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Water and nitrogen availability co-control ecosystem CO2 exchange in a semiarid temperate steppe

机译:半干旱温带草原中水和氮的有效性共同控制生态系统的二氧化碳交换

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摘要

Both water and nitrogen (N) availability have significant effects on ecosystem CO2 exchange (ECE), which includes net ecosystem productivity (NEP), ecosystem respiration (ER) and gross ecosystem photosynthesis (GEP). How water and N availability influence ECE in arid and semiarid grasslands is still uncertain. A manipulative experiment with additions of rainfall, snow and N was conducted to test their effects on ECE in a semiarid temperate steppe of northern China for three consecutive years with contrasting natural precipitation. ECE increased with annual precipitation but approached peak values at different precipitation amount. Water addition, especially summer water addition, had significantly positive effects on ECE in years when the natural precipitation was normal or below normal, but showed trivial effect on GEP when the natural precipitation was above normal as effects on ER and NEP offset one another. Nitrogen addition exerted non-significant or negative effects on ECE when precipitation was low but switched to a positive effect when precipitation was high, indicating N effect triggered by water availability. Our results indicate that both water and N availability control ECE and the effects of future precipitation changes and increasing N deposition will depend on how they can change collaboratively in this semiarid steppe ecosystem.
机译:水和氮(N)的可用性均对生态系统CO2交换(ECE)产生重大影响,其中包括净生态系统生产力(NEP),生态系统呼吸(ER)和生态系统总光合作用(GEP)。干旱和半干旱草原水和氮的有效利用如何影响欧洲经委会仍然是不确定的。进行了一个增加降雨,降雪和氮的操纵实验,以连续三年与自然降水形成对比的方式测试它们对中国北方半干旱温带草原对ECE的影响。 ECE随着年降水量的增加而增加,但在不同的降水量下接近峰值。在自然降水处于正常或低于正常水平的年份中,加水特别是夏季加水对ECE产生显着的积极影响,但是当自然降水高于正常水平时,由于ER和NEP的影响相互抵消,因此对GEP表现出微不足道的影响。当降水量低时,氮的添加对ECE产生非显着或负面的影响,但当降水量高时,氮转换为正的影响,表明水的可利用性触发了N效应。我们的结果表明,水和氮的有效性控制着ECE,以及​​未来降水变化和氮沉降增加的影响,将取决于它们在这种半干旱草原生态系统中如何协同变化。

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