipitation over litter decomposition

机译:脉冲频率和土壤 - 垃圾混合改变垃圾分解累积降水的控制

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Macroclimate has traditionally been considered the predominant driver of litter decomposition. However, in drylands, cumulative monthly or annual precipitation typically fails to predict decomposition. In these systems, the windows of opportunity for decomposer activity may rather depend on the precipitation frequency and local factors affecting litter desiccation, such as soil-litter mixing. We used a full-factorial microcosm experiment to disentangle the relative importance of cumulative precipitation, pulse frequency, and soil-litter mixing on litter decomposition. Decomposition, measured as litter carbon loss, saturated with increasing cumulative precipitation when pulses were large and infrequent, suggesting that litter moisture no longer increased and/or microbial activity was no longer limited by water availability above a certain pulse size. More frequent precipitation pulses led to increased decomposition at high levels of cumulative precipitation. Soil-litter mixing consistently increased decomposition, with greatest relative increase (+194%) under the driest conditions. Collectively, our results highlight the need to consider precipitation at finer temporal scale and incorporate soil-litter mixing as key driver of decomposition in drylands.
机译:传统上,宏观能力被认为是垃圾分解的主要驱动因素。但是,在旱地中,累积月度或年降水通常未能预测分解。在这些系统中,分解器活动的机会窗口可能依赖于影响凋落物干燥的降水频率和局部因素,例如土壤凋落物混合。我们利用全因素微观微观实验来解除累积降水,脉冲频率和土坑混合对垃圾分解的相对重要性。分解,测量为凋落物碳损失,当脉冲大而少量时饱和碳损失,呈累积沉淀增加,表明凋落物水分不再增加和/或微生物活性不再受水可用性的限制在一定的脉冲尺寸上方。更频繁的降水脉冲导致高水平累积降水的分解增加。土壤 - 凋落物混合始终如一的分解,最大的相对增加(+ 194%)在最干燥的条件下。统称,我们的结果突出了需要在更细时刻进行降水,并将土壤垃圾混合作为旱地分解的关键驱动器。

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