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Biochar application significantly affects the N pool and microbial community structure in purple and paddy soils

机译:生物炭应用显着影响紫色和水稻土的N池和微生物群落结构

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摘要

Background The increasing demand for food production has resulted in the use of large quantities of chemical fertilizers. This has created major environmental problems, such as increased ammonia volatilization, N2O emission, and nitrogen (N) leaching from agricultural soil. In particular, the utilization rate of N fertilizer is low in subtropical southern parts of China due to high rainfall. This causes not only large financial losses in agriculture, but also serious environmental pollution. Methods In this study, 16S rDNA-based analysis and static-chamber gas chromatography were used to elucidate the effects of continuous straw biochar application on the N pool and bacteria environment in two typical soil types, purple and paddy soils, in southern China. Results Straw biochar application (1) improved the soil N pool in both rhizosphere and non-rhizosphere soils; (2) significantly reduced the emission of N2O, with no difference in emission between 1 and 2 years of application; (3) increased the abundance of N-processing bacteria in the soil and altered the bacterial community structure; and (4) improved the tobacco yield and N use efficiency in paddy soil. These findings suggest that, in southern China, the application of straw biochar can promote N transformation in purple and paddy soils and reduce the emission of the greenhouse gas N2O.
机译:背景技术对食品生产的不断增加导致了大量化学肥料。这创造了主要的环境问题,例如从农业土壤中增加氨挥发,N2O发射和氮气(n)浸出。特别是,由于降雨量,中国亚热带南部地区的氮肥利用率低。这不仅导致农业的大量财务损失,而且也是严重的环境污染。本研究的方法,使用16S的基于RDNA的分析和静态室气相色谱法阐明了中国南方两种典型土壤类型,紫色和水稻土的N池和细菌环境对N池和细菌环境的影响。结果秸秆生物炭应用(1)改善了根际和非根际土壤中的土壤池; (2)显着降低了N2O的排放,申请1至2年之间的排放差异; (3)增加土壤中的N-加工细菌的丰度,改变了细菌群落结构; (4)改善了水稻土中的烟草产量和N使用效率。这些调查结果表明,在中国南方,秸秆生物炭的应用可以促进紫色和水稻土的N转化,并减少温室气体N2O的排放。

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