Enzyme stoichiometry evidence revealed that five years nitrogen addition exacerbated the carbon and phosphorus limitation of soil microorganisms in a Phyllostachys pubescens forest.

毛竹 土壤肥力 化学 热带和亚热带湿润阔叶林 肥料 酶分析 农学 土壤碳 土壤水分 营养物 微生物 生物 亚热带 植物 生态学 生物化学 细菌 竹子 有机化学 遗传学
作者
Quanxin Zeng,Qiufang Zhang,Kaimiao Lin,Junyi Zhou,Xiao-Cun Yuan,Kongcan Mei,Yue Wu,Juyan Cui,Jianguo Xu,Yuehmin Chen
出处
期刊:Journal of Applied Ecology [Wiley]
卷期号:32 (2): 521-528 被引量:5
标识
DOI:10.13287/j.1001-9332.202102.038
摘要

The activity and stoichiometry of soil extracellular enzyme can provide a good indication for changes in soil nutrient availability and microbial demands for nutrients. However, it remains unclear how would nitrogen (N) deposition affect nutrient limitation of microbes in subtropical forest soils. We conducted a 5 years N addition experiment in a subtropical Phyllostachys pubescens forest. The soil nutrients and enzyme activities associated with carbon (C), N, and phosphorus (P) cycles were measured. We also examined the nutrient distribution of microorganisms using enzyme stoichiometry and vector analysis. The results showed that N addition significantly decreased the contents of soil soluble organic C and available P and increased that of available N. Furthermore, N addition significantly decreased β-N-acetyl-glucosaminidase (NAG) activity and NAG/ microbial biomass carbon (MBC), and increased acid phosphatase (ACP) and ACP/MBC. The low and moderate N addition levels significantly increased enzyme C/P, vector length, and vector angle, but significantly decreased enzyme N/P. Results of redundancy analysis showed that the change in soil enzyme activity and enzymatic stoichiometry were mainly driven by soil available P content under N addition. In summary, N addition altered the microbial nutrient acquisition strategy, which increased nutrient allocation to P-acquiring enzyme production but reduced that to N-acquiring enzyme production. Moreover, N addition exacerbated the C and P limitation of soil microorganisms. Appropriate amount of P fertilizer could be applied to improve soil fertility of subtropical P. pubescens forest in the future.
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