首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Warming and Nitrogen Addition Change the Soil and Soil Microbial Biomass C:N:P Stoichiometry of a Meadow Steppe
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Warming and Nitrogen Addition Change the Soil and Soil Microbial Biomass C:N:P Stoichiometry of a Meadow Steppe

机译:变暖和氮的添加改变草甸草原土壤和土壤微生物生物量C:N:P的化学计量

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摘要

Soil and soil microbial biomass (SMB) carbon: nitrogen: phosphorus (C:N:P) stoichiometry are important parameters to determine soil balance of nutrients and circulation of materials, but how soil and SMB C:N:P stoichiometry is affected by climate change remains unclear. Field experiments with warming and N addition had been implemented since April 2007. Infrared radiators were used to manipulate temperature, and aqueous ammonium nitrate (10 g m−2 yr−1) was added to simulate nitrogen deposition. We found that molar nutrient ratios in the soil averaged 60:11:1, warming and warming plus N addition reduced soil C:N by 14.1% and 20% (P < 0.01), and reduced soil C:P ratios by 14.5% and 14.8% (P < 0.01). N addition reduced soil C:N significantly by 17.6% (P < 0.001) (Figure 2B,D). N addition and warming plus N addition increased soil N:P significantly by 24.6% and 7.7% (P < 0.01). The SMB C:N, C:P and N:P ratios increased significantly with warming, N addition and warming plus N addition. Warming and N addition increased the correlations between SOC and soil microbial biomass C (SMBC), soil total P and soil microbial biomass P (SMBP), warming increased the correlation between the soil total N and soil microbial biomass N (SMBN). After four years’ treatment, our results demonstrated that the combined effects of warming and N fertilization could change the C, N, P cycling by affecting soil and SMB C:N:P ratios significantly and differently. At the same time, our results suggested SMB might have weak homeostasis in Sonnen Grassland and warming and N addition would ease N-limitation but aggravate P-limitation in northeastern China. Furthermore, these results further the current demonstration of the relationships between the soil and SMB C:N:P stoichiometry in response to global change in temperate grassland ecosystems.
机译:土壤和土壤微生物生物量(SMB)碳:氮:磷(C:N:P)的化学计量是确定土壤养分平衡和物质循环的重要参数,但是土壤和SMB C:N:P的化学计量如何受到气候的影响变化尚不清楚。自2007年4月以来,已经进行了加温和添加氮的野外试验。使用红外辐射器控制温度,并使用硝酸铵水溶液(10 gm -2 yr -1 )添加以模拟氮沉积。我们发现土壤中的摩尔养分比平均为60:11:1,变暖和加N的添加使土壤C:N减少14.1%和20%(P <0.01),并使土壤C:P比率减少14.5%和14.8%(P <0.01)。氮的添加使土壤碳氮比降低了17.6%(P <0.001)(图2B,D)。施氮和增温加氮使土壤N:P显着增加24.6%和7.7%(P <0.01)。 SMB的C:N,C:P和N:P比率随着变暖,添加N和变暖加上N的添加而显着增加。增温和添加氮增加了SOC与土壤微生物量碳(SMBC),土壤总磷和土壤微生物量P(SMBP)之间的相关性;变暖增加了土壤总氮与土壤微生物量氮(SMBN)之间的相关性。经过四年的处理,我们的结果表明,增温和氮肥的联合作用可以显着且不同地影响土壤和SMB的C:N:P比值,从而改变C,N,P循环。同时,我们的结果表明,SMB在松嫩草原的动态平衡可能较弱,而变暖和添加N会缓解东北地区的N限制,但加剧P限制。此外,这些结果进一步证明了土壤与SMB C:N:P化学计量关系对温带草原生态系统全球变化的响应。

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