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首页> 外文期刊>Global change biology >The effect of experimental warming and precipitation change on proteolytic enzyme activity: positive feedbacks to nitrogen availability are not universal.
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The effect of experimental warming and precipitation change on proteolytic enzyme activity: positive feedbacks to nitrogen availability are not universal.

机译:实验性变暖和降水变化对蛋白水解酶活性的影响:对氮有效性的积极反馈并不普遍。

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摘要

Nitrogen regulates the Earth's climate system by constraining the terrestrial sink for atmospheric CO2. Proteolytic enzymes are a principal driver of the within-system cycle of soil nitrogen, yet there is little to no understanding of their response to climate change. Here, we use a single methodology to investigate potential proteolytic enzyme activity in soils from 16 global change experiments. We show that regardless of geographical location or experimental manipulation (i.e., temperature, precipitation, or both), all sites plotted along a single line relating the response ratio of potential proteolytic activity to soil moisture deficit, the difference between precipitation and evapotranspiration. In particular, warming and reductions in precipitation stimulated potential proteolytic activity in mesic sites - temperate and boreal forests, arctic tundra - whereas these manipulations suppressed potential activity in dry grasslands. This study provides a foundation for a simple representation of the impacts of climate change on a central component of the nitrogen cycle.
机译:氮通过限制地面汇的大气CO 2 来调节地球的气候系统。蛋白水解酶是土壤氮素在系统内部循环的主要驱动力,但对它们对气候变化的反应了解甚少。在这里,我们使用单一方法从16个全球变化实验中研究土壤中潜在的蛋白水解酶活性。我们表明,无论地理位置或实验手段如何(即温度,降水或两者兼而有之),所有站点均沿一条线绘制,其关系到潜在的蛋白水解活性与土壤水分亏缺的响应比,降水与蒸散之间的差异。特别是变暖和降水减少刺激了中温地区(温带和北方森林,北极苔原)的潜在蛋白水解活性,而这些操作抑制了干旱草原的潜在蛋白水解活性。这项研究为简单表示气候变化对氮循环的核心组成部分提供了基础。

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