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Legacies of precipitation fluctuations on primary production: theory and data synthesis

机译:初级生产中降水波动的遗留因素:理论和数据综合

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摘要

Variability of above-ground net primary production (ANPP) of arid to sub-humid ecosystems displays a closer association with precipitation when considered across space (based on multiyear averages for different locations) than through time (based on year-to-year change at single locations). Here, we propose a theory of controls of ANPP based on four hypotheses about legacies of wet and dry years that explains space versus time differences in ANPP–precipitation relationships. We tested the hypotheses using 16 long-term series of ANPP. We found that legacies revealed by the association of current- versus previous-year conditions through the temporal series occur across all ecosystem types from deserts to mesic grasslands. Therefore, previous-year precipitation and ANPP control a significant fraction of current-year production. We developed unified models for the controls of ANPP through space and time. The relative importance of current-versus previous-year precipitation changes along a gradient of mean annual precipitation with the importance of current-year PPT decreasing, whereas the importance of previous-year PPT remains constant as mean annual precipitation increases. Finally, our results suggest that ANPP will respond to climate-change-driven alterations in water availability and, more importantly, that the magnitude of the response will increase with time.
机译:当跨空间(基于不同位置的多年平均水平)考虑时,干旱与亚湿润生态系统的地上净初级生产力(ANPP)的变化与降水之间的关联更紧密,而不是随时间的变化(基于该地区的逐年变化)单个位置)。在这里,我们提出了一个基于干湿年遗产的四个假说来控制ANPP的理论,这四个假说解释了ANPP-降水关系中的时空差异。我们使用16个ANPP长期序列检验了这些假设。我们发现,通过时间序列,当前条件与上一年条件之间的关联揭示的遗产遍及从沙漠到中型草原的所有生态系统类型。因此,前一年的降水和ANPP控制了当年产量的很大一部分。我们为通过空间和时间控制ANPP开发了统一的模型。当前与前一年降水的相对重要性随年平均降水量的梯度变化,而当年PPT的重要性降低,而前一年PPT的重要性随着年平均降水量的增加而保持不变。最后,我们的结果表明,ANPP将对气候变化驱动的水利用变化做出响应,更重要的是,响应的幅度将随着时间而增加。

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