[短期氮添加会降低亚热带台湾松和栲林的土壤微生物固氮率]。

Q3 Environmental Science
Lin-Na Chen, Quan-Xin Zeng, Xiao-Qing Zhang, Qiu-Fang Zhang, Xiao-Chun Yuan, Hui Dai, Wen-Zhou Li, Yue-Min Chen
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引用次数: 0

摘要

生物固氮是陆地生态系统中重要的氮源,但不同森林生态系统中土壤微生物固氮率对氮沉降的响应仍不确定。我们在亚热带台湾松林和栲林进行了野外氮添加实验,以模拟大气中的氮沉降。我们以尿素为氮源,设置了三个氮添加水平:0(对照)、40(低氮)和 80 g N-hm-2-a-1(高氮),以检测表层土壤(0-10 cm)的化学特性、微生物生物量 C、酶活性和 nifH 基因拷贝。我们还采用 15N 标记法测定了微生物的氮固定率。结果表明,施氮明显降低了台湾金针菇林和法布里金针菇林的土壤微生物固氮率,降幅分别为29%-33%和10%-18%。氮添加量明显降低了两种森林土壤中的氮获取酶(即β-1,4-N-乙酰葡糖苷酶)活性和 nifH 基因拷贝数。在 P. taiwanensis 森林中,土壤微生物固氮率与土壤溶解有机 C 含量呈显著正相关,但在 C. faberi 森林中,土壤微生物固氮率与 NH4+-N 含量呈显著负相关。总体而言,台湾梭梭林土壤微生物固氮功能对氮添加量的敏感性高于梭梭林,而影响两种森林土壤微生物固氮功能的因素各不相同。该研究有助于深入了解氮添加对森林生态系统生物固氮的影响,并为森林管理提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Short-term nitrogen addition reduces soil microbial nitrogen fixation rate in subtropical Pinus taiwanensis and Castanopsis faberi forests].

Biological nitrogen (N) fixation is an important source of N in terrestrial ecosystems, but the response of soil microbial N fixation rate to N deposition in different forest ecosystems still remains uncertain. We conducted a field N addition experiment to simulate atmosphere N deposition in subtropical Pinus taiwanensis and Castanopsis faberi forests. We set up three levels of nitrogen addition using urea as the N source: 0 (control), 40 (low N), and 80 g N·hm-2·a-1(high N) to examine the chemical properties, microbial biomass C, enzyme activities, and nifH gene copies of top soils (0-10 cm). We also measured the microbial N fixation rate using the 15N labeling method. Results showed that N addition significantly reduced the soil microbial N fixation rate in the P. taiwanensis and C. faberi forests by 29%-33% and 10%-18%, respectively. Nitrogen addition significantly reduced N-acquiring enzyme (i.e., β-1, 4-N-acetylglucosaminidase) activity and nifH gene copies in both forest soils. There was a significant positive correlation between the microbial N fixation rate and soil dissolved organic C content in the P. taiwanensis forest, but a significant negative relationship between the rate of soil microbial nitrogen fixation and NH4+-N content in the C. faberi forest. Overall, soil microbial N fixation function in the P. taiwanensis forest was more sensitive to N addition than that in the C. faberi forest, and the factors affecting microbial N fixation varied between the two forest soils. The study could provide insights into the effects of N addition on biological N fixation in forest ecosystems, and a theoretical basis for forest management.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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