农学
生物量(生态学)
环境科学
优势(遗传学)
自行车
草原
生物地球化学循环
物种丰富度
土壤肥力
土壤生物学
生态系统
土壤生物多样性
生物多样性
土壤水分
生态学
生物
土壤科学
林业
地理
基因
生物化学
作者
Qiushi Ning,Liangchao Jiang,Guoxiang Niu,Qiang Yu,Jushan Liu,Ruzhen Wang,Sha Liao,Jianhui Huang,Xingguo Han,Junjie Yang
出处
期刊:Plant and Soil
[Springer Science+Business Media]
日期:2022-02-19
卷期号:491 (1-2): 205-217
被引量:12
标识
DOI:10.1007/s11104-022-05332-5
摘要
AimsThe anthropogenic nitrogen (N) input has considerable consequences on soil microbial biomass, which is critical for biogeochemical cycling. As prevalent grassland management, mowing may reduce soil N storage, enhance plant biodiversity and soil microbial carbon (C) availability, all of which are important regulators of soil microbial biomass. However, convincing data is still scarce about how mowing affects soil microbial biomass under N enrichment.MethodsThe interactive effects of N addition (0 – 50 g N m−2 yr−1) and mowing (unmown vs. mown) on soil microbial biomass C (MBC) were measured by manipulating 6 years’ N addition experiment in Inner Mongolia grassland of China.ResultsMowing increased soil inorganic N concentration, available Cu2+ concentration, plant aboveground net primary production (ANPP), species richness, Shannon-Wiener biodiversity and ratio of fungal to bacterial biomass, and decreased soil available Mn2+ concentration under N enrichment. Mowing also significantly reduced the dominance of Leymus chinensis. While mowing did not affect the soil MBC compared with that in only N added plots. The soil MBC was positively regulated by plant species richness and biodiversity, while was negatively regulated by ANPP, soil inorganic N, available Cu2+ and Mn2+ concentration in mown plots.ConclusionsThe results highlight that mowing cannot mitigate the negative effects of N enrichment on soil MBC. The soil, plant and microbial properties play important roles in regulating the response of soil MBC to mowing in N-enriched soil. This work improves the mechanistic understanding of the linkages between plant community and soil microbial C cycling.
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