首页> 外文期刊>Applied Soil Ecology >Contribution of fungi to acetylene-tolerant and high ammonia availability-dependent nitrification potential in tea field soils with relatively neutral pH.
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Contribution of fungi to acetylene-tolerant and high ammonia availability-dependent nitrification potential in tea field soils with relatively neutral pH.

机译:pH值相对中性的茶田土壤中真菌对乙炔耐受性和高氨可利用性的硝化潜能的贡献。

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This study was conducted to analyze the relative contribution of nitrifying microbial groups in tea field soils with relatively neutral pH where high ammonia availability was expected after heavy fertilization. The nitrification potential in tea field soils supplied with organic fertilizers (OF) or chemical fertilizers (CF) was determined by the chlorate-inhibition method. The response of the potential to the net ammonia concentration, which was employed as an index of ammonia availability, was tested by loading various levels of ammonium sulfate to soil slurries. The potential of tolerance to 10 Pa acetylene was highlighted. The acetylene-tolerant nitrification potential occurred all year at a significant level. It was stimulated by ammonia availability of more than 10-5.5 mol NH3 L-1, where the nitrification potential determined under an acetylene-free condition (total potential) was affected negatively. As the test results show, the contribution of the acetylene-tolerant potential ranged from 2 to 38% with OF soils and from 8 to 67% with CF soils. These indicated a significant contribution of heterotrophic microorganisms to the nitrification potential of these neutral tea soils. The addition of cycloheximide rather than streptomycin remarkably suppressed the acetylene-tolerant nitrification potential, suggesting the primary contribution of fungi. A new aspect of heterotrophic nitrification was identified.
机译:这项研究旨在分析硝化微生物群在pH值相对中性的茶田土壤中的相对贡献,在重度施肥后预计会有高的氨利用率。通过抑制氯酸盐的方法测定了施用有机肥料(OF)或化学肥料(CF)的茶田土壤的硝化潜力。通过将不同含量的硫酸铵加载到土壤浆料中来测试电位对净氨浓度的响应(用作氨利用率的指标)。强调了对10 Pa乙炔的耐受性。耐乙炔的硝化潜力一年四季都处于显着水平。氨的可利用性超过10 -5.5 mol NH 3 L -1 刺激,在无乙炔的条件下测定硝化电位条件(总潜力)受到负面影响。如测试结果所示,在OF土壤中,乙炔耐受电位的贡献范围为2-38%,在CF土壤中,乙炔耐受电位的贡献范围为8%至67%。这些表明异养微生物对这些中性茶土的硝化潜力的重大贡献。加入环己酰亚胺而不是链霉素显着抑制了乙炔耐受的硝化潜力,表明真菌的主要作用。确定了异养硝化的新方面。

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