Response of bacterial community to simulated nitrogen deposition in soils and a unique relationship between plant species and soil bacteria in the Songnen grassland in Northeastern China
文献类型: 外文期刊
作者: Sun, S. 1 ; Xing, F. 1 ; Zhao, H. 1 ; Gao, Y. 1 ; Bai, Z. 1 ; Dong, Y. 2 ;
作者机构: 1.NE Normal Univ, Inst Grassland Sci, Key Lab Vegetat Ecol, Minist Educ, Changchun 130024, Jilin Province, Peoples R China
2.Jilin Acad Agr Sci, Biotechnol Res Ctr, Changchun 130024, Jilin Province, Peoples R China
关键词: Nitrogen deposition;soil bacterial community;species richness;resource availability;Songnen grassland
期刊名称:JOURNAL OF SOIL SCIENCE AND PLANT NUTRITION ( 2020影响因子:3.872; 五年影响因子:3.771 )
ISSN: 0718-9516
年卷期: 2014 年 14 卷 3 期
收录情况: SCI
摘要: Nitrogen (N) deposition greatly affects the above ground biological composition of grasslands and soil properties. However, its influence on the relationship among soil, plant and bacterial communities remain controversy. We calculated Shannon-wiener index to measure the soil bacterial diversity based on denaturing gradient gel electrophoresis, and investigate the roles of vegetation and soil properties on the soil bacterial community under N addition. A three-year simulated N deposition experiment was conducted in a forbs community dominated by Leymus chinensis (Trin.) Tzvel. and Artemisia scoparia Wald. Et. Kit. N was added at five levels (0, 23, 46, 69, 92 kg ha(-1) yr(-1)). Our results showed that N addition increased the soil microbial biomass carbon (SMBC) and soil bacterial diversity. Moderate N (23, 46, 69 kg ha(-1) yr(-1)) addition increased the soil bacterial diversity, whereas excess N (92 kg ha(-1) yr(-1)) addition inhibited it. The SMBC and soil bacterial diversity were related to richness of plant functional groups. In particular, SMBC had positive correlation with biomass of annuals and biennials, suggesting that the effects of the plant community on the soil bacteria could be explained by a relationship between the soil bacterial community and a subset of plant species rather than all species.
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