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Relative activity of ammonia oxidizing archaea and bacteria determine nitrification-dependent N2O emissions in Oregon forest soils

机译:氨氧化archaea和细菌的相对活性决定了俄勒冈州森林土壤中的硝化依赖性N2O排放

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Using oxic soil slurry incubations supplemented with either the selective AOB inhibitor 1-octyne or the nonspecific nitrification inhibitor acetylene, we investigated the relative contributions of ammonia oxidizing archaea (AOA) and bacteria (AOB) to nitrification-dependent N2O production in six Oregon forest soils (pH 3.7-5.3), collected from three different sites (Cascade Head, H.J. Andrews, and McDonald Forest), each under two different tree species (Douglas-fir, Pseudotsuga menziesii and red alder, Alnus rubra). We found that nitrification-dependent N2O production across a range of acid forest soils depends on the site-specific contribution of AOB and AOA to nitrification because of their inherently distinct N2O yields. The latter were determined to be similar to 0.15 +/- 0.01% for AOB and 0.06 +/- 0.01% for AOA. Soil pH regulated the nitrifier-specific N2O production by affecting the nitrifier activity. ADA-dependent N2O production dominated at low pH (<4.5), while AOB-dependent N2O production was favored in less acidic soils. Increase in relative contribution of the AOB nitrifying activity, favored by the increase in soil pH, was accompanied by higher total N2O yields.
机译:使用补充有选择性AOB抑制剂1- octyne或非特异性硝化抑制剂乙炔的氧化土壤浆液孵育,我们研究了氨氧化古亚痤疮(AOA)和细菌(AOB)在六个俄勒冈森林土壤中硝化的N2O产量的相对贡献(pH 3.7-5.3),从三个不同的网站(Cascade Head,HJ Andrews和McDonald Forest)收集,每个不同的树种(Douglas-Fir,Pseudotsuga Menziesii和Red Alder,Alnus Rubra)。我们发现,由于其固有的不同的N2O产率,硝化酸林土壤依赖于一系列酸性林土壤的产生依赖于AOB和AOA对硝化的特异性特异性贡献。对于AOA的AOB和0.06 +/- 0.01%,后者确定与0.15 +/- 0.01%相似。土壤pH通过影响硝化酯活性来调节硝化物特异性N2O的产生。依赖于低pH(<4.5)的ADA依赖性N2O生产,而AOB依赖性N2O产量在较少的酸性土壤中有利于。通过土壤pH的增加而青睐的AOB硝化活性的相对贡献增加,伴随着更高的N 2 O产率。

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