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首页> 外文期刊>Plant and Soil >Responses of soil microbial biomass and enzymatic activities to fertilizations of mixed inorganic and organic nitrogen at a subtropical forest in East China
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Responses of soil microbial biomass and enzymatic activities to fertilizations of mixed inorganic and organic nitrogen at a subtropical forest in East China

机译:华东亚热带森林土壤微生物量和酶活性对无机氮与有机氮混合施肥的响应

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摘要

Anthropogenic nitrogen (N) deposition significantly affects forest soil microbial biomass and extracellular enzymatic activities (EEA). However, the influence of mixed N fertilizations on soil microbial biomass and EEA remains unclear. In this work, NH4NO3 was chosen as inorganic N, while urea and glycine were chosen as organic N. They were used to fertilize subtropical forest soil monthly for 1 year with different ratios (inorganic N : organic N = 10 : 0, 7 : 3, 3 : 7 and 1 : 9 respectively.) and N inputs were equivalent to 7.2 g N m(-2) y(-1). Soil samples were harvested every 2 months. Subsequently, soil microbial biomass and enzymatic activities were assayed. Multiple regression analysis (MRA) and principle components analysis (PCA) were utilized to illustrate the relationship between soil microbial biomass and EEA. Results showed that soil EEA displayed different changes in response to various mixed N fertilizations. Invertase, cellulase, cellobiohydrolase, alkaline phosphatase, and catalase activities under mixed N fertilization were higher than those of single inorganic N (NH4NO3) fertilization. Polyphenol oxidase activities were depressed after inorganic N fertilization and accelerated after mixed N fertilization. Acid phosphatase activities were accelerated in all N fertilization plots, while the influence of various mixed N fertilizations were not significant. Soil microbial biomass was enhanced by mixed N fertilization, while no significant changes were observed after inorganic N fertilization. The result revealed that although N fertilization may alleviate soil N-limitation, single inorganic N fertilization may disturb the balance of inorganic N and organic N, and depress the increases of soil enzymatic activities and microbial biomass in the end. Soil enzymes activities and microbial biomass showed the highest activities after medium organic N fertilization (inorganic : organic N = 3 : 7), which might be the most suitable N fertilizer for soil microbes. Meanwhile, PCA showed that the alleviation of N-limited reached a maximum after medium organic N fertilization. All results indicated that soil EEA, microbial biomass, and their relationship are all affected by N type and inorganic to organic N ratio.
机译:人为氮(N)的沉积会显着影响森林土壤微生物的生物量和细胞外酶活性(EEA)。然而,混合氮肥对土壤微生物生物量和EEA的影响尚不清楚。在这项工作中,选择了NH4NO3作为无机氮,而选择了尿素和甘氨酸作为有机氮。它们分别以不同的比例用于亚热带森林土壤的施肥1年(无机氮:有机氮= 10:0,7:3)。 ,分别为3:7和1:9。),N个输入相当于7.2 g N m(-2)y(-1)。每2个月收获一次土壤样品。随后,测定土壤微生物量和酶活性。利用多元回归分析(MRA)和主成分分析(PCA)来说明土壤微生物量与EEA之间的关系。结果表明,土壤EEA对各种混合氮肥的响应不同。混合氮施肥下的转化酶,纤维素酶,纤维二糖水解酶,碱性磷酸酶和过氧化氢酶活性高于单一无机氮(NH4NO3)施肥。无机氮施肥后多酚氧化酶活性降低,混合氮施肥后多酚氧化酶活性加快。在所有氮肥田中,酸性磷酸酶的活性均得到提高,而各种混合氮肥的影响均不显着。混合氮肥能提高土壤微生物量,而无机氮肥后无明显变化。结果表明,尽管施氮可以缓解土壤氮素的限制,但单施无机氮可能会扰乱无机氮和有机氮的平衡,最终抑制土壤酶活性和微生物量的增加。中等有机氮施肥后(无机:有机氮= 3:7),土壤酶活性和微生物生物量表现出最高的活性,这可能是最适合土壤微生物的氮肥。同时,PCA表明,中等有机氮施肥后,对氮素的缓解达到最大。所有结果表明,土壤EEA,微生物生物量及其关系都受氮类型和无机有机氮比的影响。

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