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Effects of Enhanced UV-B Radiation on N2O Emission in a Soil-Winter Wheat System

机译:冬小麦系统中UV-B辐射增强对N 2 O排放的影响

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An outdoor pot experiments was conducted to investigate the effects of enhanced ultraviolet-B (UV-B) radiation on nitrous oxide (N2O) emissions from soil-winter wheat systems. The enhanced UV-B radiation treatments were simulated by 20% increase in its intensity. N2O fluxes were measured with a static opaque chamber-gas chromatograph method. The results showed that enhanced UV-B radiation did not change the seasonal patterns of N2O emissions. Compared to the controls, the enhanced UV-B radiation reduced N2O fluxes by 16.4% (p = 0.015) during the elongation-booting stage, while it had no significant effects on N2O fluxes in the turning-green and heading-maturity phases. During the turning green-overall heading span, the accumulative N2O was largely decreased by the enhanced UV-B radiation (p 0.10). At the elongation-booting stage, enhanced UV-B increased soluble proteins content in leaves, NO3--N and NO4+-N content in rhizosphere soil, and soil microbial biomass C (C mic) and N (N mic; p < 0.05), as well as microbial biomass C:N ratio changing from 5.0 to 6.8. Our findings suggest that the effects of enhanced UV-B radiation on N2O emissions differed with winter wheat developmental stages. To assess the overall effects of enhanced UV-B radiation on N2O emissions from agroecosystems, nevertheless, more field measurements deserve to be carried out in various cropping systems.
机译:进行了室外盆栽试验,以研究增强的UV-B(UV-B)辐射对土壤-冬小麦系统中一氧化二氮(N 2 O)排放的影响。通过增强20%的强度来模拟增强的UV-B辐射处理。用静态不透明室气相色谱法测量N 2 O通量。结果表明,增强的UV-B辐射不会改变N 2 O排放的季节性模式。与对照组相比,增强的UV-B辐射在伸长启动阶段使N 2 O通量减少了16.4%(p = 0.015),而对N 2没有显着影响 O通量处于转绿和航向成熟阶段。在整个转向绿色期间,由于增强的UV-B辐射,累积的N 2 O大大降低了(p 0.10)。在伸长启动阶段,增强的UV-B增加了叶片,NO 3 - -N和NO 4 中的可溶性蛋白质含量。根际土壤中的+ -N含量以及微生物微生物量C(C mic )和N(N mic ; p <0.05)生物质碳氮比从5.0变为6.8。我们的发现表明,UV-B辐射增强对N 2 O排放的影响随冬小麦发育阶段而不同。为了评估增强的UV-B辐射对农业生态系统N 2 O排放物的总体影响,仍然需要在各种种植系统中进行更多的田间测量。

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